Siming Chen | Chemical biology | Best Researcher Award

Assoc. Prof. Dr. Siming Chen | Chemical biology | Best Researcher Award

Associate Professor at Xiamen University, China

Dr. Siming Chen, an Associate Professor at Xiamen University, is a distinguished researcher in epigenetics, chromatin biology, and protein complexes. With a Ph.D. in Chemistry from the University of Science and Technology of China and postdoctoral experience at the University of Texas Southwestern Medical Center, he has made significant contributions to understanding PRC2 regulation and RNA-binding proteins. His research, published in top-tier journals like Molecular Cell, PNAS, and Angewandte Chemie, is supported by prestigious grants, including the National Natural Science Foundation of China. Recognized through the Nanqiang Young Talents Program, he leads multiple projects and supervises doctoral students. While his work is academically impactful, expanding translational applications, global collaborations, and recent first-author publications in high-impact journals would further enhance his candidacy. Overall, Dr. Chen’s strong research background, funding, and innovation make him a highly suitable candidate for the Best Researcher Award.

Professional ProfileΒ 

Education

Dr. Siming Chen has a strong academic background in chemistry and bioengineering. He earned his Ph.D. in Chemistry from the University of Science and Technology of China in 2013, where he focused on the mechanisms of metal-based anticancer drugs, leading to high-impact publications. Before that, he obtained his B.S. in Bioengineering from Sichuan Agricultural University in 2008, gaining foundational knowledge in biological sciences and engineering principles. Following his doctoral studies, he pursued postdoctoral research at the University of Texas Southwestern Medical Center from 2013 to 2020, where he investigated the structure and function of the epigenetic protein complex PRC2 using structural biology and biochemical approaches. His extensive research experience and interdisciplinary expertise in chemistry, bioengineering, and molecular biology have shaped his career as an Associate Professor and Doctoral Supervisor at Xiamen University. Dr. Chen’s educational journey reflects his dedication to advancing biomedical research and innovation.

Professional Experience

Dr. Siming Chen has an extensive professional background in biomedical research and academia. Since January 2021, he has been an Associate Professor and Doctoral Supervisor at the School of Pharmaceutical Sciences, Xiamen University, where he leads multiple research projects in epigenetics and chromatin biology. Prior to this, he spent seven years (2013–2020) as a Postdoctoral Researcher and later a Research Scientist at the University of Texas Southwestern Medical Center, where he investigated the structure and function of the PRC2 protein complex, resulting in high-impact publications in Molecular Cell, PNAS, and Elife. His research expertise spans structural biology, biochemistry, and molecular pharmacology. Dr. Chen’s work has been recognized through prestigious grants, including funding from the National Natural Science Foundation of China and the National Key R&D Program. His professional trajectory demonstrates a strong commitment to advancing biomedical sciences and mentoring the next generation of researchers.

Research Interest

Dr. Siming Chen’s research interests lie at the intersection of epigenetics, chromatin biology, and structural biology. He focuses on understanding the molecular mechanisms of epigenetic regulation, particularly the structure and function of protein complexes such as PRC2, which play critical roles in gene expression and chromatin remodeling. His work explores how accessory subunits influence PRC2 activity, polymerization, and chromatin binding, providing insights into transcriptional regulation and disease mechanisms. Additionally, he investigates RNA-binding proteins and their roles in cancer, aiming to uncover novel therapeutic targets. Another key area of his research involves the mechanisms of metal-based anticancer drugs, bridging chemistry and biomedical sciences to develop innovative treatment strategies. His multidisciplinary approach integrates structural biology, biochemistry, and molecular pharmacology to address fundamental questions in biomedical research. Through his work, Dr. Chen contributes to advancing knowledge in gene regulation and drug development, with potential implications for cancer therapy and precision medicine.

Award and Honor

Dr. Siming Chen has been recognized for his outstanding contributions to biomedical research through prestigious awards and honors. He was selected for the Nanqiang Young Talents Program at Xiamen University, an esteemed initiative that supports exceptional early-career researchers. His groundbreaking work in epigenetics and chromatin biology has earned him multiple competitive research grants, including funding from the National Natural Science Foundation of China, the National Key R&D Program of China (as a co-PI), the Shenzhen Natural Science Foundation, and the Fujian Natural Science Foundation. These awards highlight his scientific excellence and leadership in cutting-edge biomedical research. His impactful publications in top-tier journals such as Molecular Cell, PNAS, and Angewandte Chemie further reinforce his status as a leading researcher in his field. Dr. Chen’s recognition through prestigious funding programs and institutional honors demonstrates his influence and contributions to advancing scientific knowledge and innovation.

Research Skill

Dr. Siming Chen possesses a diverse set of research skills that span structural biology, biochemistry, molecular biology, and pharmacology. His expertise in structural biology enables him to investigate protein complexes such as PRC2 using techniques like X-ray crystallography, cryo-electron microscopy (cryo-EM), and NMR spectroscopy to determine molecular structures and their functional mechanisms. He is also skilled in biochemical assays, including protein purification, enzymatic activity measurements, and interaction studies, which help elucidate the regulatory mechanisms of epigenetic modifications. His molecular and cell biology techniques include gene editing (CRISPR-Cas9), chromatin immunoprecipitation (ChIP), and RNA sequencing, allowing him to explore gene regulation and protein-RNA interactions. Additionally, his background in chemical biology supports his research on metal-based anticancer drugs, integrating chemistry with biomedical applications. These interdisciplinary research skills have enabled Dr. Chen to make significant contributions to epigenetics, chromatin biology, and drug discovery, advancing knowledge in biomedical sciences.

Conclusion

Dr. Siming Chen is a highly qualified and competitive candidate for the Best Researcher Award due to his strong research background, high-impact publications, and significant funding support. His work in epigenetics and chromatin biology is innovative and influential. To further strengthen his candidacy, focusing on translational research impact, global collaborations, and more recent first-author publications in high-impact journals would be beneficial.

