Xiao Yang| Bioceramics | Best Researcher Award
Prof. Dr Xiao Yang , Best Researcher Award , China.
Prof.Dr Xiao Yang , is an Associate Professor at Sichuan University, specializing in bioengineering, particularly biomechanics, medical image reconstruction, and bone diseases. He earned his Ph.D. in Bioengineering from the National University of Singapore (2013) and a Bachelor’s in Biotechnology from Wuhan University of Technology (2008). With expertise in bioceramics and osteoinduction mechanisms, he is also a consultant and translator for the FRAX tool. Xiao has contributed significantly to osteoporotic bone regeneration and cancer treatment using nanomaterials. His research is widely published, with key contributions to orthopedic surgeries and regenerative medicine. ![]()
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Publication Profile
Scopus
Education & Experience
- Ph.D. in Bioengineering (2013) – National University of Singapore

- Bachelor in Biotechnology (2008) – Wuhan University of Technology

- Associate Professor (2014 – present) – Sichuan University

- Post-doc in Pharmacology (2013 – 2014) – Yong Loo Lin School of Medicine.
Suitability Summary
Prof.Dr Xiao Yang is an outstanding candidate for the Best Researcher Award, having demonstrated exceptional expertise and contributions in the fields of biomechanics, bioengineering, and medical device development. With a solid academic background, including a Ph.D. from the National University of Singapore, and over a decade of experience as an Associate Professor at Sichuan University, Xiao has made significant strides in the development of advanced bioceramics for bone regeneration and tumor treatment. His research directly impacts clinical applications in orthopedic surgery, particularly in the treatment of bone diseases such as osteoporosis and osteosarcoma.
Professional Development
Prof.Dr Xiao Yang professional development is marked by his continuous contributions to bioceramics and osteoinduction. His research on osteoporotic bone regeneration and cancer treatment has earned him significant recognition, including grants from the National Natural Science Foundation of China. He has consistently focused on advancing biomechanical solutions, 3D-printed medical materials, and bone disease therapies. Notable for his work in developing osteoporotic treatments using nanomaterials, Xiao has collaborated with several leading institutions. His achievements in biomechanical and orthopedic innovations are reflected in numerous featured publications and his leadership in research programs. ![]()
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Research Focus
Prof.Dr Xiao Yang research primarily focuses on biomechanics, particularly at the macro and micro levels of viscoelasticity, medical image 3D reconstruction, and the study of bone diseases like osteoporosis and osteosarcoma. His work on bioceramics fabrication and their osteoinductive mechanisms has significantly contributed to bone regeneration and cancer treatments. He also investigates the use of hydroxyapatite nanoparticles in gene therapy and anti-tumor biomedical applications. His groundbreaking work in these areas seeks to improve orthopedic surgeries, osteoporotic treatments, and the understanding of bone tissue regeneration. His innovations continue to shape the future of medical technology.


Education:
Ph.D. in Mathematics (2017) – S.V. National Institute of Technology, Surat
NET-CSIR Exam (Mathematical Science) – All India Rank 1 (2014)
Assistant Professor, Sardar Patel University, Vallabh Vidyanagar (2021-Present)
Stock Controller, Bradgate Bakery, UK (2008-2010)
Excellent Research Contribution Award – Sardar Patel University
Best Ph.D. Thesis Award – S.V. National Institute of Technology, Surat
Distinction in M.Phil. & M.Sc. Mathematics – Sardar Patel University
SEED Money Research Grant Recipient (2022-2024) – Sardar Patel University







2020 – ‘Excellent PhD Graduate’ honor, University of Science and Technology of China (USTC)
Enhanced electrochemical characteristics of MnO anode induced cobalt dopant for Li-ion batteries (2025) – 0 citations 

Ca/Li Synergetic-Doped Na0.67Ni0.33Mn0.67O2 to Realize P2-O2 Phase Transition Suppression for High-Performance Sodium-Ion Batteries (2024) – 0 citations
Amino Group-Aided Efficient Regeneration Targeting Structural Defects and Inactive FePO4 Phase for Degraded LiFePO4 Cathodes (2024) – 0 citations 

Regulation of Sulfur Atoms in MoSx by Magneto-Electrodeposition for Hydrogen Evolution Reaction (2024) – 1 citation 
Two Birds with One Stone: V4C3 MXene Synergistically Promoted VS2 Cathode and Zinc Anode for High-Performance Aqueous Zinc-Ion Batteries (2024) – 11 citations
Recent progress in critical electrode and electrolyte materials for flexible zinc-ion batteries (2024) – 1 citation
Surface Modification Driven Initial Coulombic Efficiency and Rate Performance Enhancement of Li1.2Mn0.54Ni0.13Co0.13O2 Cathode (2024) – 1 citation
Mo2N/CoN nanotube with synergistic reaction of intercalation and conversion enables high-performance lithium-ion batteries (2023) – 1 citation
Carbon Foam-Supported VS2 Cathode for High-Performance Flexible Self-Healing Quasi-Solid-State Zinc-Ion Batteries (2023) – 17 citations 
Magneto-electrochemistry driven ultralong-life Zn-VS2 aqueous zinc-ion batteries (2023) – 12 citations
. His research spans amino acid metabolism, gut microbiota, and immune responses in livestock
. Dr. Tian has contributed to high-impact journals such as the Journal of Dairy Science and Animal Nutrition. His work enhances sustainable animal agriculture by optimizing dietary formulations and improving livestock health and productivity. 
Ph.D. in Animal Nutrition


. He is engaged in international collaborations to develop innovative feeding strategies for dairy cows and piglets, ensuring sustainable and efficient livestock farming
. His research also integrates circadian rhythm studies in animal physiology
. By contributing to peer-reviewed journals and attending global conferences, Dr. Tian remains at the forefront of agricultural biosciences. 
. His studies aim to enhance milk protein synthesis, amino acid balance, and dietary efficiency in dairy cows
. His work on immune modulation and inflammatory stress contributes to improved animal welfare and sustainable livestock management 

