Riya Mukherjee | Meta Research | Best Researcher Award

Ms. Riya Mukherjee | Meta Research | Best Researcher Award

Chang Gung University | India

Dr. Riya Mukherjee is a passionate and emerging researcher in biomedical sciences whose scholarly work integrates biotechnology, nanomedicine, and regenerative therapies. Her research primarily focuses on exosome-based therapeutic strategies for osteoarthritis, antimicrobial resistance, and tissue regeneration. She has authored multiple impactful publications, with a total of over 1,500 citations, h-index of 8, and approximately 45 documents indexed in global databases. Her notable works include studies on antioxidant assays, nanoparticle-based drug evaluation, and antimicrobial resistance, reflecting strong interdisciplinary expertise. She is currently pursuing her Ph.D. in Biomedical Sciences at Chang Gung University, Taiwan, where she also served as a Project Assistant and research contributor. Her academic background in microbiology from SRM University and Kalyani University strengthens her foundation in molecular and cellular biology. Dr. Mukherjee has presented at numerous international conferences and participated in innovation and entrepreneurship competitions, demonstrating leadership and creativity beyond laboratory research. Her research interests encompass exosome biology, nanotechnology, regenerative medicine, and computational biology. With several high-impact publications and international recognition, she continues to advance translational biomedical research aimed at global health improvement.

Profile: Google Scholar

Featured Publications

Baliyan, S., Mukherjee, R., Priyadarshini, A., Vibhuti, A., Gupta, A., Pandey, R. P., et al. (n.d.). Determination of antioxidants by DPPH radical scavenging activity and quantitative phytochemical analysis of Ficus religiosa. Molecules, 27(4), 1326. https://doi.org/10.3390/molecules27041326

Pandey, R. P., Vidic, J., Mukherjee, R., & Chang, C. M. (n.d.). Experimental methods for the biological evaluation of nanoparticle-based drug delivery risks. Pharmaceutics, 15(2), 612. https://doi.org/10.3390/pharmaceutics15020612

Mukherjee, R., Priyadarshini, A., Pandey, R. P., & Raj, V. S. (n.d.). Antimicrobial resistance in Staphylococcus aureus. In Insights into drug resistance in Staphylococcus aureus. IntechOpen.

Pati, P. R., Riya, M., Anjali, P., Gupta, A., Vibhuti, A., Leal, E., Sengupta, U., et al. (n.d.). Potential of nanoparticles encapsulated drugs for possible inhibition of the antimicrobial resistance development. Biomedicine & Pharmacotherapy, 141, 111943. https://doi.org/10.1016/j.biopha.2021.111943

Léguillier, V., Pinamonti, D., Chang, C. M., Mukherjee, R., Cossetini, A., et al. (n.d.). A review and meta-analysis of Staphylococcus aureus prevalence in foods. The Microbe, 4, 100131.

Deepana Gopal | Engineering | Best Researcher Award

Dr. Deepana Gopal | Engineering | Best Researcher Award

S.A.Engineering College | India

Dr. G. Deepana is a civil engineering researcher and academician with a strong contribution to structural and sustainable construction materials. She has earned her doctoral degree in Civil Engineering with prior specialization in Structural Engineering, and has consistently demonstrated academic excellence throughout her education. Her research profile reflects 11 citations, an h-index of 2, and several indexed publications across SCI and Scopus-listed journals. She has published impactful work in areas such as ferrocement composites, sustainable green concrete materials, construction waste utilization, and performance enhancement of structural elements. Her SCI publications include studies on ferrocement wall panel behavior and agro-waste reinforced composites, alongside multiple Scopus-indexed contributions exploring durability, material characterization, and sustainability in civil engineering. She has also presented her work at international and national conferences, contributing to global discussions on innovative construction materials. In addition to research, she has academic experience as an Assistant Professor, handling core civil engineering courses and laboratories, while guiding students in both theoretical and practical learning. Her research interests include concrete technology, strength of materials, ferrocement, structural durability, and sustainable infrastructure development. She aims to continue advancing environmentally responsible construction practices and contribute meaningfully to academic and engineering communities.

Profile: Google Scholar

Featured Publications

Deepana, G. (2019). Synthesis and characterization of silica from Zea mays. International Journal of Engineering Research and Technology, 8(3), 311–316.

Deepana, G., Kamaraj, L., Ganapathi, S., Venkatesh, R., Amarnath, M. K., & others. (2024). Synthesis and machining characteristics study of agro-waste coconut shell powder incorporated aluminium alloy composite via the squeeze cast technique. International Journal of Cast Metals Research, 37(4–6), 276–286.