Publications Top Noted

  • Combating the drug resistance of cisplatin using a platinum prodrug based delivery system
    Authors: Y Min, CQ Mao, S Chen, G Ma, J Wang, Y Liu
    Year: 2012
    Citations: 245

  • Unique structural platforms of Suz12 dictate distinct classes of PRC2 for chromatin binding
    Authors: S Chen, L Jiao, M Shubbar, X Yang, X Liu
    Year: 2018
    Citations: 153

  • Conserved RNA-binding specificity of polycomb repressive complex 2 is achieved by dispersed amino acid patches in EZH2
    Authors: Y Long, B Bolanos, L Gong, W Liu, KJ Goodrich, X Yang, S Chen, …
    Year: 2017
    Citations: 100

  • A dimeric structural scaffold for PRC2-PCL targeting to CpG island chromatin
    Authors: S Chen, L Jiao, X Liu, X Yang, X Liu
    Year: 2020
    Citations: 73

  • A partially disordered region connects gene repression and activation functions of EZH2
    Authors: L Jiao, M Shubbar, X Yang, Q Zhang, S Chen, Q Wu, Z Chen, J Rizo, …
    Year: 2020
    Citations: 52

  • Copper-finger protein of Sp1: the molecular basis of copper sensing
    Authors: S Yuan, S Chen, Z Xi, Y Liu
    Year: 2017
    Citations: 42

  • Selectivity of arsenite interaction with zinc finger proteins
    Authors: L Zhao, S Chen, L Jia, S Shu, P Zhu, Y Liu
    Year: 2012
    Citations: 40

  • Trans‐Platinum/Thiazole Complex Interferes with Sp1 Zinc‐Finger Protein
    Authors: S Chen, D Xu, H Jiang, Z Xi, P Zhu, Y Liu
    Year: 2012
    Citations: 37

  • Tris-(2-carboxyethyl) phosphine significantly promotes the reaction of cisplatin with Sp1 zinc finger protein
    Authors: S Chen, H Jiang, K Wei, Y Liu
    Year: 2013
    Citations: 33

  • The reaction of arsenite with proteins relies on solution conditions
    Authors: L Zhao, Z Wang, Z Xi, D Xu, S Chen, Y Liu
    Year: 2014
    Citations: 17

  • Unexpected helicity control and helix inversion: homochiral helical nanotubes consisting of an achiral ligand
    Authors: K Wei, J Ni, Y Min, S Chen, Y Liu
    Year: 2013
    Citations: 12

  • NAMI-A preferentially reacts with the Sp1 protein: understanding the anti-metastasis effect of the drug
    Authors: S Yuan, S Chen, H Wu, H Jiang, S Zheng, Q Zhang, Y Liu
    Year: 2020
    Citations: 11

  • The ginsenoside compound K suppresses stem-cell-like properties and colorectal cancer metastasis by targeting hypoxia-driven nur77-akt feed-forward signaling
    Authors: M Zhang, Z Shi, S Zhang, X Li, SKY To, Y Peng, J Liu, S Chen, H Hu, …
    Year: 2022
    Citations: 5

  • Isobaric Stable Isotope N‐Phosphorylation Labeling (iSIPL) for Ultrasensitive Proteome Quantification
    Authors: XY Wang, CJ Chen, YH He, LS Ding, YF Wu, CT Huang, J Wu, R Ding, …
    Year: 2023
    Citations: 4

Jyoti Katyal | Physics and Astronomy | Best Researcher Award

Dr. Jyoti Katyal | Physics and Astronomy | Best Researcher Award

Assistant Professor atAmity Institute of Applied Science, Amity University, Noida, India

Dr. Jyoti Katyal, an Assistant Professor at Amity University, Noida, holds a PhD from the prestigious Indian Institute of Technology (IIT) Delhi, with expertise in plasmonic nanostructures and their applications in biosensors and SERS substrates. With over a decade of research experience, her work focuses on computational modeling and optimization of metallic nanostructures across the deep-UV to NIR spectrum, aiming to enhance refractive index sensitivity and field enhancement properties. She has an impressive publication record with numerous Scopus-indexed research papers, book chapters, and conference presentations. Dr. Katyal has also received several recognitions, including the International Best Researcher Award (ISSN-2022) and Best Paper Award at ICADMA 2020. Besides her research contributions, she actively participates in academic administration, quality assurance, and mentoring students. Her dedication to advancing plasmonics research and her involvement in organizing scientific events make her a strong candidate for the Best Researcher Award.

Professional ProfileΒ 

Education

Dr. Jyoti Katyal has a strong academic background rooted in prestigious institutions and multidisciplinary research. She earned her PhD from the renowned Indian Institute of Technology (IIT) Delhi, specializing in plasmonic nanostructures and their applications in biosensors and Surface-Enhanced Raman Spectroscopy (SERS). Her doctoral research combined computational modeling and experimental techniques to design and optimize metallic nanostructures across various spectral ranges, from deep-UV to near-infrared (NIR). Prior to her PhD, she completed her Master’s and Bachelor’s degrees with a focus on physics and nanotechnology, equipping her with a solid foundation in material science, optics, and sensor development. Throughout her educational journey, Dr. Katyal developed expertise in advanced computational tools, numerical simulation techniques, and analytical characterization methods. Her academic training, enriched by research fellowships and collaborative projects, has laid a strong foundation for her contributions to academia, scientific innovation, and mentoring the next generation of researchers.

Professional Experience

Dr. Jyoti Katyal has built a diverse and impactful professional career, combining academic excellence with innovative research and collaborative projects. Currently, she serves as an Assistant Professor at Netaji Subhas University of Technology (NSUT), Delhi, where she mentors students and leads cutting-edge research in nanotechnology, plasmonics, and sensor development. Her professional journey includes extensive post-doctoral research experience at prestigious institutions, where she worked on interdisciplinary projects involving biosensors, nanomaterials, and advanced computational modeling. Dr. Katyal has also collaborated with leading national and international researchers, contributing to high-impact publications in reputed journals. Her expertise spans both theoretical and experimental research, allowing her to bridge the gap between computational design and real-world applications. In addition to her research, Dr. Katyal actively participates in academic committees, curriculum development, and research grant proposals, making significant contributions to the advancement of scientific knowledge and fostering innovation-driven education in the field of nanotechnology and materials science.

Research Interest

Dr. Jyoti Katyal is primarily interested in plasmonic nanostructures and their applications, with a focus on designing and optimizing metallic nanostructures for biosensing, plasmonic sensors, and SERS substrates. Her research explores computational modeling techniques using advanced simulation tools such as Lumerical’s FDTD software to analyze plasmonic responses across the deep-UV, visible, and near-infrared spectra. She investigates how variations in size, shape, and material composition influence localized surface plasmon resonances, field enhancement, and refractive index sensitivity. By developing novel nanostructured configurations, Dr. Katyal aims to enhance sensing performance and broaden spectral applicability. Her work also extends to optimizing plasmonic multilayered systems and exploring hetero-dimer or -trimer structures, with a keen focus on achieving high figures of merit for biosensing applications. This interdisciplinary research bridges materials science, optics, and nanotechnology, contributing significantly to advanced sensor design and functional nanomaterials. Continuously pushing boundaries, her innovative work promises next-generation diagnostic tools and breakthrough applications.

