Assist. Prof. Dr. Sihem JEBRI | Motivation and Employee Engagement | Women Researcher Award

Assist. Prof. Dr. Sihem JEBRI | Motivation and Employee Engagement | Women Researcher Award

CNSTN | Tunisia

Author Profile

Google Scholar 

Early Academic Pursuits

Dr. Sihem Jebri Landolsi began her academic journey with a strong foundation in microbiology and medical biotechnologies, advancing her expertise through undergraduate and postgraduate studies that combined theoretical depth with practical laboratory training. Her early research focused on the detection and molecular characterization of pathogens, with particular attention to viral and bacterial organisms of public health concern. Exposure to advanced molecular tools, such as qRT-PCR and DNA amplification techniques, nurtured her ability to translate complex biological principles into real-world applications. This phase of her career allowed her to build technical skills in environmental and food microbiology while developing a clear interest in public health safety, pathogen tracking, and microbial risk management. These formative experiences paved the way for her professional path as a dedicated researcher and educator in environmental microbiology.

Professional Endeavors

Currently serving as an Assistant Professor at the National Centre for Nuclear Sciences and Technologies (CNSTN), Dr. Landolsi has been at the forefront of integrating microbiological sciences with nuclear technologies. At the Laboratory of Biotechnologies and Nuclear Techniques, she leads research on microbial source tracking, pathogen inactivation through irradiation, and environmental virology. Her professional endeavors extend beyond laboratory work, as she mentors graduate students, supervises innovative projects, and contributes to the global scientific dialogue through multinational collaborations with organizations such as UNESCO, IAEA, and the European Union. She also actively engages in teaching at institutions like the Ecole Supérieure des Industries Alimentaires de Tunis and the Institut Supérieur des Technologies Médicales de Tunis, where she imparts knowledge on infectious diseases, microbiology, molecular engineering, and pharmaceutical waste management. Her dual role as researcher and educator reflects her commitment to advancing both science and society.

Contributions and Research Focus

Dr. Landolsi’s contributions stand out in the fields of environmental microbiology, food safety, and radiation-based biohazard inactivation. Her research emphasizes bacteriophage applications as indicators of fecal contamination, enabling improved monitoring of water quality. By applying molecular epidemiology tools, including qRT-PCR and viral culture, she has contributed to understanding pathogen dissemination and antimicrobial resistance in aquatic environments. Furthermore, her work on radiation-based technologies, particularly gamma and electron beam irradiation, has advanced biohazard control methods and strengthened food chain safety. With more than fifteen peer-reviewed publications, she has established herself as a significant voice in environmental microbiology, bridging microbial science with applied technologies that address global health challenges.

Accolades and Recognition

Dr. Landolsi’s expertise has been recognized through her active participation in high-profile international projects and scientific collaborations. Her training experiences in leading institutions across Europe and North Africa—such as the CNRS-CEA laboratories in France and research centers in Spain and Egypt—reflect the recognition of her skills and the demand for her specialized knowledge. Her role in projects sponsored by international organizations like UNESCO, IAEA, and EU-funded networks demonstrates her credibility and impact within the global scientific community. Additionally, her ability to secure leadership roles in applied research projects at CNSTN highlights her reputation as a trusted scientist contributing innovative solutions to pressing microbiological and environmental concerns.

Impact and Influence

The impact of Dr. Landolsi’s work extends from academic research to societal well-being. Her focus on water safety, food chain risk assessment, and pathogen inactivation directly addresses challenges in public health, particularly in regions where microbial contamination and antimicrobial resistance pose major risks. Through her studies, she has provided scientific insights that help policymakers, industries, and communities implement safer environmental practices. Her influence also extends to her students, whom she equips with the scientific rigor and applied skills needed to succeed in microbiology and biotechnology. By fostering a culture of innovation and responsibility, she has amplified her impact beyond her own research, shaping future generations of scientists.

Legacy and Future Contributions

Dr. Landolsi’s legacy lies in her ability to merge microbiology with nuclear techniques to address environmental and food safety challenges. Her pioneering work in wastewater virology and microbial source tracking provides vital methodologies for monitoring and mitigating health risks. Looking to the future, she is well-positioned to expand her research on antibiotic resistance, bioremediation, and virological risk assessment in the food chain, areas that hold growing global relevance. Her commitment to international collaboration ensures that her future contributions will not only strengthen scientific knowledge but also provide sustainable solutions to public health concerns worldwide. By continuing to innovate and mentor, she will leave a lasting imprint on both her field and the broader scientific community.

Notable Publications

Antibiotic resistance genes in bacterial and bacteriophage fractions of Tunisian and Spanish wastewaters as markers to compare the antibiotic resistance patterns in each population

Author(s): M. Colomer-Lluch, W. Calero-Cáceres, S. Jebri, F. Hmaied, M. Muniesa, …
Journal: Environment International
Year: 2014

Bacteriophages as indicators of human and animal faecal contamination in raw and treated wastewaters from Tunisia

Author(s): M. Yahya, F. Hmaied, S. Jebri, J. Jofre, M. Hamdi
Journal: Journal of Applied Microbiology
Year: 2015

Bacteriophages as antibiotic resistance genes carriers in agro‐food systems

Author(s): S. Jebri, F. Rahmani, F. Hmaied
Journal: Journal of Applied Microbiology
Year: 2021

 General and host-associated bacteriophage indicators of faecal pollution

Author(s): S. Jebri, M. Muniesa, J. Jofre
Journal: Global Water Pathogens Project
Year: 2017

Presence and fate of coliphages and enteric viruses in three wastewater treatment plants effluents and activated sludge from Tunisia

Author(s): S. Jebri, J. Jofre, I. Barkallah, M. Saidi, F. Hmaied
Journal: Environmental Science and Pollution Research
Year: 2012

Conclusion

In conclusion, Dr. Sihem Jebri Landolsi exemplifies the qualities of a modern scientist—rigorous in research, dedicated to teaching, and impactful in addressing global health and environmental challenges. From her early academic pursuits to her current leadership in environmental microbiology, she has consistently demonstrated vision, expertise, and a collaborative spirit. With her continued focus on microbial source tracking, radiation-based pathogen control, and food chain safety, her contributions will not only advance science but also safeguard public health for future generations.

Prof. Ramin Raiszadeh | Team Building and Team Management | Excellence in Research

Prof. Ramin Raiszadeh | Team Building and Team Management | Excellence in Research

Shahid Bahonar University of Kerman | Iran

Author Profile

Google Scholar 

Early Academic Pursuits

Professor Ramin Raiszadeh embarked on his academic journey with a strong foundation in metallurgy engineering, driven by a keen interest in understanding the behavior of metals and materials under various physical conditions. His undergraduate studies laid the groundwork for a deeper exploration of the metallurgical sciences, equipping him with essential knowledge of phase transformations, mechanical properties, and the processes of alloy production and treatment. Motivated by his academic excellence and curiosity, he advanced to a postgraduate program that focused on the selection of materials, allowing him to delve into the critical task of choosing appropriate materials for engineering applications based on mechanical performance, durability, and environmental compatibility. He further extended his academic reach by pursuing a doctorate in metallurgy and materials, concentrating specifically on casting technology. His doctoral studies, conducted at a leading university in the United Kingdom, not only enhanced his expertise in casting processes but also introduced him to advanced research methodologies and international collaborations, shaping the rigorous scientific approach that would later define his academic career.

