Assoc. Prof. Dr. Janice Denoncourt | Interdisciplinary | Best Researcher Award

Assoc. Prof. Dr. Janice Denoncourt | Interdisciplinary | Best Researcher Award

Nottingham Law School, Nottingham Trent University, United Kingdom

Author Profile

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Early Academic Pursuits ✨

Janice Ann Denoncourt’s academic journey has been a testament to her dedication to interdisciplinary legal research and corporate governance. Her early education laid a strong foundation in law, leading her to qualify as a Barrister & Solicitor. With a keen interest in intellectual property and finance, she pursued higher academic credentials that enabled her to bridge the gap between legal frameworks and corporate financial strategies. The pursuit of knowledge took her across continents, allowing her to engage with diverse legal systems and financial regulations. This global exposure enriched her academic perspective, enabling her to contribute significantly to both scholarly research and practical applications in corporate governance.

Professional Endeavors 🌟

Janice Denoncourt’s professional journey is marked by a seamless integration of academia and industry expertise. She began her career with the prestigious Herbert Smith Freehills, one of the world’s leading law firms, where she honed her skills in corporate finance law. Her role as Head of Intellectual Property at Minter Ellison in Western Australia further solidified her reputation as a legal expert in corporate governance and intellectual property. These early experiences shaped her understanding of corporate legal frameworks, which later influenced her academic pursuits. Her transition to academia led her to Nottingham Law School at Nottingham Trent University, where she currently serves as an Associate Professor. Here, she has been instrumental in educating the next generation of legal minds, focusing on corporate finance, governance, and sustainability.

Contributions and Research Focus 📚

Janice’s research interests are deeply embedded in the intersections of corporate governance, finance, and intellectual property. Her landmark monograph, Intellectual Property, Finance and Corporate Governance (2018, Routledge Research in IP Series), reflects her commitment to understanding the evolving landscape of corporate finance and governance. This book has gained global recognition, being housed in over 150 leading university libraries across more than 30 countries. Additionally, her work ranks 170 in the Intellectual Property category on Amazon UK, demonstrating its influence within the academic and professional community.

Janice’s contributions extend beyond publishing; she is an active member of the European Accounting Association and the International Financial Reporting Standards-European Accounting Association Intangibles Research Group. Her research has also explored the corporate role in achieving the UN 2030 Sustainable Development Goals, particularly in industry, innovation, and infrastructure. Her paper, published in the Cambridge Journal of Corporate Law Studies, remains one of the most cited articles, emphasizing its impact on contemporary discussions around corporate responsibility and sustainability.

Accolades and Recognition 🏆

Janice Denoncourt’s dedication to academic excellence has been recognized through numerous prestigious awards. One of her most notable achievements includes receiving the Prix de la Délégation générale du Québec à Londres 2023 for her research on corporate beneficial ownership. Additionally, she was awarded the Britain-Australia British Council Chevening Commercial Law scholarship, a significant honor that highlights her contributions to international corporate legal studies.

Her editorial work further cements her reputation as a thought leader in legal academia. As the editor of the Nottingham Law Journal in 2017 and 2018, she played a crucial role in curating and disseminating influential legal research. Her forthcoming editorial appointment with LAWS MDPI (January 2025) is yet another testament to her continued leadership in the field.

Impact and Influence 💡

Janice’s work has had a profound impact on both the academic and legal communities. As a solicitor registered with the Law Society of England and Wales (SRA 408411), she continues to influence corporate legal practices. Her collaborations, such as working on corporate reporting with Professor Clémence Garcia from Gakushuin University in Japan, highlight her commitment to global discourse in corporate governance.

She is also a dedicated mentor, guiding students and young researchers in navigating the complexities of corporate finance law. Through her academic and professional engagements, she has helped shape policies and legal frameworks that support sustainable corporate growth and accountability.

Legacy and Future Contributions 🌿

Looking ahead, Janice remains committed to advancing research in corporate governance and sustainability. Her interdisciplinary approach ensures that her work remains relevant in addressing contemporary challenges faced by corporations worldwide. As a Fellow of the Royal Society of the Arts (UK) and a member of multiple prestigious professional organizations, she continues to contribute to discussions that shape the future of corporate law and finance.

Her legacy is one of bridging academia and industry, ensuring that legal research has a tangible impact on corporate practices. With numerous ongoing projects and future publications in the pipeline, Janice Denoncourt is poised to further cement her influence in the realm of corporate governance and financial law, leaving an indelible mark on the legal and academic communities for generations to come.