Gopal, D., & Shobarajkumar, D. (2024). Comparative study on structural behavior of ferrocement wall panels. Earthquake Engineering & Structural Dynamics, 53(5), 1727–1741.

Vijayaraj, A., Shreya, S., Deepana, G., Senthilvel, P. G., & Jebakumar, R. (2023). Organic and recyclable waste classification using integrated feature selection method. In 2023 International Conference on Research Methodologies in Knowledge Management, Artificial Intelligence and Telecommunication Engineering (pp. —). IEEE.

Amarnaath, S., & Deepana, G. (2024). Integrating Sustainable Development Goals into business, marketing, finance and engineering for a better world. In 2024 International Conference on Smart Technologies for Sustainable Development Goals (ICSTSDG) (pp. 1–8). IEEE.

Bharti | Physics | Best Researcher Award

Ms. Bharti | Physics | Best Researcher Award

Indian Institute of Technology Delhi | India

Bharti is a research scholar at the Quantum Photonics Laboratory, Indian Institute of Technology Delhi, specializing in quantum optics and light–matter interaction. Her research explores Electromagnetically Induced Transparency (EIT), Electromagnetically Induced Absorption (EIA), and the control of light propagation in hot rubidium vapors. With a strong background in theoretical and experimental physics, she has extensively investigated Zeeman sublevel systems, optical Bloch equations, and group velocity control for developing quantum memories and slow/fast-light applications. Bharti holds an M.Sc. and B.Sc. in Physics from Maharshi Dayanand University. Her scholarly contributions include publications in Applied Physics B, Journal of Modern Optics, and Optik, along with multiple presentations at leading conferences such as FiO+LS and APS DAMOP. She has achieved significant academic recognition through national fellowships and travel awards. Bharti’s Google Scholar profile lists 7 publications, an h-index of 3, i10-index of 2, and citations exceeding 45. Her work aims to advance coherent control of photons and quantum storage technologies, contributing to the next generation of quantum communication and photonics research.

Profiles: Orcid

Featured Publications

Bharti, & Ghosh, J. (2025). Sub luminal light to super luminal light transition in a double−Λ-system in 87Rb vapor. Optik, 341, 172549. https://doi.org/10.1016/j.ijleo.2025.172549

Bharti, & Ghosh, J. (2024). Impact of longitudinal magnetic fields on EIT linewidth and dispersive properties in 87Rb vapor. Journal of Modern Optics, 71, 419–426. https://doi.org/10.1080/09500340.2024.2428970

Bharti, & Ghosh, J. (2024). Manipulating light through Zeeman EIT in 87Rb vapor: Impact of temperature and beam parameters. Applied Physics B, 130, 182. https://doi.org/10.1007/s00340-024-08320-y

Bharti, & Ghosh, J. (2023). Study of EIT width, transmission and group delay in inhomogeneously broadened Λ closed Zeeman EIT system. Bulletin of the American Physical Society.

Bharti, & Ghosh, J. (2023). Study of EIT width, transmission and group delay in inhomogeneously broadened Λ closed Zeeman EIT system. APS Division of Atomic, Molecular and Optical Physics Meeting Abstracts. https://ui.adsabs.harvard.edu/abs/2023APS..DMPM11003B

Renu Chaudhary | Microbiology | Best Researcher Award

Dr. Renu Chaudhary | Microbiology | Best Researcher Award

CSIR-Institute of Genomics and Integrative Biology (IGIB), New Delhi | India

Dr. Renu Chaudhary is a dedicated microbiologist and molecular biologist with extensive expertise in genomics, genome editing (CRISPR/Cas9), and antifungal research. Her work spans transcriptomics, structural biology, phenotypic analysis, and the study of stress response mechanisms in pathogenic fungi and Mycobacterium tuberculosis. She has contributed significantly to isolating and characterizing antimicrobial bacteria from plant rhizospheres, developing novel antifungal compounds, and exploring molecular targets for antifungal and antibacterial therapeutics. Dr. Chaudhary has authored numerous peer-reviewed articles and book chapters, with a total of 156 citations, an h-index of 6, and an i10-index of 4, reflecting her research impact and scholarly recognition. She has been involved in leading and collaborating on several funded projects, including fellowships from national science agencies, focusing on fungal diagnostics, drug resistance mechanisms, and metal homeostasis in microbes. Her research interests include antifungal resistance, microbial genomics, protein therapeutics, and biotechnological applications of fungi. Recognized for excellence in presentations and publications, she has received awards for best poster and paper contributions at national and international conferences. Dr. Chaudhary combines deep scientific knowledge with analytical rigor, driving translational research aimed at innovative solutions for infectious disease management and microbial therapeutics.