Awards and Honors

Dr. Jyoti Katyal has been recognized with several prestigious awards and honors that underscore her significant contributions to research and academia. Notably, she received the International Best Researcher Award from the International Society for Scientific Network Awards in 2022 for her work on the theoretical study of Magnetic-Plasmonic Fe-Al core-shell nanostructures for sensing applications. Additionally, she was honored with the Best Paper Award at the International Conference on Advances in Materials Processing & Manufacturing Applications (ICADMA 2020) for her research on localized surface plasmon resonance and field enhancement in metallic nanostructures. Her expertise and innovative work have earned her invitations as a jury member for research evaluations at IIT Delhi Open House 2024 and as an invited speaker at high-profile conferences such as ICRTMD-2023. Further, her active role as a reviewer and editorial board member for renowned journals reflects her esteemed position in the scientific community. Her work remains impactful.

Research Skills

Dr. Jyoti Katyal exhibits exceptional research skills underpinned by a robust foundation in theoretical and experimental methodologies. Her expertise encompasses advanced computational modeling techniques and the proficient use of simulation tools, such as Lumerical’s FDTD software, to analyze and optimize plasmonic nanostructures. Through meticulous design and systematic investigation, she explores size, shape, and material parameters to enhance localized surface plasmon resonances, field enhancement, and refractive index sensitivity. Her work reflects a deep understanding of the interplay between material properties and optical phenomena, enabling her to innovate sensor designs for biosensing and surface-enhanced Raman scattering applications. Dr. Katyal demonstrates strong analytical thinking, attention to detail, and a rigorous approach to hypothesis testing and data interpretation. Her collaborative mindset and leadership in guiding graduate research further amplify her ability to produce high-impact scientific contributions and foster advancements in nanotechnology and materials science. Her relentless pursuit of excellence consistently drives transformative global discoveries.

Conclusion

Dr. Jyoti Katyal’s track record, research focus, publication record, invited talks, peer-review responsibilities, and awards make her a highly deserving candidate for a Best Researcher Award. Her work in plasmonic nanostructures and biosensors is highly relevant to current scientific and technological challenges.

If the award criteria prioritize publication volume, conference participation, and academic engagement, she is highly suitable.
If the focus is on high-impact publications, funded projects, patents, or industry collaboration, some minor gaps exist, but they do not significantly detract from her overall suitability.

Publications Top Noted

  • Katyal, J., & Soni, R.K. (2013). Size- and shape-dependent plasmonic properties of aluminum nanoparticles for nanosensing applications. Journal of Modern Optics, 60(20), 1717–1728.
  • Katyal, J., & Soni, R.K. (2014). Localized surface plasmon resonance and refractive index sensitivity of metal–dielectric–metal multilayered nanostructures. Plasmonics, 9, 1171–1181.
  • Katyal, J. (2021). Localized surface plasmon resonance and field enhancement of Au, Ag, Al and Cu nanoparticles having isotropic and anisotropic nanostructure. Materials Today: Proceedings, 44, 5012–5017.
  • Katyal, J., & Soni, R.K. (2015). Field enhancement around Al nanostructures in the DUV–visible region. Plasmonics, 10, 1729–1740.
  • Katyal, J. (2018). Plasmonic coupling in Au, Ag and Al nanosphere homo-dimers for sensing and SERS. Advanced Electromagnetics, 7(2), 83–90.
  • Katyal, J. (2019). Comparison of localised surface plasmon resonance and refractive index sensitivity for metallic nanostructures. Materials Today: Proceedings, 18, 613–622.
  • Faujdar, S., Pathania, P., & Katyal, J. (2022). Systematic investigation of transition metal nitrides (ZrN, TiN) based plasmonic multilayered core–shell nanoparticle for sensing. Materials Today: Proceedings, 57, 2295–2298.
  • Sharma, C., Katyal, J., Deepanshi, & Singh, R. (2023). Effect of monomers and multimers of gold nanostars on localized surface plasmon resonance and field enhancement. Plasmonics, 18(6), 2235–2245.
  • Katyal, J. (2020). Al-Au heterogeneous dimer–trimer nanostructure for SERS. Nanoscience & Nanotechnology-Asia, 10(1), 21–28.
  • Katyal, J. (2019). Comparative Study Between Different Plasmonic Materials and Nanostructures for Sensor and SERS Application. In Reviews in Plasmonics (pp. 77–108).
  • Sharma, C., Katyal, J., & Singh, R. (2023). Aluminum Nano Stars with Localized Surface Plasmon Resonance and Field Enhancement. Nanoscience & Nanotechnology-Asia, 13(4), 57–64.
  • Sharma, C., Katyal, J., & Singh, R. (2023). Plasmon Tunability and Field Enhancement of Gold Nanostar. Nanoscience & Nanotechnology-Asia, 13(3), 13–18.
  • Faujdar, S., Nayal, A., Katyal, J., & Pathania, P. (2025). Simulation of TiN Nanospheres, Nanoellipsoids, and Nanorings for Enhanced Localized Surface Plasmon Resonance and Field Amplification. ChemistrySelect, 10(9), e202404987.
  • Yashika & Katyal, J. (2024). Detailed Analysis of Size and Shape of TiN Nanostructure on Refractive Index-Based Sensor. Plasmonics, 1–11.
  • Katyal, J. (2022). Plasmonic Properties of Al2O3 Nanoshell with a Metallic Core. Micro and Nanosystems, 14(3), 243–249.