📝Notable Publications

Companies and UN 2030 Sustainable Development Goal 9: Industry, Innovation and Infrastructure

Author: J Denoncourt
Journal: Journal of Corporate Law Studies
Year: 2020

Copyright Issues on the Protection of Architectural Works and Designs

Authors: P Mann, J Denoncourt
Year: 2009

Supporting Sustainable Development Goal 5: Gender Equality and Entrepreneurship in the Tanzanite Mine-to-Market

Author: JA Denoncourt
Journal: Sustainability
Year: 2022

 Q&A Intellectual Property Law

Author: J Denoncourt
Publisher: Routledge
Year: 2013

Protecting Ghana’s Intellectual Property Rights in Kente Textiles: The Case for Geographical Indications

Authors: M Okyere, J Denoncourt
Journal: Journal of Intellectual Property Law & Practice
Year: 2021

Assoc. Prof. Dr. Angelika Kmita | Innovative Leadership | Best Researcher Award

Assoc. Prof. Dr. Angelika Kmita | Innovative Leadership | Best Researcher Award

AGH University of Krakow, Poland

Early Academic Pursuits 🎓

Angelika Kmita’s journey into the world of materials science and nanotechnology began at AGH University of Science and Technology in Krakow, Poland. Her early academic foundation was rooted in the Faculty of Foundry Engineering, where she obtained her Master’s degree in 2008. Specializing in foundry engineering, she cultivated a deep understanding of materials processing, metal casting, and advanced metallurgical techniques. This period of her education laid the groundwork for her future research interests, particularly in nanoparticle synthesis and functional materials.

Fuelled by her passion for scientific discovery, she continued her academic endeavors at AGH University, earning a Ph.D. in Engineering in 2014. Her doctoral research likely delved into complex aspects of foundry engineering, merging traditional metallurgical principles with cutting-edge advancements in materials science. This period marked her transition from a keen student to an independent researcher, setting the stage for an illustrious career.

Professional Endeavors 🏛️

Following her Ph.D., Angelika Kmita remained at AGH University of Science and Technology, furthering her research in the interdisciplinary domain of nanotechnology. Over the years, she transitioned from a research scholar to an Associate Professor at the Academic Centre for Materials and Nanotechnology, a role she has held since April 2022.

Her professional trajectory has been deeply intertwined with material synthesis, with a special focus on ferrite nanoparticles, ferrofluids, and hydro- and aerogels. These materials hold significant potential in various applications, including biomedicine, environmental protection, and industrial manufacturing. As an academic, she has not only contributed to fundamental research but also played a pivotal role in bridging the gap between scientific inquiry and industrial application.

Apart from her research commitments, she has been actively involved in scientific and industrial projects, having participated in ten initiatives that span across different domains. This involvement underscores her commitment to innovation and the practical implementation of scientific advancements.

Contributions and Research Focus 🔬

Angelika Kmita’s research portfolio is a testament to her expertise in the field of materials science. Her work encompasses several key areas, each of which has contributed to the scientific understanding of functional materials.

She has made notable strides in the synthesis of ferrite nanoparticles, particularly focusing on controlling their morphology and size. These nanoparticles are crucial for applications ranging from magnetic storage devices to biomedical uses, such as targeted drug delivery and hyperthermia treatments.

Her research extends to ferrofluids, colloidal suspensions of magnetic nanoparticles that have broad applications in sealing, damping, and medical imaging. Additionally, she has explored hydro- and aerogels, materials known for their lightweight structure and high porosity, making them ideal for environmental applications, including water purification and pollutant absorption.

One of her groundbreaking contributions is in magnetic hyperthermia, where she examines the heating properties of aqueous nanoparticle solutions. This technique has promising applications in cancer therapy, where localized heating can selectively destroy cancer cells while minimizing damage to healthy tissue.

Her expertise also spans rheological properties of liquid phases, ensuring a better understanding of how different nanofluids behave under various conditions. Moreover, she has extensively studied thermal analysis of nanoparticles and nanocomposites, a crucial aspect in determining material stability and functionality.

Beyond fundamental research, Angelika Kmita has worked on the modification of water glass with metal oxide nanoparticles, a field that has implications for industrial applications such as coatings, adhesives, and foundry molding materials. Her work also intersects with environmental protection, particularly in addressing foundry industry-related pollution and waste management challenges.

Accolades and Recognition 🏆

Angelika Kmita’s contributions to science have been widely recognized, both within Poland and internationally. With 59 scientific publications across various countries including the USA, Germany, Croatia, and Lithuania, her work has gained significant attention in the global research community. She has also co-authored three monographs, further expanding the knowledge base in her field.

