Kaili Wang | Engineering | Best Researcher Award

Ms. Kaili Wang | Engineering | Best Researcher Award

Student at NB U, China

MS Kaili Wang is a distinguished researcher in the field of gene editing and molecular diagnostics, specializing in nucleic acid detection for agricultural biotechnology. She is affiliated with Ningbo University, School of Food Science and Engineering, China, and collaborates with Zhejiang Academy of Agricultural Sciences and the State Key Laboratory for Managing Biotic and Chemical Threats to the Quality and Safety of Agro-products. With a keen interest in genetic modification detection, her research focuses on improving the precision and sensitivity of detection methods for gene-edited organisms. Her recent work on droplet digital PCR (ddPCR) for MSTN gene-edited cattle has contributed significantly to the field of regulatory science and food safety. Dedicated to advancing biotechnology applications, she plays a crucial role in shaping methodologies for genetic monitoring, ensuring consumer safety, and fostering global discussions on gene editing and its implications.

Professional Profile

Education

MS Kaili Wang pursued her higher education in biotechnology, molecular biology, and food science, which provided a strong foundation for her research career. She earned her degrees from prestigious Chinese institutions, including Ningbo University, where she specialized in food science and genetic detection methods. Her academic training emphasized molecular diagnostics, genetic engineering, and PCR-based technologies, equipping her with the expertise necessary to develop innovative detection methods for genetically modified organisms (GMOs). Throughout her education, she engaged in interdisciplinary research, gaining hands-on experience in genetic modification analysis, nucleic acid quantification, and regulatory science. Her studies were complemented by rigorous laboratory work and collaborations with leading scientists in the field. This educational background has enabled her to contribute significantly to the advancement of gene-editing detection technologies, ensuring accuracy, sensitivity, and reliability in molecular diagnostics.

Professional Experience

With extensive experience in genetic research and molecular diagnostics, MS Kaili Wang has worked as a researcher at Ningbo University and in collaboration with Zhejiang Academy of Agricultural Sciences. She has been instrumental in developing innovative nucleic acid detection methods for gene-edited organisms, particularly using droplet digital PCR (ddPCR). Her work focuses on the safety assessment, traceability, and detection of genetically modified products, making a significant impact in the field of food safety and agricultural biotechnology. She has contributed to multiple high-impact research projects, collaborating with government agencies, regulatory bodies, and scientific institutions to establish robust methodologies for genetic monitoring. Her professional expertise extends to training young researchers, publishing peer-reviewed articles, and presenting her findings at international conferences related to gene editing and food safety. Her work plays a critical role in ensuring the accurate detection and regulation of gene-edited agricultural products.

Research Interests

MS Kaili Wang’s primary research interests lie in gene editing, nucleic acid detection, food safety, and molecular diagnostics. She is particularly focused on developing and optimizing PCR-based techniques, including ddPCR, qPCR, and CRISPR-based detection methods. Her research aims to enhance the specificity, sensitivity, and reliability of gene-editing detection, ensuring consumer safety and regulatory compliance. She is also deeply interested in the traceability of genetically modified organisms (GMOs) and their impact on food production, security, and public health. Through her work, she seeks to bridge the gap between scientific advancements and regulatory frameworks, contributing to the development of robust detection technologies that can be applied on a global scale. By integrating biotechnology with food safety regulations, she aims to provide innovative solutions for ensuring transparency in agricultural biotechnology and fostering public trust in gene-edited products.

Awards and Honors

Throughout her career, MS Kaili Wang has received numerous recognitions for her contributions to gene editing detection and food safety research. She has been honored with awards from academic institutions, regulatory bodies, and biotechnology organizations for her innovative work in nucleic acid quantification and molecular diagnostics. Her research on ddPCR-based detection of MSTN gene-edited cattle has gained international recognition, positioning her as a leading scientist in genetic monitoring and food safety regulation. She has been invited as a keynote speaker at scientific conferences, sharing her expertise on gene editing detection methodologies. Additionally, she has received grants and funding from government agencies to further her research in gene-editing detection and its application in regulatory science. Her dedication and contributions to biotechnology and food safety continue to make a profound impact, earning her a reputation as a pioneering researcher in the field.

Conclusion

MS Kaili Wang’s research is highly innovative and impactful, making significant contributions to gene editing detection and food safety monitoring. The work demonstrates scientific excellence, regulatory relevance, and technical robustness, making them a strong candidate for the Best Researcher Award. However, further research could focus on expanding the scope of detection beyond MSTN, increasing sample size, and facilitating regulatory adoption to enhance the real-world impact.