Professional Endeavors

Upon completing his academic training, Professor Raiszadeh dedicated his career to higher education and research at Shahid Bahonar University of Kerman. He began as a lecturer and steadily progressed through various academic ranks, ultimately achieving the position of full professor. Throughout his tenure, he has played a pivotal role in curriculum development, student mentorship, and departmental leadership. He has taught a wide array of courses at both undergraduate and graduate levels, covering topics such as solidification, advanced casting, transport phenomena, error analysis, and metallurgical calculations. His commitment to integrating theory with practical applications is evident in his inclusion of programming, materials design, and analytical software tools within his teaching practices. Beyond the classroom, he has devoted considerable effort to supervising student research, guiding more than seventy undergraduate projects and numerous graduate theses. His work reflects not only a dedication to academic instruction but also a passion for fostering the next generation of materials engineers and scientists.

Contributions and Research Focus

Professor Raiszadeh’s research portfolio centers around the improvement of casting processes and the study of defects in aluminum-based alloys. He has made significant strides in investigating aluminum melt quality, particularly in relation to the impact of mechanical treatments such as stirring and vibration. His pioneering research on bifilm defects in aluminum castings has contributed to a better understanding of how such defects form, how they can be detected, and how their detrimental effects can be mitigated or eliminated. This work holds immense value for industries reliant on high-integrity cast components, especially in automotive and aerospace sectors. In addition, he has examined the deactivation mechanisms of bifilm defects across different aluminum alloys, offering comprehensive insights into improving casting outcomes. His research combines experimental analysis with mathematical modeling, allowing for predictive simulations and optimization of casting parameters. These contributions have expanded the scientific understanding of metal casting and informed best practices in industrial metallurgy.

Accolades and Recognition

Throughout his career, Professor Raiszadeh has earned recognition for his scholarly achievements, educational leadership, and research contributions. His steady ascent through the academic ranks is a reflection of both peer acknowledgment and institutional trust in his abilities. He has been entrusted with supervising multiple government- and university-funded research projects, signifying the confidence stakeholders have in his capacity to deliver impactful and innovative solutions. While he remains a humble academic, his influence is felt through his active role in student development, research dissemination, and the implementation of new methodologies within his department. His efforts to integrate analytical tools and computer programming into metallurgical education have further enhanced his reputation as a forward-thinking educator and researcher.

Impact and Influence

Professor Raiszadeh’s impact transcends the boundaries of academia, reaching into industry and broader scientific communities. His work on aluminum melt quality and defect analysis has practical implications for manufacturing efficiency, cost reduction, and product reliability. His research outcomes contribute directly to improving quality assurance in casting, helping companies meet stringent safety and performance standards. In academia, his guidance has inspired a generation of students to pursue careers in materials science, many of whom have gone on to become researchers and engineers in their own right. His ability to translate complex scientific phenomena into understandable concepts has made him a respected figure among students and colleagues alike. Moreover, his interdisciplinary approach—blending materials science with computational tools—has broadened the scope of traditional metallurgical education and practice.

Legacy and Future Contributions

Looking ahead, Professor Raiszadeh’s legacy is being built on a foundation of excellence in research, education, and mentorship. His work on casting processes and defect modeling has laid the groundwork for future explorations into lightweight and high-performance materials. With the increasing demand for sustainable manufacturing and efficient materials usage, his expertise in alloy behavior and defect mitigation will remain highly relevant. He continues to inspire academic inquiry and industrial application, and his commitment to integrating modern computational techniques with traditional metallurgy positions him to contribute meaningfully to the evolving landscape of materials science. As a mentor, researcher, and thought leader, Professor Raiszadeh’s future contributions promise to sustain and enrich the discipline for years to come.

Notable Publications

A method to study the history of a double oxide film defect in liquid aluminum alloys

Authors: R. Raiszadeh, W.D. Griffiths
Journal: Metallurgical and Materials Transactions B
Year: 2006

Precipitation hardening of cast Zr-containing A356 aluminium alloy

Authors: B. Baradarani, R. Raiszadeh
Journal: Materials & Design
Year: 2011

Hydrogen, porosity and oxide film defects in liquid Al

Authors: W.D. Griffiths, R. Raiszadeh
Journal: Journal of Materials Science
Year: 2009

Healing of double oxide film defects in A356 aluminium melt

Authors: M. Aryafar, R. Raiszadeh, A. Shalbafzadeh
Journal: Journal of Materials Science
Year: 2010

A semi-empirical mathematical model to estimate the duration of the atmosphere within a double oxide film defect in pure aluminum alloy

Authors: R. Raiszadeh, W.D. Griffiths
Journal: Metallurgical and Materials Transactions B
Year: 2008

Assoc Prof Dr. Jing Jiang | Team Building and Team Management | Best Researcher Award

Assoc Prof Dr. Jing Jiang | Team Building and Team Management | Best Researcher Award

School of Urban Planning and Municipal Engineering | Xi’an Polytechnic University | China

Author Profile

ORCID

Early Academic Pursuits

Dr. Jing Jiang’s academic path began with a firm grounding in engineering and environmental studies, leading to the attainment of a Doctorate in Engineering. Her early academic experiences were marked by a deep engagement with the principles of building science and sustainability, particularly focusing on the control of thermal and humidity conditions within indoor environments. These foundational years of study laid the groundwork for a career centered around improving human wellbeing through innovative environmental design. Her intellectual curiosity, combined with a strong grasp of both theoretical frameworks and practical applications, fostered an early appreciation for the interdisciplinary nature of building performance, integrating elements of thermodynamics, physiology, architecture, and energy systems.

Professional Endeavors

Since beginning her tenure at the School of Urban Planning and Municipal Engineering at Xi’an Polytechnic University, Dr. Jiang has played a key role as an Associate Professor, contributing to both academic leadership and research excellence. In her professional capacity, she has undertaken teaching responsibilities, student supervision, and curriculum development, while maintaining an active research agenda. Her role extends beyond classroom instruction; she is a mentor to students and a collaborator with faculty and industry partners in promoting evidence-based approaches to environmental planning. Dr. Jiang’s professional work has emphasized not only academic rigor but also the real-world applicability of sustainable indoor environmental design, making her a valuable figure in university-wide initiatives aimed at climate-responsive urban development.

Contributions and Research Focus

Dr. Jiang’s research contributions are rooted in the integration of thermal environment studies with human health and cognitive function. She has developed a strong reputation for her empirical investigations into how small temperature fluctuations and short-term cold exposures affect physiological responses and learning performance, particularly among young individuals. This research, published in Energy and Buildings, highlights the subtle but impactful ways in which indoor climate conditions can influence occupants’ cognitive capacities and overall comfort. Another significant line of her inquiry involves holistic approaches to assessing indoor temperatures—not solely from the perspective of comfort, but in terms of their implications for academic performance and behavioral outcomes. Her publication in Building and Environment showcases a multi-dimensional evaluation framework that challenges traditional models and supports the design of more responsive and intelligent building systems. In addition, her field research on adaptive thermal comfort in primary school settings provides critical insights into how children adapt to varying indoor temperatures in naturally ventilated buildings, offering guidance for designing future educational facilities that balance energy efficiency with occupant wellbeing.

