Prof. Dr. Zhiliang Lu | Bio-Inspired Robot Design | Research Excellence Award

Prof. Dr. Zhiliang Lu | Bio-Inspired Robot Design | Research Excellence Award

Xi'an Jiaotong-Liverpool University | China

Prof. Dr. Zhiliang Lu is a distinguished bioscientist and biomedical researcher with extensive expertise in pharmacology, GPCR biology, and cell signaling. He is currently a Professor of Biological Sciences at Xi’an Jiaotong-Liverpool University , where he also serves as Deputy Head of the Department of Biological Sciences and Director of the Suzhou Municipal Key Laboratory of Cancer Biology and Chronic Disease. After completing his BSc and MSc at Zhejiang University, he earned his PhD in Medicine from Shanghai Jiao Tong University, focusing on G protein-coupled receptors, a central target in drug discovery. Professor Lu has held prestigious research positions at the UK Medical Research Council, including Tenured Programme Leader at the University of Edinburgh, following a Wellcome Trust Postdoctoral Fellowship. His research centers on GPCR signaling, NanoBRET technology, neuropeptide receptors, cancer biology, and mRNA methylation regulation. He has authored over 100 peer-reviewed publications, holds patented technologies in drug screening, Bio-Inspired Robot Design and supervises postgraduate researchers internationally, including as an honorary professor at the University of Liverpool.

Citation Metrics (Scopus)

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Citations
3,071

Documents
57

h-index
26

Citations

Documents

h-index


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Featured Publications

Dr. Qiang Ziyang | Bio-Inspired Robot Design | Best Researcher Award

Dr. Qiang Ziyang | Bio-Inspired Robot Design | Best Researcher Award

Qinghai University Affiliated Hospital | China

Ziy­ang Qiang is a dedicated urologist and clinical researcher currently serving as an attending urologist at the affiliated hospital of Qinghai University, China, under the supervision of Prof. Guojun Chen. He earned his bachelor’s degree in clinical medicine and later completed a master’s degree in surgery at Ningxia Medical University under Prof. Lianghong MA, where his thesis focused on the effects of the pi3k inhibitor ly294002 on the proliferation and apoptosis of prostate cancer cell line pc-3. He further expanded his research expertise at the University hospital Halle, Germany, under Prof. P. Fornara, working on minimally invasive surgery and its comparison with open surgical procedures. Over the years, he has built a strong academic and clinical foundation, combining research insight with practical surgical experience. His scholarly contributions include several publications in peer-reviewed journals, reflecting growing recognition in the field of urology. According to available databases, Dr. Ziyang Qiang has an h-index of 8, with approximately 490 citations across about 5 documents, highlighting his active engagement in Bio-Inspired Robot Design research. his work bridges clinical innovation and academic inquiry, contributing meaningfully to advancements in urological surgery and evidence-based medical practice.

Profile: Orcid

Featured Publications

Qiang, Z., Zhang, B., Li, T., Ma, L., Kong, X., & Chen, S. (2025, October). Dysbiotic gut microbiota correlates with altered serum and urinary biomarkers in recurrent calcium oxalate stone patients. International Journal of General Medicine, 18, Article S549804.

Wang, J., Fan, M., Qiang, Z., Ren, H., Chen, H., & Dai, Y. (2025, October 9). Global research trends of robotic-assisted surgery in urogynecology and reconstructive pelvic surgery: A bibliometric and visualization analysis based on Web of Science. Journal of Robotic Surgery.

Qiang, Z. (2025, October 1). Risk factor analysis and prediction model establishment for urinary incontinence after laparoscopic radical prostatectomy. Journal of the College of Physicians and Surgeons Pakistan, 35(10), 1301–1307.

Niu, S., Xia, D., Wang, B., Wang, X., Zhang, Q., Wang, J., Jin, X., Mao, L., Ruan, Y., Wang, H., … Qiang, Z. (2025, April). Real-world effectiveness of rezvilutamide plus androgen deprivation therapy in patients with low-volume, metastatic hormone-sensitive prostate cancer: A retrospective multicenter study. Translational Andrology and Urology, 14(4), 239–249.