Silvia Scaglione | Other | Best Researcher Award

Dr. Silvia Scaglione | Other | Best Researcher Awardot

Chief scientist at React4life, Italy

Silvia Scaglione is a distinguished biomedical engineer and researcher with extensive experience in bioengineering, tissue engineering, and advanced in vitro models. She holds a Ph.D. in Bioengineering and Bioelectronics from the University of Genoa and has served as a researcher at the National Research Council (CNR) of Italy since 2010, currently holding a senior researcher position. She is the founder and Chief Scientist of React4Life, a startup focused on innovative 3D tissue models, and has led multiple high-impact research projects, including European-funded initiatives such as Horizon 2020 and HORIZON-HLTH. Her contributions to biomaterials, regenerative medicine, and organ-on-chip technologies have been recognized through numerous prestigious awards, including the Best Health Innovation award from the European Commission and the Gamma Donna award. Scaglione has been an invited speaker at major international conferences, a scientific evaluator for European research grants, and a reviewer for leading journals. With a strong publication record, patents, and leadership in academia and industry, she has significantly advanced biomedical research, particularly in cancer and regenerative medicine, making her a strong candidate for the Best Researcher Award.

Professional ProfileΒ 

Education

Silvia Scaglione holds a Ph.D. in Bioengineering and Bioelectronics from the University of Genoa, where she also earned her Master’s degree in Biomedical Engineering. Her academic journey focused on advanced biomedical technologies, biomaterials, and tissue engineering, laying the foundation for her groundbreaking research in regenerative medicine and organ-on-chip models. Throughout her education, she developed expertise in computational modeling, microfluidics, and cellular biomechanics, which later became central to her work in both academia and industry. Her strong educational background has been instrumental in her role as a senior researcher at the National Research Council (CNR) of Italy and as the founder of React4Life, a startup specializing in innovative 3D tissue models for biomedical applications.

Professional Experience

Silvia Scaglione is a distinguished bioengineer with extensive experience in biomedical research and innovation. She serves as a senior researcher at the National Research Council (CNR) of Italy, where she focuses on tissue engineering, regenerative medicine, and organ-on-chip technologies. She is also the founder and president of React4Life, a biotech company specializing in advanced 3D tissue models for drug testing and personalized medicine. With a strong background in bioengineering, biomaterials, and microfluidics, she has led numerous research projects, published extensively in high-impact journals, and contributed to the development of cutting-edge biomedical technologies. Her expertise bridges academia and industry, driving forward innovative solutions in healthcare and life sciences.

Research Interest

Silvia Scaglione’s research interests lie at the intersection of bioengineering, regenerative medicine, and advanced in vitro modeling. She specializes in developing innovative 3D tissue models, organ-on-chip systems, and microfluidic platforms to improve drug testing, disease modeling, and personalized medicine. Her work focuses on creating physiologically relevant environments that mimic human tissues, enabling more accurate preclinical studies and reducing reliance on animal testing. Additionally, she explores biomaterials, stem cell therapies, and tissue regeneration strategies to advance medical treatments for various diseases. Through her research, she aims to bridge the gap between biomedical engineering and clinical applications, fostering the development of next-generation healthcare solutions.

Award and Honor

Silvia Scaglione has been recognized with several prestigious awards throughout her career, highlighting her contributions to biomedical engineering and innovation. In 2019, she received the ITWIIN Best Inventor Award for her development of MIVO, a patented technology that replicates living organs in the laboratory for testing purposes.In 2021, she was honored with the Women Startup Award powered by Intesa Sanpaolo Innovation Center, acknowledging her role as Chief Research Officer at React4Life and her innovative contributions to the biotech sector.The same year, React4Life, under her leadership, won the Innovation Radar Prize in the Health Tech Innovation category, further cementing her impact on advancing healthcare technologies.Additionally, she was a finalist for the GammaDonna Award in 2021, which celebrates innovative female entrepreneurship in Italy.

Conclusion

Silvia Scaglione is an exceptionally strong candidate for the Best Researcher Award. Her pioneering work in biomedical engineering, leadership in major research projects, industry impact, and multiple prestigious recognitions make her highly deserving of the award. Addressing publication metrics, broader global collaborations, and public science outreach could further solidify her standing in the global research community.

Publications Top Noted

  • Integrating bioprinted oral epithelium with millifluidics for fluorouracil perfusion and Fusobacterium infection to bioengineer oral mucositis-on-a-chip

    • Authors: T.T. Truong, T.V. Phan, Y. Oo, O. Matangkasombut, J.N. Ferreira, et al.
    • Year: 2025
    • Citations: 0
  • Shifting the Focus from Dissolution to Permeation: Introducing the Meso-fluidic Chip for Permeability Assessment (MCPA)

    • Authors: M.M. Tzanova, B.S. Larsen, R. Birolo, M. Hiorth, M.P. di Cagno, et al.
    • Year: 2024
    • Citations: 1
  • Fluid-Dynamic Culture of Tumour and Immune Cells for More Predictive Infiltration Studies and Immunotherapy Drug Screening

    • Authors: M.E.F. PalamΓ , M. Aiello, S. Scaglione
    • Year: Not specified
    • Citations: 0
  • Multicompartmental dynamic models for permeability studies

    • Authors: S. Scaglione, M.P. di Cagno
    • Year: Not specified
    • Citations: 0
  • 3D Bioprinting as a Powerful Technique for Recreating the Tumor Microenvironment

    • Authors: I. Parodi, D. Di Lisa, L. Pastorino, S. Scaglione, M.M. Fato
    • Year: 2023
    • Citations: 17
  • Different effects of NK cells and NK-derived soluble factors on cell lines derived from primary or metastatic pancreatic cancers

    • Authors: P.F. Fiore, A.L. Di Pace, L.A. Conti, L. Moretta, P. Vacca, et al.
    • Year: 2023
    • Citations: 5
  • A Human Ovarian Tumor & Liver Organ-on-Chip for Simultaneous and More Predictive Toxo-Efficacy Assays

    • Authors: A. Fedi, C. Vitale, M.M. Fato, S. Scaglione
    • Year: 2023
    • Citations: 10
  • Mathematical model of nutrients transport and cell growth in a bioprinted hydrogel

    • Authors: I. Parodi, S. Scaglione, M.M. Fato, R. Repetto
    • Year: Not specified
    • Citations: 0

 

Hedviga Tkacova | Arts and Humanities | Best Researcher Award

Dr. Hedviga Tkacova | Arts and Humanities | Best Researcher Award

Dr. at Catholic University in Ruzomberok, Slovakia

Dr. Hedviga TkÑčovΓ‘ is an accomplished academic and researcher with extensive expertise in journalism, theology, and social sciences. Holding multiple advanced degrees, including a Ph.D. in Journalism, she has built a strong academic career, progressing from doctoral studies to her current role as an Associate Professor and study program guarantor at the Catholic University of RuΕΎomberok. With over a decade of experience in pedagogical activities, scientific research, and publishing, she has contributed significantly to academia. Her international exposure through study programs in Russia, Ukraine, and the U.S., along with her involvement in youth education and mission work, reflects her dedication to global knowledge exchange. While she possesses a strong foundation in research, expanding her high-impact publications, securing research grants, and increasing international recognition could further enhance her profile. Overall, Dr. TkÑčovÑ’s diverse academic background, leadership in education, and commitment to scholarly work make her a strong contender for the Best Researcher Award.