Accolades and Recognition

The scholarly quality of Dr. Jiang’s research has been widely acknowledged through publication in high-impact, peer-reviewed journals indexed in SCI and Scopus. Her work demonstrates not only methodological sophistication but also practical relevance, and has earned her recognition among peers in the domains of building science and environmental engineering. Through her studies, she has contributed valuable data and models that enhance the collective understanding of indoor environmental quality and its effects on users. Institutional recognition of her expertise is also evident in her involvement in major research projects, many of which address critical societal concerns such as educational infrastructure, sustainable urban planning, and climate adaptability in built environments.

Impact and Influence

Dr. Jiang’s academic influence extends beyond the confines of her own institution and discipline. Her research outcomes have informed best practices in the design and management of educational and public buildings, especially with respect to how they affect thermal comfort and mental performance. The interdisciplinary nature of her work—drawing from engineering, psychology, environmental science, and architecture—has allowed her to contribute meaningfully to policy discussions and technical standards related to indoor environmental quality. She has helped shift the discourse from viewing buildings as static energy consumers to recognizing them as dynamic ecosystems that influence and respond to human needs. By foregrounding issues such as thermal adaptability and comfort-driven energy strategies, Dr. Jiang has influenced the way building performance is understood and prioritized by academics, practitioners, and policymakers alike.

Legacy and Future Contributions

Dr. Jiang’s legacy will undoubtedly be marked by her commitment to bridging the gap between human-centered research and environmental engineering. Looking forward, she is well-positioned to deepen her exploration of intelligent building systems, incorporating advanced technologies such as machine learning, occupant behavior modeling, and real-time environmental monitoring into her research. Her forward-thinking approach promises to contribute to the development of buildings that are not only energy-efficient but also adaptive to diverse user needs across climates and demographics. Furthermore, her growing network of research collaborations and institutional partnerships suggests that her work will continue to influence the future of urban sustainability, indoor health, and education facility planning. As a scholar dedicated to improving human experiences within the built environment, Dr. Jing Jiang is poised to leave a lasting mark on both academic scholarship and professional practice in urban and environmental design.

Notable Publications

A holistic approach to the evaluation of the indoor temperature based on thermal comfort and learning performance

Author(s): Jing Jiang, Dengjia Wang, Yanfeng Liu, Yuhui Di, Jiaping Liu
Journal: Building and Environment
Year: 2021

A field study of adaptive thermal comfort in primary and secondary school classrooms during winter season in Northwest China

Author(s): Jing Jiang, Dengjia Wang, Yanfeng Liu, Yuhui Di, Jiaping Liu
Journal: Building and Environment
Year: 2020

A study on pupils’ learning performance and thermal comfort of primary schools in China

Author(s): Jing Jiang, Dengjia Wang, Yanfeng Liu, Yanchao Xu, Jiaping Liu
Journal: Building and Environment
Year: 2018

The passive solar heating technologies in rural school buildings in cold climates in China

Author(s): Yanfeng Liu, Jing Jiang, Dengjia Wang, Jiaping Liu
Journal: Journal of Building Physics
Year: 2018

The indoor thermal environment of rural school classrooms in Northwestern China

Author(s): Yanfeng Liu, Jing Jiang, Dengjia Wang, Jiaping Liu
Journal: Indoor and Built Environment
Year: 2017

Assoc. Prof. Dr. Bounmy Keohavong | Performance Management | Excellence in Research

Assoc. Prof. Dr. Bounmy Keohavong | Performance Management | Excellence in Research

Souphanouvong University | Lao People’s Democratic Republic

Author Profile

ORCID

SCOPUS

Early Academic Pursuits

Assoc. Prof. Dr. Bounmy Keohavong’s academic journey reflects a steady and purposeful progression in agricultural sciences. His foundation in Plant Science was laid at the National University of Laos, where his research explored soil erosion issues affecting upland agricultural regions—a critical challenge in sustainable farming. This early academic inquiry demonstrated his capacity to align scientific curiosity with pressing local agricultural needs.

Driven by a desire to expand his scientific capabilities and contribute to agricultural innovation, he pursued advanced studies at Kangwon National University in Korea. His Master’s research focused on the effects of natural and treated deep sea water on poultry health, highlighting his growing interest in animal nutrition and alternative resources in feed practices. His doctoral dissertation advanced this path further, evaluating the metabolizable energy values of biofuel by-products—an area gaining global attention due to its implications for sustainability and waste utilization. This formative academic training provided him with deep insights into agricultural ecosystems, nutrition, and feed biotechnology, setting the stage for a distinguished professional and research career.

Professional Endeavors

Since joining Souphanouvong University, Dr. Keohavong has demonstrated unwavering commitment to higher education and agricultural research. As an Associate Professor in the Department of Animal Science, he has taught, mentored, and guided numerous students while cultivating a vibrant research culture. In his leadership capacity as Director of the Office of Research and Academic Services, he has managed competitive research grants, advanced graduate education initiatives, and elevated the university’s academic journal platforms.

His academic roles are complemented by significant contributions to regional development through external consultancy. As a National Specialist with the Asian Development Bank’s SPS (Sanitary and Phytosanitary) Project, he played a key role in strengthening Laos’ feed safety and food standards. His work included developing regulatory frameworks, designing testing and harmonization plans, conducting national training sessions, and contributing to Laos’ alignment with ASEAN and international safety protocols.

Contributions and Research Focus

Dr. Keohavong’s research encompasses animal nutrition, feed biotechnology, and food safety governance. He is particularly recognized for his work on evaluating alternative feed ingredients derived from biofuel by-products, which address both economic and ecological concerns in livestock production. His expertise also includes feed formulation, nutrient analysis, and integrating statistical and econometric tools such as SPSS and STATA to analyze agricultural and policy data.

His involvement in research grant writing and academic journal management has helped foster an ecosystem of scholarly excellence within his institution. Furthermore, his engagement in national and regional policy dialogues has supported the implementation of science-based regulations in agricultural and food sectors, aligning them with ASEAN standards. His collaborative projects have strengthened research capacity, especially through international knowledge exchange and institutional partnerships.

Accolades and Recognition

While specific awards are not listed in his profile, Dr. Keohavong’s long-term roles within academia and his appointment to the ADB’s SPS project underscore his recognized authority in the field. His dual position as academic leader and national technical expert speaks volumes about the trust placed in his capabilities by educational and policy institutions alike. His scholarly work is documented and accessible via ORCID, reflecting transparency and international visibility. His leadership in academic service and policy-based consultancy further reinforces his professional credibility and institutional standing.

Impact and Influence

Dr. Keohavong’s influence is multidimensional—shaping student learning, enhancing institutional research capacity, and contributing to national food safety systems. At Souphanouvong University, he has been instrumental in elevating academic standards, especially in promoting graduate-level research and publication culture. His participation in food and feed safety policymaking has enhanced Laos’ compliance with international food standards, directly contributing to public health and regional trade development.

