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裴葆青,北京航空航天大学生物与医学工程学院,教授,博导。主持国防基础科研、国家863、科技支撑计划、国家重点研发计划、国家自然科学基金、北京市海淀、昌平联合基金等国家、省部级项目/课题20余项,发表中英文研究论文百余篇,获得国家发明专利授权、软件著作权登记等近20项。
主要科研方向:
1、生物力学与康复
2、航空航天医学工程
3、仿生技术及应用
主要兼职:
l 高端植介入医疗器械优化设计与评测技术北京市重点实验室主任(2016-2025)
l 国家医疗器械产业技术创新战略联盟专家委员会专家
l 基础科研计划“生物与环境”专题组召集人
l 北京市海淀区第11届政协委员、民进海淀区委副主委(2021-2026)
主要简历:
l 2001.08-2005.01 北京航空航天大学 博士研究生
l 2005.01-2006.11 北京航空航天大学 博士后
l 2006.12-至今 北京航空航天大学 生物与医学工程学院
在研项目(民口):
1、力电耦合无线可降解智能支架构建及其对面颈部肌群失调功能重塑的作用机制研究,北京-昌平联合基金重点项目(L2604003),2026.07-2029.06.
2、胫骨高位截骨机器人双轴耦合精准定位及智能交互控制技术研究,北京-海淀联合基金一般项目-课题(L242142),2024.11-2027.12.
3、全踝关节置换手术机器人智能规划与精准操作关键技术研究,北京-海淀联合基金重点项目-课题(L232004),2023.11-2026.12
近5年发表论文:
1) Weiyue Zhang, Baoqing Pei*, Yifan Zhou, Hui Li, Wei Ma, Bing Zhou, Chen Zhou*, Huimin Jiang*, Xunming Ji*. Emerging Targets, Novel Directions, and Innovative Approaches in Thrombosis Therapy. Aging and Disease. 2026, 17(2): 812-848
2) 刘静,许阳阳,卢达,武勇,裴葆青*.全踝置换术后不同宽度两组件式假体胫骨组件对踝关节的生物力学影响[J].中国生物医学工程, 2026,Vol.45(1) 70–79.
3) Yangyang Xu, Xueqing Wu, Da Lu, Yong Wu, Heng Li, and Baoqing Pei*. Design and mechanical evaluation of a novel dynamic growth rod to improve the surgical treatment of Early-Onset Scoliosis. Bone & Joint Research. 2025, 14(9): 747-759
4) Yangyang Xu, Da Lu, Le Zhang, Shijia Zhang, Yong Wu, Heng Li, Baoqing Pei*, and XueqingWu. ANovel Dynamic Growth Rod Inducing Spinal Growth Modulation for the Correction of Spinal Deformities [J]. JOR spine, 2025, 8(1): e70031.
5) Mengyuan Hu, Xueqing Wu, Yangyang Xu, Xin Huang, Da Lu, and BaoqingPei*. Investigation of functionally graded triply periodic minimal surfaces with graphene-reinforced AlSi10Mg powder: Design, fabrication and impact resistance [J]. Materials & Design, 2025, 250(1): 113586.
6) Ya Li, DaLu, Xueqing Wu, Jiahao Lu, Yangyang Xu, Shijia Zhang, Le Zhang, Baoqing Pei*. Effect of Laminectomy Methods on the Surgical Safety of Automatic Laminectomy Robot[J]. The International Journal of Medical Robotics and Computer Assisted Surgery, 2025; 21: e70031, https://doi.org/10.1002/rcs.70031.
7) 潘昇妤,卢达,许阳阳,武勇,张乐,武雪晴,杜辉,赖良鹏,裴葆青*.全踝置换术后不同高度的Salto胫骨组件对骨-假体界面的稳定性影响[J].医用生物力学, 2025,Vol.40(2) 363–369.
8) Da Lu, Xueqing Wu*, Yangyang Xu, Shijia Zhang, Le Zhang, Xin Huang, Baoqing Pei*. Comprehensive Biomechanical Characterization of the Flexible Cat Spine via Finite Element Analysis, Experimental Observations, and Morphological Insights. Journal of Bionic Engineering, 2024, available online. DOI: 10.1007/s42235-024-00594-4.
9) Le Zhang, Baoqing Pei*, Shijia Zhang, Da Lu, Yangyang Xu, Xin Huang, Xueqing Wu*. A New Method for Scoliosis Screening Incorporating Deep Learning With Back Images. Global Spine Journal, 2024, available online. DOI: 10.1177/21925682241282581.
