萧澎伟,博士,现任深圳理工大学药学院特聘副教授、博士生导师,广东省珠江青年拔尖人才。主要从事骨质疏松与骨折相关的基础及转化研究,重点围绕骨质疏松及骨折风险精准诊断与预测、骨质疏松病理生理机制及新型治疗靶点、骨组织多尺度结构与力学建模、医学影像人工智能及骨科生物力学等方向开展研究。通过融合医学影像、人工智能、有限元分析及多尺度建模等技术,研究骨组织从纳米尺度到宏观尺度的结构—力学关系,探索骨质疏松及脆性骨折的新型影像学与微结构标志物,并开展基于双平面透视成像的髋/膝关节运动学研究及创新医疗器械研发与应用。
学习经历:
2018-2022 德州大学圣安东尼奥分校,机械工程专业,博士
2008-2010 暨南大学,工程力学专业,硕士
2004-2008 华南理工大学,工程力学专业,学士
工作经历:
2025.08-至今 深圳理工大学,药学院,特聘副教授
2024.01-2025.06 美国哈佛医学院/麻省总医院,博士后研究员
2023.01-2023.12 德州大学圣安东尼奥分校,博士后
2018.08-2022.12 德州大学圣安东尼奥分校,科研助理
骨质疏松与骨折风险的精准诊断与预测、骨质疏松病理生理机制及新型治疗靶点、医学影像人工智能、骨组织多尺度结构与力学建模、骨科生物力学与骨关节运动学,以及创新医疗器械研发与临床转化。
[1] Xiao, P. (2026). Quantitative assessment of the alignment between human trabecular microstructural orientation and mechanical anisotropy: Implications for Wolff's Law. Bone, 206, 117817.
[2] Zhang, H., Xiao, P., Ye, K., & Wang, X. (2026). Conformity to stochastic invariance of microstructure influences mechanical competence of trabecular bone. Bone, 117925.
[3]Xiao, P.,Kirby, M., Hu, Y., Guo, X. E., & Wang, X. (2025).A 3D generative structural model of trabecular bone using a novel probabilistic approach. J Mech Behav Biomed Mater, 171, 107118.
[4]Xiao, P., Schilling, C., & Wang, X. (2024).Characterization of Trabecular Bone Microarchitecture and Mechanical Properties Using Bone Surface Curvature Distributions. J Funct Biomater, 15(8).
[5]P Xiao, A Roy, X Wang.IN-silico simulation of nanoindentation on bone using a 2D cohesive finite element model. Journal of the Mechanical Behavior of Biomedical Materials, 106403, 2024
[6]P Xiao, T Zhang, Y Huang, X Wang.A novel QCT-based deep transfer learning approach for predicting stiffness tensor of trabecular bone cubes. IRBM, 100831, 2024.
[7] Eakeen Haque,Pengwei Xiao, Keying Ye, Xiaodu Wang.Probability-Based Approach for Characterization of Microarchitecture and its Effect on Elastic Properties of Trabecular Bone. Journal of the Mechanical Behavior of Biomedical Materials, 2022
[8]Y Han, J Gomez, R Hua,P Xiao, W Gao, JX Jiang, X Wang.Removal of glycosaminoglycans affects the in situ mechanical behavior of extrafibrillar matrix in bone.Journal of the Mechanical Behavior of Biomedical Materials, 123, 104766, 2021
[9]P Xiao, E Haque, T Zhang, XN Dong, Y Huang, X Wang.Can DXA image-based deep learning model predict the anisotropic elastic behavior of trabecular bone?.Journal of the Mechanical Behavior of Biomedical Materials, 124, 104834, 2021
[10]P Xiao, T Zhang, E Haque, T Wahlen, XN Dong, Y Huang, X Wang.Prediction of Elastic Behavior of Human Trabecular Bone Using A DXA Image-Based Deep Learning Model. JOM, 1-1, 2021
[11]P Xiao, T Zhang, XN Dong, Y Han, Y Huang, X Wang.Prediction of trabecular bone architectural features by deep learning models using simulated DXA images.Bone reports 13, 100295, 2020
电子邮箱:xiaopengwei@suat-sz.edu.cn