Publications Top Noted

Author: Kaili Wang, Yi Ji, Cheng Peng, Xiaofu Wang, Lei Yang, Hangzhen Lan, Junfeng Xu, Xiaoyun Chen
Year: 2025
Citation: Wang, K.; Ji, Y.; Peng, C.; Wang, X.; Yang, L.; Lan, H.; Xu, J.; Chen, X. (2025). “A Novel Quantification Method for Gene-Edited Animal Detection Based on ddPCR.” Biology, 14(2), Article 0203. DOI: 10.3390/biology14020203.
Source: Multidisciplinary Digital Publishing Institute (MDPI)

 

Abbas Rahi | Mechanical Engineering | Best Researcher Award

Assoc Prof Dr. Abbas Rahi | Mechanical Engineering | Best Researcher Award

Associate Professor, Shahid Beheshti University, Iran

🌟 Assoc Prof Dr. Abbas Rahi, an esteemed figure in Mechanical Engineering, stands as a beacon of excellence at Shahid Beheshti University in Iran. His dedication and pioneering research have earned him the prestigious Best Researcher Award, a testament to his outstanding contributions in the field. With a wealth of knowledge and expertise, Dr. Rahi continues to inspire both colleagues and students alike, shaping the future of Mechanical Engineering through his innovative work. His commitment to pushing the boundaries of scientific inquiry makes him a revered figure within the academic community and beyond. 🏆🔬

Profile

Google Scholar

LinkedIn

Research Gate

Institute ID

Education

🌟 Dr. Abbas Rahi is an accomplished Associate Professor in the Department of Mechanical & Energy Engineering at Shahid Beheshti University, Iran. Holding a Ph.D. in Mechanical Engineering from AmirKabir University of Technology, Iran, his expertise shines through in his primary focus on vibration analysis of structural elements. With a keen eye for detail and a passion for unraveling the complexities of mechanical systems, Dr. Rahi’s research has contributed significantly to the advancement of engineering knowledge. His dedication to excellence in both teaching and research serves as an inspiration to students and colleagues alike, fostering innovation and academic growth within the field. 🎓🔍

Experience

🌟 Dr. Rahi’s research spans theoretical and experimental methodologies, driving significant advancements in vibration analysis within mechanical engineering. His innovative contributions extend to bio-inspired engineering, where he integrates principles from nature into the development of shock absorbers, vibration dampers, and structural dynamics. With a relentless commitment to pushing knowledge boundaries, Dr. Rahi pioneers bio-inspired design principles, revolutionizing engineering solutions. Throughout his esteemed career, he has showcased unwavering dedication to research, translating expertise into practical applications. Dr. Rahi’s leadership and expertise leave a lasting imprint on the academic and research community, shaping the future of vibration analysis and bio-inspired engineering with impactful strides. 🎓🔬

Contribution

🌟 Throughout my career, I’ve been deeply engaged in groundbreaking research, with a focus on vibrations, shock absorbers, vibration dampers, dynamics of rotating machinery, microstructure vibrations, microstructure damage, and impact absorber design. My work extends into bio-inspired engineering, blending theory and practice to pioneer novel solutions in these domains. I’ve played a pivotal role in developing shock absorbers and vibration dampers with practical applications across industries. Expertise in rotating machinery dynamics has propelled advancements in machinery design and performance optimization. Research in microstructure vibrations and damage has offered crucial insights into microscopic structural behavior. My journey signifies a relentless pursuit of knowledge and innovation in vibrations and structural dynamics. 🔬🚀

Publications Top Notes

“Investigating the effects of vibration method on ultrasonic-assisted drilling of Al/SiCp metal matrix composites” (2014) – MA Kadivar, J Akbari, R Yousefi, A Rahi, MG Nick Citations: 103

“Comparative assessment of engine performance and emissions fueled with three different biodiesel generations” (2020) – S Tayari, R Abedi, A Rahi Citations: 76

“Axial crushing analysis of empty and foam-filled brass bitubular cylinder tubes” (2015) – S Azarakhsh, A Rahi, A Ghamarian, H Motamedi Citations: 63

“Microstructural, mechanical, and thermophysical characterization of Cu/WC composite layers fabricated via friction stir processing” (2014) – J Khosravi, MKB Givi, M Barmouz, A Rahi Citations: 53

“Controlling energy absorption capacity of combined bitubular tubes under axial loading” (2018) – A Rahi Citations: 37

“An experimental study on effects of post-heating parameters on resistance spot welding of SAPH440 steel” (2011) – AR Jahandideh, M Hamedi, SA Mansourzadeh, A Rahi Citations: 36

“Experimental comparison of acoustic emission sensors in the detection of outer race defect of angular contact ball bearings by artificial neural network” (2021) – A Meserkhani, SM Jafari, A Rahi Citations: 33

“Thermo-mechanical analysis of functionally graded wheel-mounted brake disk” (2015) – T Mahmoudi, A Parvizi, E Poursaeidi, A Rahi Citations: 26

“Burr size reduction in drilling of Al/SiC metal matrix composite by ultrasonic assistance” (2012) – MA Kadivar, R Yousefi, J Akbari, A Rahi, SM Nikouei Citations: 22

“Tip dynamic response of elastic joint manipulators subjected to a stochastic base excitation” (2003) – M Bahrami, A Rahi Citations: 22