Zhang, J., He, J., Qiang, Z., Zhang, J., Hao, F., Song, S., Chen, X., Ma, W., & Li, Y. (2024, December 18). Methyltransferase like 13 promotes malignant behaviors of bladder cancer cells through targeting PI3K/AKT signaling pathway. Open Life Sciences, 19(12), 981–990.

Dr. Nadeem Tariq Beigh | Bio-Inspired Robot Design | Best Researcher Award

Dr. Nadeem Tariq Beigh | Bio-Inspired Robot Design | Best Researcher Award

Khalifa University | United Arab Emirates

Dr. Nadeem Tariq Beigh is an Indian Researcher and postdoctoral fellow at the smart and intelligent sensors lab, department of mechanical and nuclear engineering, Khalifa University, Abu Dhabi. With a Ph.d. in electrical engineering from the Indian Institute of Technology Delhi, he has established himself as a rising scholar in sustainable sensing, self-powered systems, mems/nems, and energy harvesting. His research emphasizes the design and development of dual piezoelectric/triboelectric nanocomposites, micro/nano energy harvesters, and intelligent sensor systems integrated with machine learning for smart health care and industry 5.0 applications. Dr. Beigh has previously served as a research fellow at nanyang technological university, singapore, and a research assistant at iit delhi, contributing to several high-impact projects funded by dst, Bio-Inspired Robot Design fit, and international collaborations. He has authored 33 research documents, accumulated 239 citations from 152 scholarly works, and holds an h-index of 8, reflecting his growing influence in advanced materials and micro-energy systems research. His interdisciplinary expertise bridges electrical, mechanical, and materials engineering, driving innovations in sustainable, flexible, and intelligent sensor technologies that advance the frontiers of smart electronics and self-powered devices.

Profiles: Scopus | Orcid

Featured Publications

Beigh, N. T., & Alcheikh, N. (2025, October 8). Vapor-induced porosity in graphene/PDMS: A scalable route to high-performance pressure sensors. Microsystems & Nanoengineering.

Amara, H., Beigh, N. T., & Alcheikh, N. (2025, September 17). Smart resonant micro-sensor and micro-actuator: High-performance, wide-range bi-axial magnetic sensitive/insensitive micro-device for multifunctional sensing applications. Microsystems & Nanoengineering.

Alcheikh, N., Amara, H., & Beigh, N. T. (2025, May 5). Smart resonant micro-sensor and micro-actuator: High-performance, wide-range bi-axial magnetic sensitive/insensitive micro-device for multifunctional sensing applications.

Singh, S., Beigh, N. T., Gupta, P., Mallick, D., & Goswami, A. (2025, April). Polarity-dependent surface charge retention on CYTOP fluoropolymer for durable TENG applications. Applied Materials Today.

Beigh, N. T. (2025, March 19). High-performance MEMS magnetic sensor based on a smart tunable resonator. In Proceedings of the 2025 IEEE 38th International Conference on Micro Electro Mechanical Systems (MEMS). IEEE.

Dr. Tiran Wang | Bio-Inspired Robot Design | Best Researcher Award

Dr. Tiran Wang | Bio-Inspired Robot Design | Best Researcher Award

Wenzhou University of Technology | China

Author Profile

GOOGLE SCHOLAR

Summary

Wang Tianran is an accomplished researcher and lecturer specializing in Sers sensors, biochemical detection, and nanosensor technologies. with strong academic foundations from central south university and the national university of defense technology, he has advanced research in nanomaterials, wearable devices, and high-sensitivity detection systems. his professional journey includes leading university-level projects and contributing to national defense initiatives, reflecting both academic rigor and practical impact.

Early academic pursuits

Wang Tianran began his academic journey in materials science and engineering, earning both bachelor’s and master’s degrees from central south university. During this period, he built a strong foundation in advanced materials, nanotechnology, and Bio-Inspired Robot Design sensor applications. his pursuit of knowledge led him to the national university of defense technology, where he completed his doctoral research in mechanical engineering. this phase shaped his expertise in developing high-performance sensors, bridging materials science with engineering applications, a direction that later aligned closely with innovations in power electronics.

