Chongshan Yuan | Research Excellence | Research Excellence Award

Dr. Chongshan Yuan | Research Excellence | Research Excellence Award

Dr. Chongshan Yuan | Research Excellence | Doctoral at Jilin Agricultural University | China

Dr. Chongshan Yuan is a research-focused scientist in the field of animal reproduction, recognized for his integrative approach combining reproductive physiology, nutrition, microbiota, and molecular biology to address reproductive health and productivity challenges in livestock and animal models. He received his doctoral degree in animal reproduction, developing a strong academic foundation in reproductive biology, immunology, and experimental animal science. Professionally, Dr. Chongshan Yuan has been actively engaged in multidisciplinary research environments, contributing to experimental design, data analysis, manuscript development, and collaborative research projects involving diverse animal species such as sika deer, raccoon dogs, blue foxes, bulls, goats, and mice.

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Featured Publications

Pantothenic acid alleviates endometrial injury induced by vagotomy in mice – Mucosal Immunology

Microbiota–gut–brain axis in health and neurological disease: Interactions between gut microbiota and the nervous system – Journal of Cellular and Molecular Medicine

Puerarin inhibits Staphylococcus aureus-induced endometritis through attenuating inflammation and ferroptosis via regulating the P2X7/NLRP3 signalling pathway – Journal of Cellular and Molecular Medicine

Lactobacillus reuteri inhibits Staphylococcus aureus-induced mastitis by regulating oxytocin releasing and gut microbiota in mice – The FASEB Journal

Hematological Changes in Sika Doe and Suckling Fawn Fed with Spent Mushroom Substrate of Pleurotus ostreatus – Animals

Mehmet Yaman | Research Excellence | Excellence in Research Award

Dr. Mehmet Yaman | Research Excellence | Excellence in Research Award

Dr. Mehmet Yaman | Research Excellence | Specialist MD at Diyarbakır Gazi Yaşargil EAH | Turkey

Dr. Mehmet Yaman is a medical doctor and specialist in Obstetrics and Gynecology with extensive clinical expertise and a growing academic profile focused on women’s health and advanced gynecologic care. He completed his medical education at a reputable medical faculty and subsequently undertook structured specialist training in obstetrics and gynecology at a major education and research hospital, where he gained comprehensive exposure to complex clinical cases, surgical management, and evidence-based practice. His professional experience spans service in public training hospitals, regional state hospitals, and private healthcare institutions, where he has managed a high volume of patients and demonstrated strong competencies in pregnancy follow-up, labor and delivery, high-risk pregnancy management, urogynecology, endometriosis treatment, and advanced laparoscopic and hysteroscopic surgical techniques.

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Featured Publications

Single-Session No-Touch Hysteroscopic Mechanical Resection for Cesarean Scar Pregnancy: A Novel Primary Treatment Approach
– Diagnostics
Investigation of Protective Effects of Dehydroepiandrosterone (DHEA) Against Toxic Damage Caused by Doxorubicin in Rat Ovaries
– Konuralp Tıp Dergisi
Evaluation of Maternal Serum 25-Hydroxyvitamin D Levels in Patients with Hyperemesis Gravidarum at Early Gestational Weeks
– Eurasian Journal of Family Medicine

Adriana Lopes | Research Excellence | Research Excellence Award

Dr. Adriana Lopes | Research Excellence | Research Excellence Award

Dr. Adriana Lopes | Research Excellence | Research Excellence Award | Research scientist at Butantan university | Brazil

Dr. Adriana Lopes is an accomplished biochemist and senior scientific researcher recognized for her contributions to insect biochemistry, venom biology, proteomics, and enzyme-mediated biological interactions. Her educational background includes formal training in Biological Sciences at the Institute of Biosciences, University of São Paulo, followed by advanced graduate studies in Biochemistry at the Institute of Chemistry, University of São Paulo, where she completed both her master’s and doctoral research focusing on insect digestive enzymes, protease characterization, and insect–plant interactions under expert academic supervision. She has authored 33 documents, received 761 citations, and maintains a 14 h-index, reflecting sustained scholarly impact and visibility within the global scientific community. Her publication portfolio includes open-access articles in reputed international journals such as Scientific Reports and Toxins, highlighting both fundamental and applied research outcomes.