Through his multilingual proficiency—fluent in Lao and English, and conversant in Korean—he effectively bridges cultural and academic gaps, strengthening cross-border collaborations. His efforts support Laos’ integration into global academic and agricultural research networks, ensuring knowledge transfer and policy innovation.

Legacy and Future Contributions

Looking ahead, Assoc. Prof. Dr. Keohavong is positioned to make lasting contributions to agricultural policy innovation, sustainable livestock production, and regional academic development. With evolving educational regulations allowing greater international engagement, he is poised to build robust partnerships with global institutions. His legacy will include mentoring emerging researchers, shaping national research agendas, and contributing to resilient, knowledge-based agricultural systems in Southeast Asia.

His ongoing work reflects a visionary blend of research, education, and policy engagement. By consistently applying science for societal benefit, he embodies the role of a transformative academic leader committed to sustainable development and educational excellence.

Notable Publications

Impact of Genetically Modified Food Knowledge, Environmental, and Food Safety Concerns on Purchase Intention of Genetically Modified Food in Mediating Role of Perceived Risk: An Empirical Study in Thailand

Author: Bounmy Keohavong
Journal: World Food Policy
Year: 2020

A Study on Biomass Production of Yeast Isolated from Starter Culture (Sa Lao)

Author: Bounmy Keohavong
Journal: Souphanouvong Journal: Multi-disciplinary Research of Souphanouvong University
Year: 2018

Effects of Drinking Diluted Deep Sea Water on Growth Performance and Immune Response in Broiler Chickens

Author: Bounmy Keohavong
Journal: PSAKU International Journal of Interdisciplinary Research
Year: 2018

Pellet Processing Improved True Metabolizable Energy of Jatropha Meal in Adult Rooster

Author: Bounmy Keohavong
Journal: International Journal of Trend in Research and Development
Year: 2016

Comparison of Aviary, Barn and Conventional Cage Raising of Chickens on Laying Performance and Egg Quality

Author: Bounmy Keohavong
Journal: Asian-Australasian Journal of Animal Sciences
Year: 2014

Mr. Alireza Ahmadi | Lean Manufacturing | Excellence in Research

Mr. Alireza Ahmadi | Lean Manufacturing | Excellence in Research

Politecnico di Milano/Universidad Politecnica da Madrid, Italy

Author Profile

Orchid 

🎓 Early Academic Pursuits

From his earliest studies in reservoir engineering at Petroleum University of Technology Ahwaz, Alireza Ahmadi demonstrated a passion for understanding complex systems and optimizing resource use. Immersed in fluid dynamics and subsurface modeling, he built a foundation that would later evolve into a broader fascination with organizational and operational systems. His subsequent MSc in Reservoir Engineering at Islamic Azad University – Science and Research Branch (2016) deepened his technical expertise, while a parallel Master of Specialization in Project Engineering from Tose’e Higher Education Institute honed his ability to translate technical insights into actionable project plans. This blend of rigorous engineering training and project management perspectives paved the way for his MBA in Innovation Management from École des Ponts ParisTech in 2020, equipping him with strategic frameworks for fostering creativity and leading change. Today, as he pursues a dual PhD in Management Engineering and Organizational Management at Politecnico di Milano and Universidad Politécnica de Madrid, his academic trajectory reflects a seamless evolution from mastering technical subsurface problems to interrogating the structures, processes, and human dynamics that drive organizations forward. His early academic journey, marked by curiosity, interdisciplinary study, and a steady build-up of analytical rigor, laid the groundwork for his transformative approach to both engineering and management challenges.

💼 Professional Endeavors

Over more than 15 years, Alireza’s professional path has woven through varied industries and roles, each contributing to his multidisciplinary acumen. Beginning as a Retail Sales Specialist, he cultivated interpersonal skills and an appreciation for customer-centric thinking. Transitioning into program management with the Iranian Ministry of Oil, he oversaw monitoring and control of mega-projects, developing early expertise in large-scale coordination and stakeholder engagement. As Senior Project Control Manager for a €400M EPC gas condensate refinery project at Kasra Refinery, he managed intricate budgets, negotiated with international partners, and led cross-functional teams, sharpening his capacity for strategic oversight under pressure. Shifting to consultancy roles in Tehran and Paris, he performed economic and technical analyses for energy market ventures and designed geothermal drilling solutions, blending technical proficiency with market insight. His tenure as International Business Development Manager at SOCOTEC Monitoring and ESTD expanded his skillset into strategic expansion and revenue planning in diverse markets. At Politecnico di Milano, he now channels this rich background into research fellow responsibilities and PhD work, optimizing business processes, applying lean methodologies in academic-industry collaborations, and mentoring students. Each professional chapter reflects his ability to adapt, lead multicultural teams, and drive operational excellence, forging a profile that bridges engineering detail, strategic thinking, and innovation leadership.

🔬 Contributions and Research Focus

Alireza’s research interests lie at the nexus of operational excellence, lean systems, and data-driven decision-making within Industry 4.0 contexts. He has contributed to studies on workload control and human-machine interfaces, exploring how organizations harness technology to enhance productivity and adaptability. His dual PhD work examines how management engineering principles can optimize processes in uncertain markets, integrating advanced analytics and digital transformation strategies. In academic-industry projects, he has deployed lean methodologies to streamline workflows, reduce inefficiencies, and foster continuous improvement. Through publications on workload control and Industry 4.0 interfaces, he offers actionable insights into balancing automation with human factors, ensuring that technological advances drive not only efficiency but also employee engagement and organizational resilience. By leveraging his engineering roots, he approaches management challenges with a systems-thinking lens, modeling processes akin to complex engineering systems and applying data analytics to reveal hidden patterns and opportunities. His multidisciplinary background allows him to frame research questions that intersect technical feasibility, economic viability, and human considerations, positioning his contributions at the forefront of operational innovation in modern enterprises.

🏅 Accolades and Recognition

Throughout his journey, Alireza’s dedication to excellence and innovation has garnered respect among peers and mentors. His acceptance into dual PhD programs at leading European institutions attests to his academic rigor and the relevance of his research proposals. Achieving an MBA from a prestigious French school and excelling in earlier engineering degrees signal consistent high performance. In professional spheres, being entrusted with multimillion-euro project controls and spearheading international business development initiatives reflect recognition of his leadership and strategic acumen. Within academic and industry networks—such as the Project Management Institute and the Society of Petroleum Engineers—he has contributed ideas, participated in competitions, and shared best practices, building his reputation as a thought contributor. Although formal awards or honors may not all be publicly listed, the trajectory of roles entrusted to him, combined with published research outputs and mentorship roles, underscores a career marked by achievement and peer acknowledgment.

🌍 Impact and Influence

Alireza’s work has influenced both technical projects and organizational practices. By applying lean and data-driven frameworks to academic-industry collaborations, he has helped teams achieve measurable performance improvements, demonstrating how principles rooted in manufacturing and engineering can translate to broader contexts. His analyses of market entry strategies and feasibility studies for energy ventures have shaped decision-making in corporate settings, underscoring his capacity to bridge technical detail with strategic forecasting. In mentoring students at Politecnico di Milano, he passes on applied consulting insights, influencing the next generation of problem solvers. His multicultural experiences—navigating projects in Iran, France, and Italy—enhance his ability to foster inclusive collaboration, encouraging diverse perspectives in tackling complex challenges. Through publications on human-machine interfaces in Industry 4.0, he informs practitioners and researchers on designing systems that harmonize automation with human roles, potentially impacting technology adoption and workforce development approaches in multiple sectors.