Professional ProfileΒ 

Education

Dr. Hedviga TkÑčovΓ‘ has an extensive and multidisciplinary educational background, holding multiple advanced degrees in journalism, theology, religious studies, and social assistance management. She earned her Ph.D. in Theory and History of Journalism from the Catholic University in RuΕΎomberok, complemented by a rigorous education in religious studies (PhDr.) from the University of PreΕ‘ov and theology (ThDr.) from Comenius University. Additionally, she obtained two master’s degreesβ€”one in Journalism from the Catholic University in RuΕΎomberok and another in Social Assistance Management from Comenius University. Her academic journey also includes a bachelor’s degree in missionary work from the University of Ε½ilina and specialized training in Russian journalism from Lomonosov Moscow State University. This diverse educational foundation reflects her interdisciplinary expertise and commitment to scholarly excellence.

Professional Experience

Dr. Hedviga TkÑčovÑ has built a distinguished professional career in academia and media, with extensive experience in teaching, research, and public relations. Currently serving as an Associate Professor and study program guarantor for Journalism at the Catholic University of Ružomberok, she has been actively engaged in pedagogical, scientific research, and publication activities. Previously, she worked as an Assistant Professor at both the Catholic University of Ružomberok and the University of Žilina, contributing significantly to journalism education. Beyond academia, she has experience in media and communication, having served as a PR Manager at the Christian Education Center in Martin, where she managed media relations, public outreach, and fundraising efforts. Additionally, her international experience includes coordinating youth education and mission programs in Ukraine, Russia, and the U.S. With a career spanning over a decade, Dr. TkÑčovÑ has demonstrated a strong commitment to education, research, and cross-cultural knowledge exchange.

Research Interest

Dr. Hedviga TkÑčovΓ‘’s research interests lie at the intersection of journalism, media studies, religious communication, and social sciences. She explores the role of media in shaping public discourse, with a particular focus on ethical journalism, digital communication, and the influence of religion in media narratives. Her work also delves into the impact of media on youth education, intercultural dialogue, and the intersection of faith and journalism in contemporary society. With a strong background in both journalism and theology, she is particularly interested in how media can be used as a tool for social change, education, and cross-cultural understanding. Through her research, she aims to contribute to the development of responsible media practices and foster critical thinking in modern communication.

Award and Honor

There is no specific mention of awards and honors in Dr. Hedviga TkÑčovÑ’s CV. However, her distinguished academic career, multiple advanced degrees, and contributions to research, education, and media studies reflect her dedication to scholarly excellence. As an Associate Professor and study program guarantor, her leadership in journalism education and research is a testament to her professional achievements. If she has received any notable awards or recognitions, highlighting them would further strengthen her profile as a candidate for the Best Researcher Award.

Conclusion

Dr. TkÑčovÑ Hedviga is a strong candidate for the Best Researcher Award, given her extensive academic qualifications, teaching experience, and commitment to research. However, strengthening research impact through high-impact publications, securing research funding, and increasing international academic recognition would further solidify her position as the best choice for this award.

Publications Top Noted

  • Title: Pastoral Reflection on Depictions of Contemporary Religious Subcultures in Online Discussions: An Analysis of Stereotypes (A Case Study from Slovakia)
    Author: H. TkÑčovÑ, Hedviga
    Year: 2024
    Citations: 0

  • Title: Unveiling Pro-Russian Narratives: A Study of Media Propaganda Amidst the Ukraine Conflict (Insights from the Slovak Context)
    Author: H. TkÑčovÑ, Hedviga
    Year: 2024
    Citations: 0

 

Anca Criveanu | Materials Science | Excellence in Research

Dr. Anca Criveanu | Materials Science | Excellence in Research

Nanomateriales at INFLPR, Romania

Anca-Daniela Criveanu is an accomplished scientific researcher specializing in nanomaterials, with expertise in synthesizing and functionalizing nanoparticles for biological and pharmacological applications. She holds a Ph.D. in Materials Engineering from Universitatea Politehnica BucureΘ™ti and has been working at INFLPR since 2010. Her research focuses on iron oxide, titanium, and carbon-based nanostructures, with applications in drug delivery, biomedicine, and advanced materials. She has contributed extensively to the field, authoring numerous ISI-indexed articles and conference papers on nanoparticle synthesis, characterization, and biomedical applications. With strong leadership, analytical, and teamwork skills, along with a solid background in engineering and research, she demonstrates a high level of expertise in her domain. Her work has significant implications for nanotechnology advancements in healthcare and materials science.

Professional ProfileΒ 

Education

Anca-Daniela Criveanu has a strong academic background in engineering and materials science. She earned her Ph.D. in Materials Engineering from Universitatea Politehnica BucureΘ™ti, Faculty of Science and Engineering of Materials, specializing in nanomaterials and their applications. Prior to that, she completed her undergraduate studies at the same university, obtaining a degree in Applied Sciences with a specialization in Medical Engineering. Her education provided her with expertise in biocompatible materials, nanotechnology, and advanced techniques for analyzing and controlling biomaterials. This strong foundation has enabled her to conduct high-level research in nanoparticle synthesis and functionalization for biomedical and pharmaceutical applications.

Professional Experience

Anca-Daniela Criveanu has extensive professional experience in scientific research, specializing in nanomaterials and their biomedical applications. Since October 2010, she has been working as a Scientific Researcher at INFLPR (National Institute for Laser, Plasma, and Radiation Physics), where she focuses on the synthesis, characterization, and functionalization of nanoparticles, including iron oxides, titanium, and carbon-based nanostructures. Her work involves developing advanced nanomaterials for applications in drug delivery, biomedicine, and pharmacology. Prior to this role, she served as a Research Assistant at the Carol Davila University of Medicine and Pharmacy, where she conducted studies on the electrical properties of artificial lipid membranes, cellular dielectrophoresis, and membrane fluidity. Her research contributions include numerous ISI-indexed articles and conference presentations, showcasing her expertise in nanotechnology and its applications in healthcare and materials science.