Citation Metrics (Scopus)

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Citations
761

Documents
33

h-index
14

🟦 Citations     🟥 Documents     🟩 h-index


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Featured Publications


Molecular Mechanisms of Venom Diversity

– Review Article | Open Access

Digestion in the arachnid Mischonyx squalidus as a probable source of lipids to synthesize opiliones defense and communication molecules

– Scientific Reports | Open Access

Functional and Proteomic Characterization of Acanthophis antarcticus Venom: Evidence of Fibrinogenolytic and Serine Peptidase Inhibitory Activities

– Toxins | Open Access

Liwei Tian | Research Excellence | Best Researcher Award

Prof. Liwei Tian | Research Excellence | Best Researcher Award

Dean | Guangdong University of Science and Technology | China

Prof. Liwei Tian is a distinguished professor and accomplished researcher specializing in computer science and intelligent systems. He holds a Ph.D. and serves as the Assistant to the President and Dean of the School of Computer Science at Guangdong University of Science and Technology. He is a senior network planning designer, senior information system project manager, and master’s supervisor at South China Normal University. Prof. Liwei Tian is a senior member of the China Computer Federation, vice chairman of its Dongguan branch, and an active member of several national committees, including the Intelligent Simulation Optimization and Scheduling Committee and the Discrete and Intelligent Computing Committee. He directs multiple key laboratories and research centers, such as the Kunpeng+ Intelligent Manufacturing Key Laboratory and the AIOT Edge Computing Engineering Technology Research Center. With 61 publications, 152 citations from 149 documents, and an h-index of 5, his research contributions span artificial intelligence, IoT, and intelligent manufacturing. Prof. Liwei Tian has led major provincial research projects and earned several prestigious awards, including the Huaxia High-tech Industry Innovation Award and multiple Guangdong Provincial Science and Technology Awards. He has also authored and co-edited four textbooks and holds two software copyrights.

Profile : Scopus | Research Gate

Featured Publication 

  • Tian, L. (2023). Research on Intelligent Manufacturing Based on AI and IoT Integration. Journal of Intelligent Systems, 32(4), 567–578.

  • Tian, L., & Zhang, Y. (2022). Optimization of Edge Computing for Industrial IoT Applications. IEEE Access, 10, 11845–11856.

  • Tian, L. (2021). Simulation and Scheduling in Smart Factories: A Machine Learning Approach. Computers & Industrial Engineering, 156, 107295.

Nidhi Chandrakar | Emerging Technologies | Applied Scientist Award

Ms. Nidhi Chandrakar | Emerging Technologies | Applied Scientist Award

Nidhi Chandrakar at NIT Trichy | India

Nidhi Chandrakar is a passionate and highly motivated researcher with expertise in power electronics, converter topologies, and advanced control strategies. Her work focuses on the development of high-efficiency energy conversion systems and smart power solutions for various applications, including electric vehicles, renewable energy integration, and intelligent energy storage systems. She has an exceptional ability to combine theoretical knowledge with practical implementation, demonstrated through her extensive experience in hardware design, circuit simulation, and system optimization. Nidhi has contributed to multiple high-impact research projects, including the design of Dual Active Bridge (DAB) converters and the implementation of innovative modulation strategies for improving performance and efficiency. She has published her research findings in reputed international journals and has presented her work at several prestigious conferences. In addition, she has co-authored book chapters on emerging electric vehicle technologies and hybrid energy systems, reflecting her versatility and technical proficiency. Nidhi’s strong analytical skills, collaborative mindset, and innovative approach position her as a dedicated researcher committed to driving advancements in sustainable power systems and next-generation energy solutions.

Professional Profile

Scopus | ORCID

Education

Nidhi Chandrakar has built a solid academic foundation in electrical engineering, power systems, and energy technologies. She is currently pursuing advanced research focused on power electronics and control strategies, particularly the optimization of high-performance DC-DC converters. Her academic journey has been defined by her deep interest in converter topologies, modulation techniques, and energy-efficient system designs. Throughout her studies, she has explored hardware implementation, simulation modeling, and algorithm development to bridge the gap between theory and real-world applications. She has consistently demonstrated strong academic performance, excelling in both analytical and experimental aspects of electrical engineering. Nidhi’s research training has provided her with practical exposure to modern control systems, FPGA programming, and microcontroller-based hardware development. Her academic experiences also include collaborative projects, interdisciplinary research, and active participation in workshops and seminars, which have strengthened her understanding of emerging technologies. By integrating advanced concepts of power electronics, renewable energy systems, and intelligent control, Nidhi has developed a holistic perspective on modern engineering challenges. Her educational background has shaped her into a skilled researcher with a passion for exploring innovative solutions in sustainable energy systems and cutting-edge power conversion technologies.

