•  
     
    教授
    裴葆青

    职务职称🧏🏽🛵:教授、博导
    办公地点:北航5号楼320
    联系电话👩‍❤️‍👨:010-82339375
    E-mail🧍🏻‍♀️:pbq@buaa.edu.cn
    Baoqing Pei, Ph.D. & Professor
     

     

    裴葆青,凯发娱乐👩‍👩‍👧,教授,博导🚉。 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,国家医疗器械产业技术创新战略联盟专家委员会专家。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、北京市海淀联合基金等项目/课题20余项,国拨研究经费近4000万元。发表中英文研究论文90余篇,获得国家发明专利、软件著作权登记等10余项。

    主要科研方向:

    1、生物力学与康复工程

    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

    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  国防基础科研计划“生物交叉技术”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

    主要简历🤲🏿:

    l  2001.08-2005.01    北京凯发K8娱乐平台注册官方网站    博士研究生

    l  2005.01-2006.11    北京凯发K8娱乐平台注册官方网站    博士后

    l  2006.12-至今       北京凯发K8娱乐平台注册官方网站     凯发娱乐

    5年民口代表性科研项目:

    1👏🏽、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🙅🏿‍♂️,2024.01-2027.12. 

    2、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🚴🏼‍♀️,2023.01-2026.12

    3、神经外科手术机器人辅助内镜导航关键技术研究,北京海淀联合基金重点项目🚤🧗🏼‍♀️,2022.01-2025.12

    4、机器人辅助脊柱矫形手术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🧑🏼‍🚀,2021.01-2024.12

    5🍩、生长棒技术治疗早发性脊柱侧凸的生物力学机理研究(11972065)☝️,国家自然基金项目,2020.01-2023.12

    5年发表论文:

    1)        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.

    2)        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.

    3)        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.

    4)        潘昇妤, , 许阳阳, , 张乐, 武雪晴, , 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.

    5)        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.

    6)        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.

    7)        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.

    8)        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

    9)        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.

    10)    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.

    11)    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.

    12)    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

    13)    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.

    14)    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.

    15)    Wei Wang, Baoqing Pei*, Shuqin Wu*, Da Lu, Xueqing WuBiomechanical responses of human lumbar spine and pelvis according to the Roussouly classification. PLOS ONE. 2022, 17(7): 1-14

    16)    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

    17)    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

    18)    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

    19)    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

    20)    Ji Wang, Dayong Hu, Zhiqiang Zhang*, Baoqing Pei*, Rongkai Xu, Xueqing Wu; Anti-impact performance of bionic tortoiseshell-like composites, Composite Structures, 2022, 116315

    21)    Da Lu, Xueqing Wu, Wei Wang, Chenghao Ma, Baoqing Pei*, Wu Shuqin*. Synthesis and Application of Iron Oxide Nanoparticles in Bone Tissue Repair. Journal of Nanomaterials, 2021, 2021:1-14.

    22)    Wei He; Guangxiu Cao; Xueping Gan; Yubo Fan; Baoqing Pei; Xiaoming Li. Evaluation methods for mechanicalbiocompatibility of hernia repair meshes:respective characteristics, application scope andfuture perspectives[J].Journal of materials research and technology2021;13:1826-1840

    23)    Xueqing Wu; Baoqing Pei; Wei Wang; Da Lu ; Lei Guo; Peiyan He. Finite Element Analysis of a Novel Approach for Knee andAnkle Protection during Landing[J]. Appl. Sci. 2021, 11, 1912-1924

    24)    何沛檐裴葆青王唯卢达马诚浩. 生长棒不同固定术式治疗早发性脊柱侧凸的生物力学分析[J]. 医用生物力学🦹🏼‍♀️🪠,2021Vol.36(06)849-854

    25)    郭磊裴葆青武雪晴王唯. 短臂载人离心机的研制及+Gx/-Gz的过载生理研究[J]. 载人航天,2021🙆🏼‍♀️,Vol.27(05)589-595

    26)    武雪晴裴葆青. 猫跃下着陆的抗冲击缓冲机理研究[J]. 医用生物力学,2021🗂👨🏿‍⚕️,Vol.36(S1)🔴,199

    27)    Xueqing Wu; Baoqing Pei; Wei Wang; Yan Hao; Kaiyuan Zhou. How do Cats Resist Landing Injury: Insights into the Multi-level Buffering Mechanism [J]. J Bionic Eng. 2020.17. 600–610

    28)    Wei Wang; Baoqing Pei; Hui Li;  Zhenpeng Shi; Xueqing Wu; Nan Wu; Yan Hao; Yubo Fan. Biomechanical Effect of Over Lordotic Curvature After Spinal Fusion on the Adjacent Intervertebral Disc Under a Continuous Compressive Load [J]. Clinical Biomechanics.2020.73.149-156

     

    联系方式:pbq@buaa.edu.cn🛠,010-82339375

     

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