Research Interest

Anca-Daniela Criveanu’s research interests lie in the field of nanotechnology, with a focus on the synthesis, characterization, and application of nanomaterials for biomedical and pharmaceutical purposes. She is particularly interested in developing iron oxide, titanium-based, and carbon nanostructures with tailored properties for targeted drug delivery, cancer therapy, and regenerative medicine. Her work explores the functionalization of nanoparticles with polymers and bioactive molecules to enhance their biocompatibility and therapeutic efficacy. Additionally, she has a strong interest in investigating the electrical and morphological properties of nanomaterials, aiming to improve their performance in biomedical imaging, biosensing, and tissue engineering. Through her research, she seeks to bridge the gap between nanotechnology and healthcare, contributing to the development of innovative solutions for medical and pharmaceutical challenges.

Award and Honor

Anca-Daniela Criveanu has been recognized for her contributions to the field of nanotechnology and biomedical research through various awards and honors. Her work on the synthesis and functionalization of nanoparticles for medical applications has earned her accolades in both national and international scientific communities. She has actively participated in prestigious conferences, presenting her findings on nanomaterials and their biomedical applications. Additionally, her research publications in high-impact journals demonstrate her expertise and dedication to advancing nanotechnology in healthcare. Her contributions to interdisciplinary research and her commitment to scientific excellence position her as a strong candidate for awards recognizing outstanding researchers in the field.

Conclusion

Dr. Anca-Daniela Criveanu demonstrates outstanding research achievements in nanotechnology and biomedical applications. Her extensive publication record, international conference participation, and strong technical expertise make her a highly suitable candidate for the Best Researcher Award. Strengthening global collaborations, securing funding, and focusing on applied research commercialization would further enhance her profile.

Publications Top Noted

Title: The Influence of SnOβ‚‚ and Noble Metals on the Properties of TiOβ‚‚ for Environmental Sustainability
Authors: Evghenii Goncearenco, Iuliana P. Morjan, Claudiu Teodor Fleacă, Carmen Ioana Fort, Monica Scarisoreanu, and others
Year: 2024
Citations: 2

Issah Imoro | Mathematics | Best Researcher Award

Dr. Issah Imoro | Mathematics | Best Researcher Award

Lecturer at University for Development Studies, Ghana

Dr. Issah Imoro is a Lecturer in the Department of Mathematics at the University for Development Studies, Ghana, specializing in Applied Mathematics and Fluid Dynamics. His research focuses on modeling with stochastic differential equations, with notable contributions to magnetohydrodynamics (MHD) flow of blood-based hybrid nanofluids, published in esteemed journals like Case Studies in Thermal Engineering and Journal of Nanofluids. With over three years of academic experience, he has taught a range of undergraduate and postgraduate courses, including differential equations, numerical methods, and mathematical modeling. Beyond teaching, he has contributed to curriculum development and served as the Departmental Quality Assurance Officer. His interdisciplinary research holds applications in biomedical engineering and computational physics. While he has received institutional recognition, expanding collaborations, funding, and research impact will further strengthen his academic profile. His dedication to research and education makes him a strong contender for the Best Researcher Award.

Professional ProfileΒ 

Education

Dr. Issah Imoro holds a Ph.D. in Mathematics from C.K.T. University of Technology and Applied Sciences, Ghana (2022–2024), where he specialized in Applied Mathematics and Fluid Dynamics. He earned his MPhil in Applied Mathematics from Kwame Nkrumah University of Science and Technology (KNUST), Ghana (2013–2015), focusing on advanced mathematical modeling techniques. His academic journey began with a BSc in Actuarial Science from the University for Development Studies, Ghana (2007–2011), equipping him with strong analytical and statistical skills. Prior to that, he obtained a Teacher’s Certificate A from N.J.A. Teacher Training College, Ghana (2002–2005), providing him with foundational teaching expertise. His diverse educational background has shaped his research in stochastic differential equations, numerical methods, and fluid dynamics. His commitment to mathematical education and research excellence is evident in his scholarly contributions, curriculum development roles, and extensive teaching experience at the university level.

Professional Experience

Dr. Issah Imoro is a Lecturer in the Department of Mathematics at the University for Development Studies (UDS), Ghana, where he has been teaching and conducting research since January 2022. With over three years of academic experience, he has taught a wide range of undergraduate and postgraduate courses, including Differential Equations, Numerical Methods, and Mathematical Modeling. His research focuses on Applied Mathematics, Fluid Dynamics, and Stochastic Differential Equations, with several publications in high-impact journals. Beyond teaching and research, he has played key administrative roles, serving as a member of the Curriculum Development Committee and as the Departmental Quality Assurance Officer. His contributions to curriculum development have helped shape the mathematics programs at UDS. Prior to joining academia, he worked in various educational capacities, earning recognition for his commitment to mathematics education. His dedication to research, teaching, and academic leadership makes him a valuable asset to the field of mathematics.

Research Interest

Dr. Issah Imoro’s research interests lie in Applied Mathematics, Fluid Dynamics, and Stochastic Differential Equations, with a particular focus on modeling complex physical and biological systems. His work explores magnetohydrodynamics (MHD) flow of blood-based hybrid nanofluids, examining the effects of thermal radiation, pressure variations, and viscosity changes in stenosed arteries. Through advanced numerical and analytical techniques, he develops mathematical models that provide insights into real-world phenomena, particularly in biomedical applications. His research contributes to computational fluid dynamics, biofluid mechanics, and mathematical modeling, offering solutions for challenges in engineering and healthcare. By integrating stochastic processes into fluid dynamics, he aims to enhance predictive models for various scientific applications. His work has been published in leading journals, and he continues to seek interdisciplinary collaborations to expand the impact of his research. His expertise in mathematical modeling and simulation positions him as a promising scholar in applied mathematics.

Award and Honor

Dr. Issah Imoro has been recognized for his dedication to mathematics education and research, earning the Most Deserving Staff Award from Tamale Girls Senior High School in 2018 for his outstanding contributions to teaching and academic excellence. His role in curriculum development and quality assurance at the University for Development Studies (UDS), Ghana, has further solidified his reputation as a committed academic and researcher. As a Departmental Quality Assurance Officer, he has played a crucial role in maintaining academic standards and improving the mathematics curriculum. His contributions to Applied Mathematics, Fluid Dynamics, and Stochastic Differential Equations have been acknowledged through multiple publications in high-impact journals. While he has received institutional recognition, further achievements in research grants, fellowships, and international awards could enhance his profile. His commitment to advancing mathematical research and education continues to make a significant impact, positioning him as a strong candidate for future academic honors.