Her achievements extend beyond academic publications, as she is also a co-author of three patents, highlighting her ability to translate scientific findings into tangible innovations.

With a Web of Science h-index of 15 and nearly 500 citations, her research impact continues to grow. This metric reflects not only the breadth of her work but also its significance in advancing scientific knowledge and industrial applications.

Impact and Influence 🌍

Angelika Kmita’s research has had a profound impact on both academia and industry. Her work on nanoparticles and functional materials has influenced numerous scientific domains, from biomedical engineering to environmental sustainability. By developing novel materials and enhancing their practical applications, she has contributed to advancements in medical treatments, industrial processing, and environmental conservation.

Her involvement in industrial projects has also fostered collaborations between academia and industry, ensuring that scientific breakthroughs are effectively implemented in real-world scenarios. Through her contributions, she has helped optimize foundry processes, improve material performance, and develop sustainable solutions for various engineering challenges.

Legacy and Future Contributions 🚀

As an established researcher and academic leader, Angelika Kmita continues to push the boundaries of materials science. Her ongoing investigations into nanomaterials and their applications will likely lead to further breakthroughs in medicine, manufacturing, and sustainable engineering.

Looking ahead, her legacy will be shaped by her commitment to mentoring young scientists, fostering interdisciplinary collaborations, and pioneering innovative solutions to complex material science challenges. With the rapid evolution of nanotechnology, her expertise in ferrite nanoparticles, ferrofluids, and aerogels will remain highly relevant, driving new developments in fields ranging from energy storage to biomedicine.

Her role at AGH University of Science and Technology ensures that she will continue to influence the next generation of researchers, guiding them towards impactful scientific contributions. Through her continued work in both academia and industry, Angelika Kmita is poised to leave a lasting imprint on the fields of nanotechnology, environmental protection, and advanced material synthesis.

📝Notable Publications

Eco-Friendly Inorganic Binders: A Key Alternative for Reducing Harmful Emissions in Molding and Core-Making Technologies

Author(s): A. Kmita, Rafał S. Dańko, Mariusz Holtzer, Jarosław Jakubski, Sara Tapola
Journal: International Journal of Molecular Sciences
Year: 2024

 Aqueous Dispersion of Manganese–Zinc Ferrite Nanoparticles Protected by PEG as a T2 MRI Temperature Contrast Agent

Author(s): Dorota Lachowicz, Angelika Kmita, Marta Gajewska, Z. Jan Celinski, Janusz H. Hankiewicz
Journal: International Journal of Molecular Sciences
Year: 2023

Influence of Crystal Structure and Composition on Optical and Electronic Properties of Pyridinium-Based Bismuth Iodide Complexes

Author(s): Gisya Abdi, Marlena Gryl, Andrzej Sławek, Vijayakumar C. Nair, Konrad T. Szaciłowski
Journal: Dalton Transactions
Year: 2023

Development of Inorganic Binder Systems to Minimise Emissions in Ferrous Foundries

Author(s): Rafał S. Dańko, Angelika Kmita, Mariusz Holtzer, Dirk Lehmhus, Sara Tapola
Journal: Sustainable Materials and Technologies
Year: 2023

Aerogels Based on Cationically Modified Chitosan and Poly(vinyl alcohol) for Efficient Capturing of Viruses

Author(s): Dorota Lachowicz, Angelika Kmita, Roma Wirecka, Krzysztof Pyrc, A. Bernasik
Journal: Carbohydrate Polymers
Year: 2023

Dr. Isabel Lastres-Becker | Innovative Leadership | Best Researcher Award

Dr. Isabel Lastres-Becker | Innovative Leadership | Best Researcher Award

Universidad Autónoma de Madrid, Spain

Author Profile

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🌱 Early Academic Pursuits

Isabel Lastres-Becker’s academic journey began with a strong foundation in chemistry and biochemistry, which laid the groundwork for her future contributions to neurodegeneration research. She earned her Licenciatura in Chemical Sciences with a specialization in Biochemistry from the Universidad Complutense de Madrid (UCM) on June 13, 1997. Her deep interest in understanding molecular mechanisms at the intersection of biochemistry and neuroscience propelled her toward a Ph.D. with a European Mention, which she completed at UCM on March 13, 2003.

Her doctoral research focused on molecular pathways involved in neurodegenerative diseases, particularly in relation to protein misfolding, oxidative stress, and neuroinflammation. These early investigations provided her with a solid research foundation and the necessary expertise to explore groundbreaking treatments for neurological disorders such as Parkinson’s disease (PD), amyotrophic lateral sclerosis (ALS), and Huntington’s disease (HD).