Profiles: Scopus | Orcid | Google Scholar

Featured Publications

Chaudhary, R., Singh, B., Kumar, M., Gakhar, S. K., Saini, A. K., Parmar, V. S., … [et al.]. (2015). Role of single nucleotide polymorphisms in pharmacogenomics and their association with human diseases. Drug Metabolism Reviews, 47(3), 281–290.

Balhara, M., Chaudhary, R., Ruhil, S., Singh, B., Dahiya, N., Parmar, V. S., … [et al.]. (2016). Siderophores; iron scavengers: The novel & promising targets for pathogen specific antifungal therapy. Expert Opinion on Therapeutic Targets, 20(12), 1477–1489.

Ahlawat, S., Chaudhary, R., Dangi, M., Bala, K., Singh, M., Chhillar, A. K. (2020). Advances in tuberculous meningitis diagnosis. Expert Review of Molecular Diagnostics, 20(12), 1229–1241.

Chaudhary, R., Balhara, M., Jangir, D. K., Dangi, M., Dangi, M., Chhillar, A. K. (2019). In silico protein interaction network analysis of virulence proteins associated with invasive aspergillosis for drug discovery. Current Topics in Medicinal Chemistry, 19(2), 146–155.

Khatri, S., Kumar, M., Phougat, N., Chaudhary, R., Chhillar, A. K. (2016). Perspectives on phytochemicals as antibacterial agents: An outstanding contribution to modern therapeutics. Mini Reviews in Medicinal Chemistry, 16(4), 290–308.

Manoj Kumar | Object Detection | Excellence in Research

Dr. Manoj Kumar | Object Detection | Excellence in Research

Manav Rachna University, Faridabad- India

Author Profile

Early Academic Pursuits

Dr. Manoj Kumar’s academic journey began with a Bachelor of Science in Electronics from MDU, Rohtak, completed in 2004. He further pursued his education at Lingaya’s Institute of Management & Technology, Faridabad, where he earned a Master of Computer Applications (MCA) in 2007. His commitment to advancing his knowledge in Computer Science & Engineering led him to obtain an MTech from the same institute, affiliated with MDU, Rohtak, in 2010. Dr. Kumar’s quest for academic excellence culminated in a PhD in Computer Science & Engineering from Manav Rachna University, Faridabad, completed between 2018 and 2022.

Professional Endeavors

Dr. Kumar’s professional career is marked by significant contributions to both academia and industry. He began his career as a software architect at Netlink Information System in Udyog Vihar, Gurgaon, where he worked from August 2007 to March 2008. He then transitioned to academia, serving as a Lecturer in the CSE Department at Gold Field Institute of Technology and Management, Faridabad, from January 2010 to August 2011. Since August 2011, Dr. Kumar has been an Associate Professor in the CST Department at Manav Rachna University, Faridabad, where he continues to impart quality education and mentor future engineers.

Contributions and Research Focus

Throughout his career, Dr. Kumar has been dedicated to addressing and solving complex problems in computer engineering. His research focuses on a range of areas within Computer Science & Engineering, including artificial intelligence, machine learning, and image processing. His work often bridges the gap between theoretical research and practical applications, contributing to advancements in technology and methodologies in these fields. Dr. Kumar’s research endeavors are also reflected in the patents he holds, showcasing his innovative approach to problem-solving in computer engineering.

Accolades and Recognition

Dr. Kumar’s contributions to his field have not gone unnoticed. His dedication to teaching and research has earned him recognition within the academic community. He has been involved in numerous conferences and workshops, often chairing sessions and serving as a reviewer for international journals and conferences. His expertise and commitment to his field have made him a respected figure in academia and research.

Impact and Influence

Dr. Kumar’s impact extends beyond his immediate professional environment. As an educator, he has played a pivotal role in shaping the careers of many students, instilling in them the importance of effective implementation and problem-solving in computer engineering. His work in research and development has influenced peers and professionals in the field, contributing to the collective advancement of Computer Science & Engineering.

Legacy and Future Contributions

Looking ahead, Dr. Kumar aims to continue his contributions to academia and research, with a focus on developing innovative solutions to emerging challenges in computer engineering. His legacy is one of dedication to academic excellence, mentorship, and research innovation. Dr. Kumar’s future contributions are expected to further enhance the understanding and application of computer engineering principles, leaving a lasting impact on the field and the professionals within it.

Citations

A total of 60 citations for his publications, demonstrating the impact and recognition of his research within the academic community.

  • Citations         60
  • h-index           5
  • i10-index        2

Notable Publications