Research Skill

Dr. Issah Imoro possesses strong research skills in Applied Mathematics, Fluid Dynamics, and Stochastic Differential Equations, enabling him to develop mathematical models for complex physical and biological systems. His expertise in numerical methods, differential equations, and mathematical modeling allows him to analyze and solve real-world problems, particularly in biomedical fluid mechanics and computational mathematics. His research focuses on magnetohydrodynamics (MHD) flow of blood-based hybrid nanofluids, incorporating advanced analytical and computational techniques to explore the effects of thermal radiation, viscosity changes, and pressure variations. He is proficient in using scientific computing tools and programming languages to conduct simulations and validate mathematical models. Additionally, his ability to interpret and analyze complex datasets enhances the accuracy and applicability of his findings. With several high-impact journal publications, his research skills continue to evolve, making him a valuable contributor to the field of applied mathematics and computational science.

Conclusion

Dr. Issah Imoro is a strong candidate for the Best Researcher Award, given his active research contributions, teaching excellence, and institutional leadership. His work in fluid dynamics and stochastic modeling is innovative and relevant. However, enhancing research impact, securing grants, and expanding collaborations will further solidify his standing as a top researcher.

Publications Top Noted

  • Title: MHD Flow of Blood-Based Hybrid Nanofluid Through a Stenosed Artery with Thermal Radiation Effect

    • Authors: I. Imoro, C.J. Etwire, R. Musah
    • Year: 2024
    • Citations: 8
  • Title: Effect of Pressure on MHD Flow of Blood‐Based Hybrid Nanofluid Through an Inclined Stenotic–Aneurysmal Artery

    • Authors: I. Imoro, C.J. Etwire, R. Musah
    • Year: 2025
    • Citations: Not yet available
  • Title: Effect of Hematocrit-Dependent Variable Viscosity on Magnetohydrodynamics Flow of Blood-Based Hybrid Nanofluid Through an Inclined Stenosed Artery

    • Authors: I. Imoro, C.J. Etwire, R. Musah
    • Year: 2024
    • Citations: Not provided
  • Title: Case Studies in Thermal Engineering

    • Authors: I. Imoro, C.J. Etwire, R. Musah

Paul Kuwornu | Social Sciences | Best Researcher Award

Dr. Paul Kuwornu | Social Sciences | Best Researcher Award

Australian Centre for Health Services Innovation, Queensland University of Technology, Australia

Dr. Paul Kuwornu is a distinguished researcher specializing in health economics, biostatistics, and applied statistics, currently serving as a Senior Research Fellow at the Australian Centre for Health Services Innovation (AusHSI) at Queensland University of Technology. He holds a Ph.D. in Community Health Sciences from the University of Manitoba, Canada, and has a strong academic foundation in biostatistics, financial engineering, and economics. With extensive experience in health policy research, cost-effectiveness analysis, and patient-centered healthcare evaluations, he has contributed significantly to improving healthcare decision-making. Dr. Kuwornu has secured competitive research funding and authored over 26 peer-reviewed publications in high-impact journals, focusing on chronic disease management, health service utilization, and economic modeling in healthcare. His interdisciplinary expertise, spanning academia, government, and industry, underscores his leadership in advancing data-driven healthcare solutions. His contributions make him a strong candidate for the Best Researcher Award, given his impactful and innovative research in health economics.

Professional Profile

Education

Dr. Paul Kuwornu has a strong academic background in health economics, biostatistics, and applied statistics. He earned his Ph.D. in Community Health Sciences from the University of Manitoba, Canada, where he specialized in health services research, economic evaluations, and statistical modeling. Prior to his doctoral studies, he obtained a Master’s degree in Biostatistics, equipping him with advanced quantitative skills for analyzing healthcare data and policy impacts. Additionally, he holds a degree in Financial Engineering and Economics, providing him with a solid foundation in economic analysis, cost-effectiveness assessments, and healthcare financing. His interdisciplinary education has enabled him to bridge the gap between economic theory and healthcare practice, contributing to innovative research in health services optimization. Dr. Kuwornu’s academic journey reflects a commitment to rigorous research and evidence-based decision-making, positioning him as a leading expert in the field of health economics and biostatistics.

Professional Experience

Dr. Paul Kuwornu has extensive professional experience in health economics, biostatistics, and healthcare research. He has worked as a researcher and consultant in health services optimization, economic evaluations, and statistical modeling. His expertise spans various domains, including healthcare cost analysis, policy impact assessments, and data-driven decision-making. Dr. Kuwornu has collaborated with academic institutions, government agencies, and international organizations, contributing to health policy development and evidence-based interventions. He has also held academic positions, teaching biostatistics and health economics, mentoring students, and leading research projects on healthcare efficiency and accessibility. His work involves the application of advanced statistical methods to analyze healthcare outcomes and cost-effectiveness, ensuring optimal resource allocation. With a strong background in interdisciplinary research, he plays a pivotal role in shaping health policy and improving healthcare delivery systems. His contributions have significantly influenced public health strategies and economic evaluations in the healthcare sector.

Research Interest

Dr. Paul Kuwornu’s research interests lie at the intersection of health economics, biostatistics, and healthcare policy. His work focuses on economic evaluations of healthcare interventions, cost-effectiveness analysis, and health services research. He is particularly interested in optimizing healthcare resource allocation, improving healthcare accessibility, and assessing the financial implications of health policies. His research explores statistical modeling in health outcomes, risk prediction, and decision-making strategies for public health interventions. Dr. Kuwornu also investigates health disparities, social determinants of health, and the economic burden of diseases on healthcare systems. His interdisciplinary approach integrates quantitative methods, data analytics, and policy analysis to drive evidence-based solutions for healthcare sustainability. He actively collaborates with researchers, policymakers, and international organizations to address healthcare inefficiencies and enhance system performance. Through his work, he aims to bridge the gap between economic theory and practical healthcare applications, ultimately contributing to more effective and equitable healthcare delivery.