👩‍� Professional Endeavors

Prof. Lastres-Becker has had an illustrious career spanning over two decades, during which she has made significant contributions to understanding the molecular and cellular mechanisms of neurodegeneration. Her professional trajectory reflects a steadfast commitment to research excellence and scientific innovation.

🌐 Postdoctoral Research (2004-2009): After earning her Ph.D., she pursued postdoctoral studies at Johann Wolfgang Goethe Universität in Frankfurt, Germany (2004-2008), where she expanded her expertise in neuroinflammatory pathways and mitochondrial dysfunction. She then continued her postdoctoral research at CIBERNED, Spain (2008-2009), further strengthening her understanding of proteinopathies and neurodegenerative disease mechanisms.

🏫 Academic Positions at Universidad Autónoma de Madrid: Returning to Spain, she was awarded a Ramón y Cajal Researcher contract (2010-2015) at Universidad Autónoma de Madrid (UAM), marking a turning point in her career as she began leading independent research projects. She was later appointed Profesora Contratada Doctora (2015-2021), and subsequently, she became an Associate Professor (October 2021 – Present) at the Biochemistry Department, School of Medicine at UAM. Throughout her tenure, she has been instrumental in training future neuroscientists and has led several groundbreaking studies.

🧠 Contributions and Research Focus

Prof. Lastres-Becker’s research is highly interdisciplinary, focusing on key aspects of neurodegeneration, mitochondria, oxidative stress, and neuroinflammation. Her work has significantly advanced our understanding of disease progression and therapeutic targets.

💊 Dysregulation of the Endocannabinoid System in Huntington’s Disease: One of her major contributions is demonstrating the dysregulation of the endocannabinoid system in Huntington’s disease models. Her studies have shown how targeting cannabinoid receptors can have therapeutic benefits, opening new possibilities for pharmacological interventions.

💛 NRF2 as a Neuroprotective Factor: Her research has highlighted the protective role of the NRF2 pathway in neurodegeneration, demonstrating how modulating NRF2 activity can reduce oxidative stress and inflammation in disorders like ALS and PD.

🔄 Mitochondrial Dysfunction and Proteinopathy: Her investigations into mitochondrial dynamics, TAU pathology, and proteostasis have provided critical insights into how protein aggregation and cellular stress contribute to neurodegeneration, thereby paving the way for targeted therapies.

🏆 Accolades and Recognition

Prof. Lastres-Becker’s contributions have been widely recognized in the scientific community. She has been awarded four research sexennials, a highly prestigious acknowledgment of her continuous and impactful scientific contributions.

Her research excellence has been further demonstrated through:
🎉 Multiple research grants from national and international funding bodies.
🌟 Invitations as a keynote speaker at international neuroscience conferences.
📐 Numerous high-impact publications in peer-reviewed journals, making her work a cornerstone in neurodegeneration research.

Her studies have been extensively cited, emphasizing her global influence on the scientific understanding of neurodegenerative diseases.

🌍 Impact and Influence

Prof. Lastres-Becker’s research has had a far-reaching impact, not only within academia but also in clinical and pharmaceutical applications. Her discoveries have contributed to:

💡 Advancing drug discovery and treatment strategies for neurodegenerative diseases.
🧩 Bridging fundamental research with clinical applications, enhancing the potential for novel therapeutics.
👨‍�‍� Mentoring the next generation of neuroscientists, ensuring continued advancements in the field.

Her work continues to shape therapeutic strategies aimed at improving patient outcomes and quality of life.

🔬 Legacy and Future Contributions

As an esteemed neuroscientist, Prof. Lastres-Becker’s future contributions will likely focus on:

🚀 Developing targeted therapies for Parkinson’s, ALS, and other neurodegenerative disorders.
🎉 Exploring novel biomarkers for early diagnosis and disease progression.
🤝 Strengthening international collaborations to accelerate advancements in neurodegeneration research.
🎨 Innovating neuroprotective strategies that integrate cellular and molecular neuroscience.

Her pioneering work continues to offer hope for millions affected by neurodegenerative conditions. With a relentless pursuit of scientific discovery, her contributions will undoubtedly shape the future of neuroscience.