Professional Experience

Nidhi Chandrakar has gained valuable professional experience through diverse roles in research, development, and teaching. She is currently contributing as a Senior R&D Engineer, where she works on the design and development of electronic load systems used for testing power supplies, batteries, and advanced energy systems. Her role involves hardware design, circuit optimization, testing, and troubleshooting, enabling her to develop efficient and reliable systems. Previously, she worked as an R&D Engineer, where she focused on Boost PFC circuits, LLC resonant converters, and Dual Active Bridge (DAB) converters. During this period, she played a key role in developing gate driver circuits, isolated regulated power supplies, and advanced PCB layouts. In addition to her industrial contributions, Nidhi has served as a Teaching Assistant, supporting academic courses in Digital System Design and HDL programming, and has also worked as a Residential Student Counselor, mentoring students and assisting in administrative responsibilities. Through these experiences, she has developed strong problem-solving abilities and gained practical exposure to power system optimization, simulation tools, and microcontroller-based hardware development. Her professional journey demonstrates a balanced expertise in both academic research and industry-driven innovation.

Research Interests

Nidhi Chandrakar’s research interests focus on power electronics, energy conversion, and intelligent control strategies. She is particularly interested in the development of high-efficiency DC-DC converters, with a specialization in Dual Active Bridge (DAB) topologies and their applications in electric vehicle systems. Her current work involves optimizing converter performance through innovative approaches to current stress reduction and circulating current minimization, ensuring improved system reliability and energy efficiency. Nidhi is also passionate about renewable energy integration, smart grids, and energy storage technologies, with a strong focus on improving the interaction between distributed energy resources and power electronics systems. She has explored pulse-width modulation (PWM) and phase-shift modulation (PSM) techniques to enhance converter efficiency, supported by both simulation and experimental validation. Beyond power converters, her interests extend to real-time control systems, hardware-in-the-loop (HIL) testing, and embedded systems development for sustainable energy applications. Nidhi seeks to contribute to innovative research addressing global energy challenges by designing scalable, cost-effective, and environmentally friendly solutions. Her long-term goal is to advance the field of power electronics by bridging the gap between theoretical research and practical implementation in smart energy systems.

Research Skills

Nidhi Chandrakar possesses strong technical, analytical, and experimental skills that complement her research expertise in power electronics and control systems. She is proficient in Verilog coding and FPGA-based digital system design, enabling her to implement high-performance hardware prototypes. She has extensive experience working with Texas Instruments C2000 microcontrollers, particularly the F28379D series, for real-time control applications and advanced converter optimization. Nidhi is skilled in using MATLAB and PLECS simulation software for system modeling, analysis, and performance evaluation of power electronics systems. Her technical capabilities also include gate driver circuit design, isolated regulated power supply development, and PCB layout optimization, allowing her to translate complex concepts into functional designs. Additionally, she is proficient in programming languages such as C, C++, and Python, which she uses for developing algorithms, simulations, and embedded control solutions. Nidhi has hands-on expertise in soldering, hardware testing, troubleshooting, and validating control strategies for experimental setups. She also demonstrates strong abilities in technical documentation, academic writing, and presenting research findings at international conferences. Her diverse skill set empowers her to conduct impactful research and develop innovative, high-efficiency power solutions for emerging technologies.

Awards and Honors

Nidhi Chandrakar has been recognized for her research contributions, academic excellence, and technical expertise in the field of power electronics. She has co-authored several highly cited publications in leading international journals, where her research on current stress mitigation and circulating current reduction strategies in Dual Active Bridge converters has been well-appreciated. Nidhi has also presented her work at prestigious international conferences, where her innovative approaches to converter control and optimization have received positive recognition from the scientific community. Her contributions to book chapters published by Springer and Academic Press highlight her growing influence in the areas of electric vehicle technologies, hybrid energy systems, and renewable energy applications. In addition to her academic achievements, she has consistently maintained an outstanding record of performance throughout her studies, earning appreciation for her dedication, hard work, and technical innovation. Nidhi’s research outputs demonstrate her ability to produce impactful solutions to real-world engineering challenges. These honors reflect her strong commitment to advancing sustainable energy technologies and her potential to contribute significantly to the development of next-generation power electronics systems.

Publications Top Notes

Title: Efficient Control Strategy for Circulating Current Minimization in Dual Active Bridge Applications
Year: 2025

Conclusion

In conclusion, Nidhi Chandrakar is a highly driven researcher, engineer, and innovator with a strong focus on power electronics, converter design, and sustainable energy systems. Her academic background, professional experience, and hands-on expertise in hardware design, control strategies, and energy optimization have shaped her into a well-rounded contributor to both research and industry. Through her publications, conference presentations, and collaborative projects, she has demonstrated a deep understanding of converter technologies and renewable energy integration, positioning her as an emerging expert in her field. Nidhi strives to bridge the gap between theoretical research and practical implementation, aiming to develop efficient, reliable, and cost-effective power solutions that address global energy challenges. Her commitment to innovation, sustainability, and knowledge sharing underscores her long-term vision of contributing to advancements in electric vehicle systems, renewable power integration, and intelligent energy storage technologies. With her passion, determination, and strong technical foundation, Nidhi is well-prepared to make a meaningful impact in the evolving landscape of modern power electronics.