🔮 Legacy and Future Contributions

Looking ahead, Alireza Ahmadi is poised to leave a lasting mark on how organizations harness engineering-inspired methodologies and digital tools for sustainable growth. His legacy will be defined by integrating rigorous analytical models with human-centric process design, guiding companies through transformation in uncertain markets. As he completes his dual PhD, the frameworks and case studies he develops may serve as blueprints for operational excellence in diverse industries. His future contributions are likely to include collaborative research projects that bring together academia and industry, leveraging data analytics, lean thinking, and emerging technologies such as AI and IoT to enhance decision-making. By continuing to mentor and share knowledge, he will multiply his impact, empowering teams worldwide to adopt resilient, efficient practices. With a foundation built on interdisciplinary learning and a track record of driving real-world improvements, Alireza’s evolving work promises to influence both theory and practice, cementing his role as a visionary in management engineering and organizational innovation.

📝Notable Publications

The impact of labor flexibility on operational efficiency in industry 5.0: a systematic literature review

Authors: Alireza Ahmadi, Alessandra Cantinia, Víctor Gómez Frías, Alberto Portioli Staudacher
Journal: International Journal of Production Research
Year: 2025

A Bibliometric Perspective of Integrating Labor Flexibility in Workload Control

Authors: Alireza Ahmadi, Alessandra Cantini, Alberto Portioli Staudacher
Book/Series: In Advances in Production Management Systems (IFIP Advances in Information and Communication Technology, vol. 730)
Year: 2024

 Applying a process-centric approach to the digitalization of operations in manufacturing companies: a case study

Authors: Matteo Rossini, Alireza Ahmadi, Alberto Portioli Staudacher
Journal/Proceedings: Procedia Computer Science
Year: 2024

Enhancing Labor Flexibility in Workload Control: The Development and Application of a Framework

Authors: Alireza Ahmadi, Alessandra Cantini, Federica Costa, Alberto Portioli Staudacher
Book/Series: In Advances in Production Management Systems (IFIP Advances in Information and Communication Technology, vol. 730)
Year: 2024

 Integration of Lean Supply Chain and Industry 4.0

Authors: Matteo Rossini, Alireza Ahmadi, Alberto Portioli Staudacher
Journal/Proceedings: Procedia Computer Science
Year: 2024

Assoc Prof Dr. Qi Song | Motivation and Employee Engagement | Best Researcher Award

Assoc Prof Dr. Qi Song | Motivation and Employee Engagement | Best Researcher Award

Southwestern University of Finance and Economics, China

Author Profile

Orcid 

🎓 Early Academic Pursuits

From the outset of her academic journey, Dr. Qi Song demonstrated a strong commitment to scholarly excellence and a deep interest in organizational behavior and human resource management. She completed both her doctoral and postgraduate studies at the prestigious School of Business Administration, Southwestern University of Finance and Economics in China, an institution known for nurturing intellectual rigor and innovative thought in management sciences. Her formative academic years were marked by rigorous training in empirical research methods and leadership theory, which laid the foundation for her career as a scholar.

Her doctoral studies offered her the opportunity to explore critical organizational dynamics and develop a strong understanding of the interplay between trust, creativity, and employee behavior—an area that would go on to define much of her research trajectory. Through this early immersion into advanced business administration studies, she acquired a unique combination of theoretical depth and methodological precision, setting her apart as an emerging thought leader in the field.

🧑‍🏫 Professional Endeavors

Dr. Qi Song currently holds the position of Associate Professor in the School of Business Administration at Southwestern University of Finance and Economics, one of China’s most respected institutions in economics and business education. Her role at the university encompasses a rich blend of teaching, mentoring, and leading cutting-edge research projects.

Beyond classroom instruction, Dr. Song has taken on several leadership roles in academic research, most notably as the Principal Investigator for multiple national and institutional research grants. These include one ongoing project under the prestigious National Natural Science Foundation of China (NSFC) and three completed projects funded by the Fundamental Research Funds for the Central Universities. Her involvement in additional projects under the Ministry of Education in China and regional science foundations in Sichuan and Fujian provinces showcases her broad impact across institutional and geographic boundaries.

Her teaching philosophy is rooted in evidence-based practice and real-world relevance, often bringing insights from her own research into the classroom to stimulate critical thinking and problem-solving skills among students.

🔬 Contributions and Research Focus

Dr. Qi Song’s research interests are centered around leadership management, human resource management, and employee well-being. Her work has been influential in understanding how trust dynamics within organizations influence creativity and work-family conflict. One of her most widely cited articles, “Energizing, yet tiring: The dual impact of felt trust on employee creativity and work-to-family conflict”, published in the Journal of Business Research, sheds light on the nuanced effects of managerial trust on both professional output and personal balance.

In addition to high-impact research in Journal of Business Research and Human Resource Management, she has published in respected journals such as Tourism Management, Internet Research, and Information & Management. These publications reflect her interdisciplinary grasp of both the psychological and structural aspects of business management.

Her scholarly output includes a notable first-authored case study published in Ivey Publishing, further demonstrating her ability to translate theory into practical, teachable insights.

🏅 Accolades and Recognition

While Dr. Song’s accolades may not always take the form of trophies and medals, her scholarly influence is evident in her Google Scholar profile, which records over 426 citations, an H-index of 5, and an i10-index of 4 as of June 2025. These metrics speak to her growing reputation in international academic circles and her capacity to generate meaningful, lasting impact through her research.

Her doctoral dissertation received distinction, recognized through a 2020 Excellent Doctoral Dissertation Project award, which was part of an education reform initiative at her home institution. This accolade underscores her early excellence and the practical value of her doctoral research.

🌍 Impact and Influence

The influence of Dr. Qi Song’s research extends beyond academia. Her work addresses pressing organizational issues such as employee burnout, organizational trust, and crisis management in service sectors—topics that resonate in today’s rapidly changing business environment. By exploring how human resource practices can foster resilience and innovation, she contributes to broader conversations on corporate sustainability and psychological safety.

Moreover, her research projects under national and provincial foundations indicate a strong connection between academic scholarship and public policy priorities in China. These collaborations help shape the strategic direction of human resource development in both public and private sectors.

🔮 Legacy and Future Contributions

As she continues her academic career, Dr. Qi Song stands at the forefront of next-generation leadership studies in China. Her evolving research agenda includes deeper explorations into the digital transformation of HRM, cross-cultural leadership, and employee adaptability in volatile environments. She is expected to lead further interdisciplinary projects that bridge psychology, technology, and management, amplifying her role as a mentor and thought leader.

Her unwavering dedication to advancing knowledge, supporting young scholars, and contributing to institutional excellence ensures that her legacy will extend well beyond individual publications or grants. As she nurtures the next wave of researchers and continues to publish insightful work, Dr. Song’s influence is poised to grow on a global scale.