📝Notable Publications

Cannabinoid CB2 Receptor Modulation by the Transcription Factor NRF2 is Specific in Microglial Cells

Author: Isabel Lastres-Becker
Journal: Cellular and Molecular Neurobiology
Year: 2020

Role of MSK1 in the Induction of NF-κB by the Chemokine CX3CL1 in Microglial Cells

Author: Isabel Lastres-Becker
Journal: Cellular and Molecular Neurobiology
Year: 2019

Cx3cr1‐deficiency exacerbates alpha‐synuclein‐A53T induced neuroinflammation and neurodegeneration in a mouse model of Parkinson’s disease

Author: Isabel Lastres-Becker
Journal: Glia
Year: 2018

Impaired Signaling of NF-κB and NRF2 in CX3CR1-Deficient Microglia: Implications in Tauopathies

Author: Isabel Lastres-Becker
Journal: Preprint (bioRxiv)
Year: 2018

Pharmacological targeting of GSK-3 and NRF2 provides neuroprotection in a preclinical model of tauopathy

Author: Isabel Lastres-Becker
Journal: Redox Biology
Year: 2018

Dr. Hai Xue | Edge computing | Best Researcher Award

Dr. Hai Xue | Edge computing | Best Researcher Award

University of Shanghai for Science and Technology,

Profile

Google Scholar

🎓 Early Academic Pursuits

Dr. Hai Xue embarked on his academic journey in the field of computer engineering with a Bachelor of Science in Information and Communication Engineering from Konkuk University, Seoul, South Korea, in 2014. Driven by an insatiable curiosity for software and computing, he pursued his Master’s degree at Hanyang University, Seoul, where he specialized in Computer and Software under the guidance of Prof. Inwhee Joe. This period was crucial in shaping his foundational knowledge and research skills, which later fueled his contributions to edge computing and network science. Dr. Xue culminated his formal education with a Ph.D. in Computer Engineering from Sungkyunkwan University, Suwon, in 2020, where he worked under the mentorship of Prof. Hee Yong Youn. His doctoral research laid the groundwork for his future breakthroughs in dynamic resource allocation and federated learning.

🌟 Professional Endeavors

Dr. Xue’s professional career is marked by a series of prestigious positions that reflect his growing influence in the field of computer engineering. After earning his Ph.D., he served as a Research Professor at Korea University, Seoul, from September 2020 to September 2021. During this tenure, he collaborated with renowned researcher Prof. Sangheon Pack, contributing significantly to the domains of edge computing and network optimization. In September 2021, he transitioned to his current role as an Assistant Professor at the University of Shanghai for Science and Technology (USST), Shanghai, China. Here, he continues to engage in high-impact research, mentoring young scholars, and advancing cutting-edge technological solutions.

🔮 Contributions and Research Focus

Dr. Xue’s research interests are deeply rooted in dynamic resource allocation, federated learning, and edge computing. His contributions have led to substantial advancements in these areas, including:

  • Dynamic Pricing in Edge Offloading: His recent work on dynamic pricing-based near-optimal resource allocation is set to redefine how computational resources are distributed efficiently across networks.
  • Energy Harvesting in Edge Computing: His paper on dynamic differential pricing-based edge offloading systems with energy harvesting devices has been accepted by IEEE Transactions on Network Science and Engineering, highlighting his expertise in sustainable and energy-efficient computing.
  • Federated Learning Incentive Mechanisms: His study on Yardstick-Stackelberg pricing-based incentive mechanisms for federated learning in edge computing, accepted by Computer Networks, sheds light on optimizing collaborative learning models.
  • Neural Network Optimization: His work on dynamic pseudo-mean mixed-precision quantization (DPQ) for pruned neural networks, published in Machine Learning, underscores his ability to push the boundaries of artificial intelligence efficiency.

🏆 Accolades and Recognition

Dr. Xue’s contributions have not gone unnoticed. His publications in high-impact journals such as IEEE Transactions, Computer Networks, and Machine Learning underscore his academic excellence. His research has been classified under prestigious rankings, including CAS Q2 and JCR Q1, affirming its significance within the scientific community. These accolades reflect his unwavering commitment to innovation and the quality of his scholarly output.

🌐 Impact and Influence

Dr. Xue’s research has far-reaching implications in both academia and industry. His work in dynamic pricing mechanisms is influencing how network providers optimize their resource allocation, while his advancements in federated learning are paving the way for more secure and efficient decentralized AI applications. His insights into energy harvesting in edge computing hold promise for sustainable technological solutions, a pressing need in today’s energy-conscious world.

🌟 Legacy and Future Contributions

Looking ahead, Dr. Xue is poised to make even more significant contributions to computer engineering. His ongoing projects aim to refine the synergy between AI and edge computing, ensuring smarter, more adaptive network solutions. As an educator, he remains dedicated to nurturing the next generation of computing professionals, equipping them with the knowledge and skills necessary to tackle future challenges in technology.