Award and Honor

Dr. Paul Kuwornu has received numerous awards and honors in recognition of his outstanding contributions to health economics and biostatistics. His accolades include prestigious research grants, fellowships, and academic excellence awards from leading institutions and international organizations. He has been honored for his innovative research in healthcare policy and economic evaluations, earning recognition for his work in optimizing healthcare resource allocation. Dr. Kuwornu has also received commendations for his impactful publications in high-impact journals and his contributions to public health initiatives. His excellence in teaching and mentorship has been acknowledged through various academic awards, reflecting his commitment to nurturing future researchers. Additionally, he has been invited as a keynote speaker at renowned conferences and has served as an expert reviewer for leading scientific journals. These awards and honors underscore his dedication to advancing health economics and policy research, reinforcing his reputation as a distinguished scholar in his field.

Research Skill

Dr. Paul Kuwornu possesses exceptional research skills in health economics, biostatistics, and healthcare policy analysis. His expertise includes advanced quantitative and qualitative research methodologies, econometric modeling, and statistical data analysis. He is proficient in using statistical software such as STATA, SPSS, R, and SAS for data interpretation and policy evaluation. Dr. Kuwornu excels in conducting systematic reviews, meta-analyses, and cost-effectiveness studies to assess healthcare interventions and resource allocations. His ability to develop innovative research frameworks has led to impactful contributions in healthcare financing, economic evaluations, and public health decision-making. He has a strong track record of publishing in high-impact journals, demonstrating his analytical rigor and academic excellence. Additionally, his research skills extend to grant writing, securing funding for interdisciplinary projects, and collaborating with international research teams. His commitment to evidence-based research and policy development makes him a highly respected scholar in the field of health economics and biostatistics.

Conclusion

Dr. Paul Kuwornu is a strong candidate for the Best Researcher Award, given his outstanding contributions to health economics, biostatistics, and healthcare innovation. His interdisciplinary research, international experience, and strong publication record make him a highly deserving nominee. Strengthening his global collaborations, leadership in large-scale funding, and increasing citation impact would further enhance his profile.

Publication Top Noted

Title: An economic evaluation of chronic obstructive pulmonary disease clinical pathway in Saskatchewan, Canada: Data-driven techniques to identify cost-effectiveness among patient subgroups

Authors: J.P. Kuwornu (John Paul), F. Maldonado (Fernando), G. Groot (Gary), A. Reid (Amy), D.D. Marciniuk (Darcy D.), and others

Year: 2024

Citations: 1

Mrs Tri Kurniati Ambarini | Psychology | Best Researcher Award |

🌟Mrs. Tri Kurniati Ambarini, Psychology, Best Researcher AwardπŸ†

Airlangga University, India

Professional Profiles :Β 

Orcid Profile

Scopus Profile

Google Scholar Profile

πŸ‘©β€πŸŽ“ Bio Summary:

Mrs. Tri Kurniati Ambarini, M.Psi., Psikolog, is a dedicated academic and clinical psychologist affiliated with the Faculty of Psychology at Airlangga University in Surabaya, Indonesia. With a profound interest in early detection and intervention in psychosis and severe affective disorders, she has made significant contributions to the field through her research, teaching, and clinical practice. Mrs. Ambarini’s expertise encompasses psychopathology, clinical assessment, psychotherapy, and promoting mental health literacy. She is known for her leadership roles within the university and her commitment to advancing psychological knowledge and practice.

πŸŽ“ Education:

Mrs. Ambarini completed her Bachelor’s degree in Psychology with a major in Clinical Psychology at Airlangga University in 2004. She pursued further education, obtaining a Master’s degree and Professional Psychologist certification in Clinical Psychology from the same institution in 2006. Currently, she is engaged in doctoral studies at Airlangga University, focusing on enhancing her understanding of psychological phenomena and their practical applications.

πŸ‘©β€πŸ’Ό Professional Experience:

With over a decade of experience, Mrs. Ambarini has served as an Assistant Professor and Clinical Psychologist at Airlangga University since 2008. Her responsibilities include teaching, supervising students, conducting research, and providing clinical services through the Psychological Services Unit. Throughout her career, she has held various leadership positions, including Coordinator of Master and Professional Psychologist Degree Program and Head of Academic Department and Undergraduate Program.

πŸ”¬ Research Focus:

Mrs. Ambarini’s research interests revolve around early detection and intervention in psychosis and severe affective disorders. She is particularly interested in exploring psychopathological phenomena, clinical assessment methods, and psychotherapeutic interventions to improve mental health outcomes. Her work also delves into understanding help-seeking behavior and enhancing mental health literacy among diverse populations.

πŸš€ Professional Journey:

Mrs. Ambarini’s professional journey is marked by continuous growth and dedication to the field of psychology. Starting as a lecturer in 2005, she gradually assumed roles of increasing responsibility, including Head of Majoring in Clinical Psychology and Assessment Manager at LP3T. Over the years, she has demonstrated leadership, innovation, and a passion for advancing psychological knowledge and practice.

πŸ… Honors & Awards:

In recognition of her outstanding contributions, Mrs. Ambarini was honored with the award for Outstanding Head of Undergraduate Program in 2015. Her dedication to academic excellence, leadership, and service has earned her respect and accolades from peers and colleagues.

πŸ“š Top Noted Publications & Contributions:

Fitriani, A., & Ambarini, T. K. (2013). Hubungan antara hardiness dengan tingkat stres pengasuhan pada ibu dengan anak autis. Jurnal Psikologi Klinis dan Kesehatan Mental, 2(2), 34-40.

Febrianto, B., & Ambarini, T. K. (2019). Efektivitas konseling kelompok realita untuk menurunkan kecemasan pada klien permasyarakatan. Jurnal Ilmiah Psikologi Terapan, 7(1), 132-145.

Arbi, D. K. A. A., & Ambarini, T. K. (2018). Terapi Brief Mindfulness-Based Body Scan untuk menurunkan stres atlet bola basket wanita profesional. INSAN Jurnal Psikologi Dan Kesehatan Mental, 3(1), 1.

πŸ“Š Author Metrics:

Mrs. Ambarini’s contributions to the field are reflected in her author metrics, including citation counts, h-index, and impact factor of journals where her work is published. These metrics demonstrate the significance and influence of her research within the scholarly community.

⏳ Research Timeline:

Mrs. Ambarini’s research journey spans over two decades, starting from her undergraduate studies in psychology to her current doctoral research. Each phase of her academic and professional development has been characterized by curiosity, dedication, and a commitment to addressing pressing issues in mental health and psychology. Through her research endeavors, she continues to make meaningful contributions to the field, leaving a lasting impact on both academia and clinical practice.