📝Notable Publications

Energizing, yet tiring: The dual impact of felt trust on employee creativity and work-to-family conflict

Authors: Qi Song, Yuxuan Guo, Qiqi Ren, Yingwei Ren, Hui Lv, Ruotong Ma, Yujing Gan
Journal: Journal of Business Research
Year: 2025

How does occupational stigma and work dirtiness inhibit hotel front-line employees’ proactive customer service performance and its solutions

Authors: Xingyang Lv, Kexin Zhang, Qi Song, Xiaoxiao Fu, Yue Liu
Journal: Tourism Management
Year: 2024

 When leaders and their employees disagree: Investigating the consequences of differences in cognitions of workplace event criticality

Authors: Qi Song, Li Gong, Man Zhao, Tao Shen, Yang Chen, Jialin Wang
Journal: Journal of Managerial Psychology
Year: 2024

How does Human Resource Management help service organizations to thrive in uncertainties and risks: Postcrisis as a context

Authors: Yang Chen, Rong Fu, Mengying Xie, Fang Lee Cooke, Qi Song
Journal: Human Resource Management
Year: 2024

 Learn from others or put them down? The double-edged effect of upward social comparison in the workplace

Authors: Qi Song, Lu Zhang, Lifang Gao, Bao Cheng, Yang Chen
Journal: Acta Psychologica Sinica
Year: 2023

Dr. Muhammad Umar Farooq | Team Building and Team Management | Best Researcher Award

Dr. Muhammad Umar Farooq | Team Building and Team Management | Best Researcher Award

Shanghai Jiao Tong University, China

Author Profile

Orcid 

🎓 Early Academic Pursuits

Muhammad Umar Farooq’s academic journey is a testament to his unwavering dedication to scientific exploration. Hailing from Sialkot, Punjab, Pakistan, his early education in Physics and Mathematics laid a strong foundation for a career rooted in scientific rigor and innovation. He earned his BSc from the University of The Punjab, Lahore, and continued to refine his interest in physics through an MSc from the University of Agriculture, Faisalabad. His research at this stage already hinted at his future trajectory, dealing with complex physical principles and phenomena.

Eager to deepen his understanding, he pursued an MS in Physics at the International Islamic University Islamabad, where he engaged in advanced experimental research using Langmuir probes to measure plasma electron temperatures and densities—a clear indication of his growing interest in applied and experimental physics. His academic ambitions culminated in a Ph.D. in Electronic Science and Technology at the prestigious University of Electronic Science and Technology of China (UESTC). There, he undertook groundbreaking work on gold nanoparticles and gadolinium-doped zinc oxide quantum dots, focusing on their use in nanovehicles for enhanced chemotherapy outcomes—a significant stride in nanobiotechnology.

🧪 Professional Endeavors

Muhammad Umar Farooq’s career is defined by continuous evolution, marked by prestigious research positions across Asia and Europe. His postdoctoral career began at the State Key Lab of Biotherapy at Sichuan University, where he contributed to the development of ultra-sensitive multimodal nanoprobes aimed at tumor precision diagnosis. This role highlighted his expertise in integrating imaging techniques such as MRI, CT, and NIR fluorescence for enhanced diagnostic tools.

From 2018 to 2019, he worked at the State Key Laboratory of Chemical Engineering, East China University of Science and Technology, delving into the reaction kinetics of supported catalysts for environmentally efficient chemical production. His pursuit of excellence led him to Russia, where he joined Kazan Federal University as a Senior Researcher at the A. M. Butlerov Institute of Chemistry. Currently, he serves as both a Postdoctoral Researcher and Senior Researcher at the School of Chemistry and Chemical Engineering, Shanghai Jiao Tong University, focusing on the design and behavior of micro/nano-motors for advanced sensing applications.

His earlier professional experience includes roles as a Research Assistant at the National Institute of Laser and Optronics in Islamabad, where he explored plasma-based modification of biomaterial surfaces, and as a Physics and Mathematics Instructor under the School Education Department in Punjab, Pakistan. These foundational roles reflect his broad-based knowledge and dedication to scientific education and research.

🔬 Contributions and Research Focus

Muhammad Umar Farooq’s research is at the cutting edge of nanotechnology and material science. His work spans from synthesizing inorganic and organic nanoparticles to engineering surface properties for specific biomedical and energy applications. He has contributed significantly to the development of nanoconjugates—complex nanomaterial systems that hold great promise in drug delivery, diagnostics, and catalysis.

One of his core research interests lies in catalysis and catalytic reaction engineering. Here, he explores how advanced nanocatalysts with customized surface and interface properties can improve industrially relevant reactions. His focus on surface engineering and the integration of polymeric systems showcases his ability to tailor materials for desired functionalities, making his work both innovative and application-driven.

🏆 Accolades and Recognition

While formal accolades and awards were not explicitly listed, Muhammad Umar Farooq’s academic and professional journey reflects the kind of recognition earned through merit and consistent achievement. His appointments at globally renowned institutions such as Shanghai Jiao Tong University, Sichuan University, and Kazan Federal University underscore his standing as a respected researcher. His role as a Senior Researcher is itself a testament to his scientific reputation and leadership capabilities in the field of nanotechnology.

🌍 Impact and Influence

Farooq’s multidisciplinary research has far-reaching implications. His contributions to cancer diagnostics, eco-efficient chemical production, and advanced sensor technologies place him at the intersection of science and real-world solutions. His work is not confined to theoretical development; instead, it actively bridges the gap between lab-scale innovation and practical, industrial, or clinical implementation.

His influence extends to his mentorship of young researchers and collaboration with international research teams, fostering a culture of scientific exchange and global problem-solving.

🔮 Legacy and Future Contributions

Looking ahead, Muhammad Umar Farooq is poised to continue shaping the fields of nanoscience and materials engineering. With a strong foundation in both fundamental physics and applied chemistry, his research is expected to advance the development of next-generation biomedical devices, sustainable catalysis systems, and intelligent sensing technologies.

Driven by a deep curiosity about the behavior of matter at the nanoscale, his legacy will likely be characterized by both scholarly innovation and practical impact. As he continues to contribute to high-impact projects, train future scientists, and publish groundbreaking work, his role as a thought leader in nanotechnology is only expected to grow.

📝Notable Publications

In-vitro evaluation of a multimodal pH-activatable nanoprobe for synergistic dual-drug delivery in tumor-targeted therapy

Author: Muhammad Umar Farooq
Journal: Materials Chemistry and Physics
Year: 2025

A step towards rational design of hierarchical porous MOFs architectures for emerging practical implementations

Author: Muhammad Umar Farooq
Journal: Chemical Engineering Journal
Year: 2025

DFT and Molecular Docking Study of HA-Conjugated SWCNTs for CD44-Targeted Delivery of Platinum-Based Chemotherapeutics

Author: Muhammad Umar Farooq
Journal: Pharmaceuticals
Year: 2025

 Highly sensitive detection of drug, and energy storage based on electrochemical system by using transition metal sulfides@carbon nanotubes nanocomposites electrodes

Author: Muhammad Umar Farooq
Journal: Diamond and Related Materials
Year: 2025

 Seashell-based bioceramics for advanced electrospun tissue scaffolds

Author: Muhammad Umar Farooq
Journal: The European Chemistry and Biotechnology Journal
Year: 2025

Assoc. Prof. Dr. Junpeng Ma | Team Building and Team Management | Best Researcher Award

Assoc. Prof. Dr. Junpeng Ma | Team Building and Team Management | Best Researcher Award

sichuan university, China

Author Profile

Scopus

🎓 Early Academic Pursuits

Dr. Junpeng Ma began his academic journey in the field of electrical engineering at Southwest Jiaotong University in Chengdu, China. His intellectual curiosity and deep interest in energy systems quickly distinguished him among his peers. He completed his Bachelor of Science (B.S.) degree in 2013, laying a strong foundation in electrical circuits, power electronics, and systems engineering. Fueled by a desire to contribute to the rapidly evolving energy sector, he continued his academic pursuit at the same institution, earning his Ph.D. in 2018. During his doctoral studies, Dr. Ma focused on the intricate dynamics of modern energy systems, with particular attention to renewable energy integration and high-voltage transmission.