📝Notable Publications

Dynamic load balancing of software-defined networking based on genetic-ant colony optimization

Author(s): H. Xue, K.T. Kim, H.Y. Youn
Journal: Sensors
Year: 2019

 Detection of falls with smartphone using machine learning technique

Author(s): X. Chen, H. Xue, M. Kim, C. Wang, H.Y. Youn
Journal: 2019 8th International Congress on Advanced Applied Informatics (IIAI-AAI)
Year: 2019

Packet Scheduling for Multiple‐Switch Software‐Defined Networking in Edge Computing Environment

Author(s): H. Xue, K.T. Kim, H.Y. Youn
Journal: Wireless Communications and Mobile Computing
Year: 2018

 Dynamic pricing based near-optimal resource allocation for elastic edge offloading

Author(s): Y. Xia, H. Xue, D. Zhang, S. Mumtaz, X. Xu, J.J.P.C. Rodrigues
Journal: arXiv preprint arXiv:2409.18977
Year: 2024

DPQ: dynamic pseudo-mean mixed-precision quantization for pruned neural network

Author(s): S. Pei, J. Wang, B. Zhang, W. Qin, H. Xue, X. Ye, M. Chen
Journal: Machine Learning
Year: 2024

Dr. Candis Morello| Innovative Leadership | Best Researcher Award

Dr. Candis Morello| Innovative Leadership | Best Researcher Award

University of California Skaggs School of Pharmacy and Pharmaceutical Sciences, United States

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Early Academic Pursuits 🎓

Dr. Candis M. Morello’s academic journey began at the University of California, Davis, where she earned her Bachelor’s degree in Chemistry with a minor in Socio-Cultural Anthropology (1987-1991). Her passion for patient care and pharmaceutical sciences led her to the University of California, San Francisco (UCSF), where she pursued and obtained her Doctor of Pharmacy degree (1992-1996). Following her doctorate, she further honed her clinical expertise through an ASHP-accredited Pharmacy Practice Residency with a geriatric emphasis at the Veterans Affairs San Diego Healthcare System (1996-1997).

Professional Endeavors 💊

Dr. Morello has built an illustrious career as a professor and administrator at the Skaggs School of Pharmacy and Pharmaceutical Sciences, University of California, San Diego (UCSD). Currently serving as the Associate Dean for Student Affairs and a Professor of Clinical Pharmacy (Step VI OS) in the Division of Clinical Pharmacy, she has dedicated herself to academic excellence and student mentorship. Throughout her career, she has played a significant role in shaping pharmacy education by introducing innovative curricula and fostering a culture of evidence-based practice.

Her contributions extend beyond academia into clinical practice, where she holds multiple pharmacy licenses in California (since 1996) and Nevada (since 1996). Her advanced certifications, including the Advanced Practice Pharmacist (APh) License (2018-present) and the Certified Diabetic Care and Educator Specialist (CDCES) (1999-present), have positioned her as a leader in diabetes education and patient management.

Contributions and Research Focus 🔬

Dr. Morello’s research primarily revolves around diabetes care, pharmaceutical education, and optimizing therapeutic outcomes. She has been a key advocate for integrating pharmacists into primary care teams to enhance diabetes management. Her work emphasizes patient-centered pharmaceutical care, insulin therapy education, and continuous glucose monitoring.

Beyond diabetes, her research includes innovations in pharmacy education, addressing implicit bias in healthcare, and improving interdisciplinary collaboration in patient management. Her involvement in training programs such as the UC San Diego Health Sciences Faculty Mentor Training Program and the Building a Respectful, Inclusive Culture (BRIC) NIH-supported training program reflects her commitment to fostering a more inclusive and effective healthcare environment.

Accolades and Recognition 🏆

Dr. Morello’s exemplary contributions have been widely recognized. She is a Fellow of the California Society of Health-System Pharmacists (FCSHP) and the American Society of Health-System Pharmacists (FASHP), prestigious designations that acknowledge her outstanding professional achievements and contributions to the field.

Her leadership abilities have been further honed through participation in elite programs such as the UC San Diego Faculty Leadership Academy and the Academic Leadership Training Workshop at the National Conflict Resolution Center. Additionally, she was selected for the UC San Diego National Center of Leadership in Academic Medicine (NCLAM), solidifying her reputation as a transformative leader in pharmacy education.

Impact and Influence 🌍

Dr. Morello’s impact extends to patient care, student mentorship, and professional training. She has trained countless pharmacists, shaping the next generation of healthcare professionals with a strong emphasis on evidence-based practice and patient advocacy. Her expertise in diabetes management and pharmaceutical care for chronic diseases has led to improved patient outcomes and has influenced healthcare policies at institutional and national levels.