10) Da Lu, Baoqing Pei*, Yangyang Xu, Mengyuan Hu, Shijia Zhang, Le Zhang, Xin Huang, Yangwei Wang, Xueqing Wu*. Hierarchical Voronoi Structure Inspired by Cat Paw Pads Substantially Enhances Landing Impact Energy Dissipation. Journal of Bionic Engineering, 2024, 21(4): 1847-1861.
11) Da Lu† , Xueqing Wu† , Yafei Zhao , Baoqing Pei* , Yangyang Xu , Shuqin Wu*. Orthopaedic Mechanism Analysis of Growing Rod Distraction for Early Onset Scoliosis Based on 3-D Morphological Parameters. Journal Orthopaedic Research. 2023, 10:1002/jor.25697
12) Baoqing Pei † , Mengyuan Hu† , Xueqing Wu *, Da Lu , Shijia Zhang , Le Zhang. Investigations into the effects of scaffold microstructure on slow-release system with bioactive factors for bone repair. Front. Bioeng. Biotechnol. 2023, 9:1230682.
13) Pei B, Xu Y, Zhao Y, Wu X*, Lu D, Wang H and Wu S*. Biomechanical comparative analysis of conventional pedicle screws and cortical bone trajectory fixation in the lumbar spine: An in vitro and finite element study. Front. Bioeng. Biotechnol. 2023, 1:1060059.
14) Pei Baoqing; Guo Lei; Wu Xueqing*; Hu Mengyuan; Wu Shuqin*; Wang Yangwei. Impact Resistant Structure Design and Optimization Inspired by Turtle Carapace. Materials, 2022; 15(8):2899.
15) Pei B, Lu D, Wu X, Xu Y, Ma C and Wu S. Kinematic and biomechanical responses of the spine to distraction surgery in children with early onset scoliosis: A 3-D finite element analysis. Front. Bioeng. Biotechnol. 2022; 10:933341
16) Wang W, Kong C, Pan F, Wang W, Wu X, Pei B*, Lu S. Influence of Sagittal Lumbopelvic Morphotypes on the Range of Motion of Human Lumbar Spine: An In Vitro Cadaveric Study. Bioengineering. 2022; 9(5):224.
17) Pei Baoqing; Lu Da; Wu Xueqing*; Xu Yangyang; Ma Chenghao; Wu Shuqin*; Effects of Growing Rod Technique with Different Surgical Modes and Growth Phases on the Treatment Outcome of Early O nset Scoliosis: A 3-D Finite Element Analysis, International Journal of Environmental Research an d Public Health, 2022, 19(4): 1-16.
18) Wei Wang, Baoqing Pei*, Shuqin Wu*, Da Lu, Xueqing Wu,Biomechanical responses of human lumbar spine and pelvis according to the Roussouly classification. PLOS ONE. 2022, 17(7): 1-14
19) Yangyang Xu , Xiangyu Li, Yafei Chang, Baoqing Pei. Design of Personalized Cervical Fixation Orthosis Based on 3D Printing Technology. Applied Bionics and Biomechanics. 2022, https://doi.org/10.1155/2022/8243128
20) Yilin Xiao, Dayong Hu, Zhiqiang Zhang*, Baoqing Pei *, Xueqing Wu, Peng Lin; 3A 3D-Printed Sole Design Bioinspired by Cat Paw Pad and Triply Periodic Minimal Surface for Improving Paratrooper Landing Protection, Polymers, 2022, https://doi.org/10.3390/polym14163270
21) Mincen Wan , Dayong Hu*, Baoqing Pei*; Performance of 3D-Printed Bionic Conch-Like Composite Plate under Low-Velocity Impact, Materials, 2022; https://doi.org/10.3390/ma15155201
22) Wei Wang, Chao Kong, Fumin Pan, Yu Wang, Xueqing Wu, Baoqing Pei*, Shibao Lu*; Biomechanical comparative analysis of effects of dynamic and rigid fusion on lumbar motion with different sagittal parameters: An in vitro study, Front. Bioeng. Biotechnol. 2022; 10:943092
23) Ji Wang, Dayong Hu, Zhiqiang Zhang*, Baoqing Pei*, Rongkai Xu, Xueqing Wu; Anti-impact performance of bionic tortoiseshell-like composites, Composite Structures, 2022, 116315 |