In a pivotal phase of his academic development, Dr. Ma expanded his horizons internationally by joining Aalborg University in Denmark as a Guest Ph.D. Student from November 2017 to May 2018. Aalborg is renowned for its excellence in power electronics and smart energy systems, and this experience gave Dr. Ma access to advanced methodologies and a global network of researchers. It not only sharpened his technical acumen but also enriched his cultural and collaborative skills—traits that would become central to his later work as an educator and innovator.

👨‍🏫 Professional Endeavors

Upon completion of his doctoral degree, Dr. Ma began his professional academic career at Sichuan University, one of China’s most prestigious institutions. He now serves as an Associate Professor in the College of Electrical Engineering, where he combines his passion for teaching with a deep commitment to cutting-edge research. In this role, he has been instrumental in educating future engineers and leading advanced research initiatives in energy systems.

Dr. Ma’s professional focus encompasses both classroom instruction and the development of research projects that address national and global energy challenges. He is actively engaged in supervising graduate students, designing curricula in line with the latest technological trends, and publishing research that informs the design and optimization of power grids. His position enables him to contribute to Sichuan University’s growing reputation in power system innovation while continuing his own journey of academic excellence.

🔬 Contributions and Research Focus

Dr. Ma’s research centers on two of the most critical elements of modern energy infrastructure: the modeling and control of new energy clusters and high-voltage direct current (HVDC) systems. As global energy networks pivot toward renewable sources, the challenge of managing their intermittent and decentralized nature has come to the forefront. Dr. Ma’s work addresses these challenges through advanced modeling techniques and control strategies designed to improve reliability and efficiency.

New energy clusters often integrate wind, solar, battery storage, and other distributed energy resources. Dr. Ma develops frameworks that allow these systems to function cohesively under changing environmental and load conditions. In parallel, his research on HVDC systems—which are essential for long-distance power transmission—focuses on optimizing their operation to reduce losses, manage faults, and enable more flexible energy exchange between regions. His contributions in these areas are instrumental in supporting China’s—and the world’s—transition to a low-carbon energy future.

🏆 Accolades and Recognition

Dr. Ma’s dedication to impactful research has been recognized through a series of prestigious awards from major scientific and professional bodies. He was awarded the Second Prize of the Science and Technology Progress Award by the China Electrotechnical Society, where he was recognized as the leading contributor (1st out of 10). This accolade reflects the technical depth and relevance of his work in the field of power systems.

He also received the First Prize of the Science and Technology Progress Award from the China Association of Work Safety (2nd out of 15), honoring his contributions to the safety and reliability of energy infrastructure—an area of increasing importance in the era of energy transition. Additionally, he was honored with the Second Prize of the Science and Technology Progress Award of Sichuan Province (3rd out of 8), further affirming his regional influence and scientific merit. These awards underscore his ability to translate complex research into practical innovations that benefit both industry and society.

🌍 Impact and Influence

Beyond his academic achievements, Dr. Ma’s work exerts a significant influence on the practical development of smart and sustainable energy systems. His research findings are routinely cited and applied in projects focused on grid modernization and renewable integration. In China’s ambitious move toward energy decarbonization, his contributions support essential initiatives aimed at improving grid flexibility, enhancing power quality, and ensuring energy security.

As an educator, Dr. Ma plays a transformative role in shaping the minds and careers of young engineers. His students are not only equipped with technical skills but are also inspired by his example of research-driven societal contribution. His influence extends beyond the university, as he participates in technical committees, delivers lectures at academic conferences, and collaborates with research institutes and industry partners across China and internationally.

🔮 Legacy and Future Contributions

Looking forward, Dr. Junpeng Ma is positioned to be a thought leader and innovator in the global transition toward intelligent, decarbonized energy systems. His continued research promises to yield further breakthroughs in the areas of renewable energy management, smart grid resilience, and advanced control systems for HVDC technologies. These advancements will not only shape technical practices but also inform policy-making and investment in sustainable energy infrastructure.

His legacy will likely be defined by a combination of academic rigor, technological innovation, and societal impact. As he mentors future researchers and deepens his contributions to global energy solutions, Dr. Ma stands as a vital figure in the evolution of electrical engineering in the 21st century. His work today lays the groundwork for a cleaner, smarter, and more resilient energy future for all.

📝Notable Publications

Prediction Method and Optimal Control of Subsequent Commutation Failure in LCC-HVDC System Based on Dynamic Extinction Angle Equation

Author(s): Zhiwei Lei, Junpeng Ma, Shunliang Wang, Ning Jiao, Tianqi Liu
Journal: Dianli Xitong Baohu yu Kongzhi / Power System Protection and Control
Year: 2025

Stability Analysis of Power Self-Synchronization Control of Grid-Forming Converters in Wide Range of Short-Circuit Ratio Conditions

Author(s): Junpeng Ma, Lei Li, Chengbin Chi, Shunliang Wang, Tianqi Liu
Journal: Dianli Xitong Baohu yu Kongzhi / Power System Protection and Control
Year: 2025

Adaptive Control Strategy of Disturbance Voltage for Impedance Measurement

Author(s): Jingbo Zhao, Qian Zhou, Wenli Yang, Junpeng Ma
Journal: Journal of Power Supply
Year: 2025

A Thyristor-Based Solid-State DC Circuit Breaker With a Three-Winding Coupled Inductor

Author(s): Shunliang Wang, Ming Li, Kejun Qin, Nie Hou, Tianqi Liu
Journal: IEEE Transactions on Power Electronics
Year: 2025

 An Asymmetric Hybrid Phase-Leg Modular Multilevel Converter With Small Volume, Low Cost, and DC Fault-Blocking Capability

Author(s): Rui Zhang, Shunliang Wang, Junpeng Ma, Tianqi Liu, Yun Yang
Journal: IEEE Transactions on Power Electronics
Year: 2025

Dr. Jia Liu | Team Building and Team Management| Best Researcher Award

Dr. Jia Liu | Team Building and Team Management| Best Researcher Award

Capital Center for Children’s Health, Capital Medical University, China

Author Profile

Orcid

🌱 Early Academic Pursuits

Jia Liu began her academic journey with a strong focus on medical sciences, where she pursued an M.D. in Otolaryngology Head and Neck Surgery from Beijing Anzhen Hospital, affiliated with Capital Medical University, between 2013 and 2016. Her dedication to expanding her medical expertise led her to the University of Chicago, USA, in 2015, where she gained invaluable experience as a visiting student. This international exposure enriched her understanding of advanced clinical practices and set the stage for her future career.