Additionally, her work in implicit bias training and mental health advocacy has contributed to creating more inclusive, empathetic, and culturally competent pharmacy practices. Her role as an Implicit Bias Trainer at UC San Diego Health Sciences (2018-present) highlights her dedication to addressing disparities in healthcare.

Legacy and Future Contributions 🔮

Looking ahead, Dr. Morello remains committed to advancing pharmacy education, enhancing interdisciplinary healthcare collaboration, and advocating for pharmacists as essential members of healthcare teams. Her continued involvement in training programs, leadership workshops, and patient education initiatives will further solidify her legacy as a pioneer in clinical pharmacy and diabetes care.

Her latest certification in Mental Health First Aid Training (2025) underscores her dedication to addressing mental health challenges within pharmacy practice. With her unwavering passion and expertise, she is poised to continue making significant contributions to the field, shaping future pharmacists, and improving patient care standards across the nation.

📝Notable Publications

Long-Term Impact of Sustained Knowledge, Confidence, and Clinical Application Following a First-Year Student Pharmacist Diabetes Self-Care Education Program

Author: Candis M. Morello et al.
Journal: Pharmacy
Year: 2025

 Sodium-Glucose Cotransporter-2 Inhibitors versus Glucagon-Like Peptide 1 Receptor Agonists Effects on Kidney and Clinical Outcomes in Veterans with Type 2 Diabetes

Author: Candis M. Morello et al.
Journal: Kidney360
Year: 2024

Comparison between in-person, telehealth, and combination visits among veterans treated in a pharmacist-led diabetes management clinic

Author: Candis M. Morello et al.
Journal: Journal of the American Pharmacists Association
Year: 2024

Predictive Modeling of Factors Influencing Adherence to SGLT-2 Inhibitors in Ambulatory Care: Insights from Prescription Claims Data Analysis

Author: Candis M. Morello et al.
Journal: Pharmacy
Year: 2024

Improved Glycemic Control Outcomes Regardless of Mental Health Disorders in a Pharmacist-Endocrinologist Diabetes Intense Medical Management (DIMM) “Tune Up” Clinic

Author: Candis M. Morello et al.
Journal: Annals of Pharmacotherapy
Year: 2020

 

Prof. Fanxiu Chen | Intenational Material Scientist Awards | Best Researcher Award

Prof. Fanxiu Chen | Intenational Material Scientist Awards | Best Researcher Award

Qingdao University of Technology,China

Profile

Scopus 

Early Academic Pursuits ✨

Fanxiu Chen’s journey in academia began with a strong foundation in mechanical engineering, where she cultivated a deep interest in experimental mechanics and material behavior analysis. Her early academic years were characterized by a curiosity for understanding the intrinsic properties of materials and their response to external forces. She pursued her studies with an unwavering commitment to scientific discovery, delving into the complexities of optomechanical methods and their applications. Recognizing the need for advanced measurement techniques, she dedicated herself to exploring novel methodologies for analyzing mechanical properties, setting the stage for her future contributions to the field.

Professional Endeavors 👩‍🎓

As a professor and doctoral supervisor, Fanxiu Chen has played a pivotal role in advancing experimental mechanics and testing technology. Her professional journey has been marked by active participation in esteemed committees, including the Professional Committee of Experimental Mechanics of the Chinese Mechanical Society and the Professional Committee of Testing Technology of the Production Engineering Branch of the Chinese Mechanical Engineering Society. She has also been recognized as a young expert of Taishan Scholars in Shandong Province. Her work has bridged the gap between theoretical research and practical applications, particularly in the safety assessment and monitoring of major infrastructure projects in coastal environments.

Her research focuses on developing high-precision optical non-contact detection technologies to enhance the reliability of concrete infrastructure. By integrating modern optomechanical methods with structural health monitoring, she has provided groundbreaking insights into material degradation, damage evaluation, and safety diagnostics. Through collaboration with interdisciplinary teams, she has successfully translated her findings into real-world applications, benefiting large-scale engineering projects across the globe.

Contributions and Research Focus 🔬

At the core of Fanxiu Chen’s research lies a dedication to improving the durability and longevity of reinforced concrete structures, particularly those exposed to harsh coastal environments. She has led systematic investigations into the microstructural evolution of concrete, analyzing how factors such as multi-ion coupling, steel corrosion, and environmental stressors influence material integrity. Her work has provided a scientific basis for predicting the service life of reinforced concrete structures, offering innovative solutions for mitigating structural degradation.