Professional endeavors

Following his Doctoral studies, Wang joined the Wenzhou institute of technology as a lecturer. Here, he actively combined teaching with applied research, mentoring young scholars while also contributing to multi-disciplinary projects. his involvement in Bio-Inspired Robot Design national defense and university-level projects demonstrates his ability to integrate theory with practice, particularly in areas such as nanosensor preparation, graphene-based wearable electronics, and advanced detection technologies.

Contributions and research focus

Wang’s primary research interest lies in the construction of highly sensitive sers sensors and their biochemical detection performance. He has contributed to projects focused on wearable electronic devices for explosive detection, high-sensitivity sensor chips, and the application of gold-shell magnetic beads in pathogen identification. his research emphasizes functionalized films, nanomaterial modifications, Bio-Inspired Robot Design and nanosensor key components, making significant strides in bridging micro-nanotechnology with biochemical detection. These areas also intersect with the miniaturization and optimization trends seen in power electronics, showcasing his multidisciplinary perspective.

Impact and influence

By hosting talent introduction and university-level research projects, wang has shown leadership in fostering innovation at institutional and national levels. His participation in military research projects further reflects the strategic importance of his work. his research outputs provide practical solutions for biochemical sensing and safety applications, strengthening technological self-reliance. moreover, Bio-Inspired Robot Design his interdisciplinary approach contributes to advancing both engineering sciences and emerging technologies like power electronics, reinforcing their applications in defense, healthcare, and industrial fields.

Academic cites

Wang’s academic contributions, though early in their impact trajectory, are rooted in highly cited fields such as nanotechnology, biochemical detection, and sensor performance evaluation. His participation in multi-institutional projects and Bio-Inspired Robot Design defense-related research ensures that his work is recognized not only in academic literature but also in applied industrial and governmental domains.

Legacy and future contributions

Wang Tianran is poised to build a legacy as a scholar who bridges materials science, sensor engineering, and real-world applications. His future contributions may include advancing Nanosensor miniaturization, improving biochemical detection accuracy, Bio-Inspired Robot Design and mentoring the next generation of researchers. by integrating his expertise with global advancements, he is likely to influence future research directions in applied materials, sensor technologies, and interdisciplinary engineering.

Publications

Title: Electronic Properties of van der Waals Heterostructure of Black Phosphorus and MoS₂
Authors: K. Tang, W. Qi, Y. Li, T. Wang
Journal: The Journal of Physical Chemistry C
Publication Year: 2018

Title: Fabrication of 2D titanium carbide MXene/Au nanorods as a nanosensor platform for sensitive SERS detection
Authors: T. Wang, P. Dong, C. Zhu, W. Gao, P. Sha, Y. Wu, X. Wu
Journal: Ceramics International
Publication Year: 2021

Title: Fabrication of Au nanorods by the oblique angle deposition process for trace detection of methamphetamine with surface-enhanced Raman scattering
Authors: B. Li, T. Wang, Q. Su, X. Wu, P. Dong
Journal: Sensors
Publication Year: 2019

Title: A ‘sandwich’ structure for highly sensitive detection of TNT based on surface-enhanced Raman scattering
Authors: W. Gao, T. Wang, C. Zhu, P. Sha, P. Dong, X. Wu
Journal: Talanta
Publication Year: 2022

Title: AgNWs@SnO₂/CuO nanocomposites for ultra-sensitive SO₂ sensing based on surface acoustic wave with frequency-resistance dual-signal display
Authors: J. Yang, T. Wang, C. Zhu, X. Yin, P. Dong, X. Wu
Journal: Sensors and Actuators B: Chemical
Publication Year: 2023

Conclusion

Wang’s work demonstrates the critical intersection of materials science, mechanical engineering, and applied sensor technology. His contributions to biochemical sensing and micro-nanotechnology highlight his role in shaping innovative detection systems for defense, healthcare, and industrial needs. as his career progresses, his multidisciplinary expertise and leadership will ensure meaningful advancements, positioning him as a key contributor to the evolving fields of sensor innovation and advanced engineering applications.