💼 Professional Endeavors

After completing her academic training, Jia Liu began her professional career as a resident at Beijing Anzhen Hospital from 2016 to 2019. Here, she honed her clinical skills in otolaryngology, particularly in the diagnosis and treatment of head and neck disorders. Her dedication and growing expertise earned her a position as an attending physician at the Capital Center for Children’s Health, Capital Medical University, in 2019. In this role, she has continued to provide high-quality care while also actively engaging in research, making significant contributions to pediatric otolaryngology.

🔬 Contributions and Research Focus

Jia Liu’s research is distinguished by its focus on otolaryngology, with a particular emphasis on olfactory disorders. Her notable project, funded by the Beijing Natural Science Foundation from 2019 to 2020, focused on the “Pedigree study on the molecular mapping, screening, and expression of olfactory genes for isolated congenital anosmia.” This research has advanced the understanding of the genetic basis of olfactory disorders, paving the way for improved diagnostic methods and therapeutic strategies.

🏆 Accolades and Recognition

Jia Liu’s dedication and achievements have been recognized through several prestigious awards. In 2014, she received the “Merck Clinical Scholar Award” from the American Academy of Otolaryngic Allergy (AAOA), a recognition of her early potential in the field. The following year, she was awarded a Chinese Government Scholarship from the China Scholarship Council, enabling her to study abroad at the University of Chicago. Her exceptional contributions to medical science were further acknowledged with the Beijing Medical Science and Technology Prize in 2018 and the Chinese Medical Science and Technology Prize in 2019.

🌐 Impact and Influence

Jia Liu has significantly impacted the field of otolaryngology, especially in pediatric care. Her clinical expertise and commitment to research have established her as a respected figure in her field. Her work in understanding and treating olfactory disorders has not only advanced scientific knowledge but has also improved clinical practices.

🌟 Legacy and Future Contributions

Jia Liu is poised to continue making significant contributions to otolaryngology. Her commitment to exploring the genetic basis of olfactory disorders positions her to lead future breakthroughs in the diagnosis and treatment of these conditions. As she continues her work at the Capital Center for Children’s Health, her legacy as a dedicated clinician and researcher is set to grow.

📝Notable Publications

Evaluation of brain and neurophysiologic function in isolated congenital anosmia

Author(s): Liu J, Gao X, Zhan X, Lu Y, Yao L, Yi X, Gu Q
Journal: American Journal of Otolaryngology
Year: 2025

 The effect of nasopharyngeal obstruction on the olfactory bulb volume and olfactory sulcus depth in children

Author(s): Yao L, Liu J, Xiaoli Yi, Gu Q
Journal: European Archives of Oto-Rhino-Laryngology
Year: 2024

 Analysis of clinical characteristics in the patient with olfactory disorders

Author(s): Liu J, Zhan X, Yao L, Xie H, Chang F
Journal: Journal of Clinical Otorhinolaryngology Head and Neck Surgery (Lin Chuang Er Bi Yan Hou Tou Jing Wai Ke Za Zhi)
Year: 2022

Prognostic value of olfactory bulb volume in patients with post-viral olfactory dysfunction

Author(s): Guo Y, Yao L, Sun Z, Huang X, Liu J, Wei Y
Journal: Journal of Clinical Otorhinolaryngology Head and Neck Surgery (Lin Chuang Er Bi Yan Hou Tou Jing Wai Ke Za Zhi)
Year: 2022

Predictors of posttreatment olfactory improvement in patients with postviral olfactory dysfunction

Author(s): Guo Y, Yao L, Sun Z, Huang X, Liu J, Wei Y
Journal: Journal of Clinical Otorhinolaryngology Head and Neck Surgery (Lin Chuang Er Bi Yan Hou Tou Jing Wai Ke Za Zhi)
Year: 2021

Mr. puya zhao | Team Building and Team Management | Excellence in Research

Mr. puya zhao | Team Building and Team Management | Excellence in Research

AsymBio, China

Author Profile

Scopus

🌱 Early Academic Pursuits

Puya Zhao embarked on his academic journey at Henan Agricultural University, where he earned his bachelor’s degree in 2008. His passion for biotechnology and life sciences led him to pursue dual master’s degrees at two prestigious institutions—the Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, and Tianjin University of Science and Technology—from 2008 to 2011. These formative years provided him with a robust foundation in bioprocessing and industrial biotechnology.

🚀 Professional Endeavors

Puya Zhao’s career is marked by significant achievements in the biopharmaceutical industry. Since July 2022, he has served as the Downstream Process Development Director at Shanghai AsymBio, where he has overseen the successful completion of over 30 Investigational New Drug (IND) projects, including monoclonal antibody, bispecific antibody, nanobody, Fc-fusion proteins, and other recombinant proteins. His leadership extends to managing a purification team of 15-20 members, where he is responsible for strategic design, experimental execution, report drafting, and team management.

Before his tenure at Shanghai AsymBio, Puya Zhao held the position of Associate Director of the Biosafety Testing (Suzhou) Department at WuXi Biologics from 2020 to 2022. Here, he specialized in viral clearance studies, leading a team of 15-23 members and developing a comprehensive database for viral clearance, which has become an essential resource for downstream process development.

🔬 Contributions and Research Focus

Puya Zhao has made substantial contributions to biopharmaceutical process development. His work includes the development of purification processes for various biologics, the translation of key texts on biopharmaceutical manufacturing, and active participation in the ICH Q5A (R2) domestic expert working group. He has also led initiatives in process scale-up, technology transfer, and pilot plant management, ensuring compliance with Good Manufacturing Practice (GMP) standards.

His research is well-recognized in the scientific community, with notable publications in peer-reviewed journals. His recent SCI papers include studies on the application of an integrated full-membrane platform for antibody purification and a non-affinity platform for processing knob-into-hole bispecific antibodies, both published in Bioresources and Bioprocessing in 2024.

🏆 Accolades and Recognition

Puya Zhao’s expertise is further demonstrated by his role in the ICH Q5A (R2) domestic expert working group, where he has participated in the review and finalization of regulatory documents and maintained active communication with regulatory agencies. His innovative approach is reflected in his intellectual property portfolio, with six patents submitted, two of which have been officially filed.

🌐 Impact and Influence

Puya Zhao’s leadership in downstream process development has significantly impacted the biopharmaceutical industry, particularly in the purification and safety testing of biologics. His contributions to process optimization, viral clearance, and scale-up strategies have set benchmarks for best practices in the field. His expertise is not only recognized within his organization but also in the broader biopharmaceutical sector.

🌟 Legacy and Future Contributions

Looking forward, Puya Zhao is poised to continue his contributions to biopharmaceutical innovation. His commitment to research, process optimization, and regulatory excellence positions him as a key figure in the development of safe and effective biologics. As he continues to lead teams and drive scientific advancements, his impact on the industry is set to grow further.”)}

📝Notable Publications

Application of the Design of Experiment to Characterize Depth Filtration for Bispecific Antibody Clarification

Authors: Pan, Y., Li, M., Hong, H., Gao, K., Zhao, P.

Journal: Chemical Engineering Research and Design

Year: 2025