One of her most notable contributions is the development of a seamless multi-camera 3D-DIC method, which allows for high-precision real-time monitoring of structural performance. Additionally, she has pioneered the use of an underwater non-contact camera array for rapid assessment of damage in submerged structures. These technological advancements have revolutionized the way engineers approach infrastructure maintenance, enabling early detection of vulnerabilities and informed decision-making.

Her research has also yielded significant advancements in steel corrosion analysis. By establishing theoretical models for corrosion expansion forces under various environmental conditions, she has shed light on the relationship between corrosion-induced stress and surface strain in concrete. Her findings have been widely recognized, including the selection of her work as a highly cited ESI paper. Furthermore, her contributions to reducing steel reinforcement expansion forces have had a tangible impact on enhancing structural resilience.

Accolades and Recognition 🏆

Fanxiu Chen’s exemplary contributions have earned her numerous prestigious accolades, solidifying her reputation as a leading researcher in her field. She was among the first to be selected for the “Shandong Provincial Plan for the Introduction of Young Creative Talents in Colleges and Universities” in 2019. Her team’s research has resulted in the authorization of 10 domestic and international patents and the publication of three academic monographs and textbooks.

Her groundbreaking work has not only garnered recognition in academia but also in industry. The high-precision optical non-contact detection technology she developed has been successfully commercialized in partnership with major enterprises, including Dantec in Germany and leading companies in Shenzhen and Nanjing. The widespread adoption of her technology in over 20 countries, including the United Kingdom, the United States, and Canada, attests to the global impact of her innovations.

Her influence extends beyond research, as she has played a crucial role in mentoring the next generation of engineers and researchers. Under her guidance, her students have achieved remarkable success, winning national scholarships, provincial excellence awards, and recognition for innovation. Her dedication to fostering young talent has solidified her legacy as both a scholar and a mentor.

Impact and Influence 🌍

The impact of Fanxiu Chen’s research is far-reaching, with practical applications in critical infrastructure projects such as Qingdao Metro, Qinglian Railway, and Jiaozhou Bay Subsea Tunnel. Her contributions have been instrumental in ensuring the structural integrity of these projects, leading to prestigious awards such as the Luban Award and the National Quality Engineering Award.

Beyond engineering applications, her work has contributed significantly to the field of experimental mechanics, providing a deeper understanding of material behavior under complex environmental conditions. Her research has influenced policy-making in infrastructure safety, guiding best practices for maintenance and rehabilitation strategies. The economic and social benefits of her contributions are evident, with newly added sales revenue from her industrialized technologies surpassing 1.2 billion yuan in the past two years alone.

Legacy and Future Contributions 🌟

Looking ahead, Fanxiu Chen remains dedicated to pushing the boundaries of material science and structural health monitoring. Her future endeavors include further refining high-precision monitoring technologies and expanding the application of artificial intelligence in predictive maintenance. She envisions developing an intelligent, data-driven platform for real-time infrastructure monitoring, integrating machine learning algorithms to enhance predictive capabilities.

As a trailblazer in her field, she continues to inspire future researchers and engineers, advocating for a proactive approach to structural safety. Her unwavering commitment to scientific exploration, technological innovation, and knowledge dissemination ensures that her contributions will shape the landscape of engineering and material science for generations to come.

📝Notable Publications

 Effects of water-cement ratio and particle diameter on the mechanical properties of cement paste particles

Author: Z. Qiu, Ziming; F. Chen, Fanxiu; Y. Yu, Yang; X. Wang, Xiao; Y. Wang, Yuan
Journal: Optics and Lasers in Engineering
Year: 2025

Structural properties and mechanical behavior of three-dimensional cylindrical particle-like systems under in situ loading

Author: Y. Gu, Yanji; F. Chen, Fanxiu; Y. Yu, Yang; J. Liu, Jinglan; Z. Qiu, Ziming
Journal: Powder Technology
Year: 2025

Contact force calculation and evolution analysis of granular systems based on micro-CT experiment

Author: X. Wang, Xiao; S. Song, Shiqi; Z. Ping, Zijian; X. Shang, Xianyi; F. Chen, Fanxiu
Journal: Wuli Xuebao/Acta Physica Sinica
Year: 2025

Quasi-static modeling of a cable-driven continuum manipulator considering non-smooth cable-hole friction and experimental verification

Author: S. Zhang, Shucui; J. Zhao, Jiayuan; X. Zhang, Xingang; H. Peng, Haijun; C. Liu, Caishan
Journal: Mechanism and Machine Theory
Year: 2024