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第 6 期                     杨抒, 等: 国内全髋关节置换磨损测试及数值模拟研究进展                                      1015

            [19]  Ren  Xuhui.  Wear  testing,  numerical  simulation  of  UHMWPE  Instruments Co. Ltd, 2019 (in Chinese) [北京市春立正达医疗器械
                 artificial  hip  Joint  and  its  application[D].  Xi ’an:  Xi'an  Jiaotong  股份有限公司, 均匀粗糙面58型全髋臼磨损试验报告[R]. 北京:
                 University, 2017 (in Chinese) [任旭辉, UHMWPE人工髋关节磨损  北京市春立正达医疗器械股份有限公司, 2019].
                 测试、仿真及应用研究[D], 西安: 西安交通大学, 2017].             [31]  BEFIT Testing Technology Center. Ball head impact wear test[R].
            [20]  Bergmann G, Deuretzbacher G, Heller M, et al. Hip contact forces  Shanghai:  BEFIT  TESTING  TECHNOLOGY  CENTER,  2020  (in
                 and gait patterns from routine activities[J]. Journal of Biomechanics,  Chinese) [百帆测试技术(上海)有限公司, 球头冲击磨损试验[R].
                 2001, 34(7): 859–871. doi: 10.1016/S0021-9290(01)00040-9.  上海: 百帆测试技术(上海)有限公司, 2020].
            [21]  Zhang Shutao. Study on the measurement and feature extraction of  [32]  Chen Yan, Li Yunping, Koizumi Y, et al. Effects of carbon addition
                 gait  kinematics  for  functional  evaluation[D].  Shanghai:  Shanghai  on  wear  mechanisms  of  CoCrMo  metal-on-metal  hip  joint
                 University, 2016 (in Chinese) [张书涛. 用于功能评估的步态运动   bearings[J].  Materials  Science  and  Engineering:C,  2017,  76:
                 测量与特征提取研究[D]. 上海: 上海大学, 2016].                    997–1004. doi: 10.1016/j.msec.2017.03.211.
            [22]  Fabry C, Herrmann S, Kaehler M, et al. Generation of physiological  [33]  Chen  Yan,  Li  Yunping,  Kurosu  S,  et  al.  Analysis  of  Run-in-stage
                 parameter  sets  for  hip  joint  motions  and  loads  during  daily  life  wear  behavior  and  contact  mechanics  of  metal-on-metal  hip  joint
                 activities  for  application  in  wear  simulators  of  the  artificial  hip  bearings with different radial clearances[J]. Materials Transactions,
                 joint[J]. Medical Engineering & Physics, 2013, 35(1): 131–139. doi:  2015, 56(6): 826–834. doi: 10.2320/matertrans.m2014440.
                 10.1016/j.medengphy.2012.07.014.              [34]  Liu  Feng,  Chen  Zhefeng,  Gu  Yanqing,  et  al.  Deformation  of  the
            [23]  Galvin A L, Tipper J L, Jennings L M, et al. Wear and biological  Durom  acetabular  component  and  its  impact  on  tribology  in  a
                 activity  of  highly  crosslinked  polyethylene  in  the  hip  under  low  cadaveric  model:  a  simulator  study[J].  PLos  One,  2012,  7(10):
                 serum  protein  concentrations[J].  Proceedings  of  the  Institution  of  e45786. doi: 10.1371/journal.pone.0045786.
                 Mechanical Engineers Part H, Journal of Engineering in Medicine,  [35]  ISO 14242-3 Implants for surgery-wear of total hip joint prostheses,
                 2007, 221(1): 1–10. doi: 10.1243/09544119jeim99.  Part 3: Loading and displacement parameters for orbital bearing type
            [24]  Zhao  Lingyan.  The  experiment  study  on  human  gait  model[D].  wear testing machines and corresponding environmental conditions
                 Harbin: Harbin Engineering University, 2008 (in Chinese) [赵凌燕.  for test[S]. International Organization for Standardization, 2009.
                 人体步态模型实验研究[D]. 哈尔滨: 哈尔滨工程大学, 2008].           [36]  Gao  Yongchang.  Kinematics  and  conctact  mechanics  coupling
            [25]  Liu  Xiaocan.  Comparison  of  lower  limb  joint  angle  during  gait  analysis  and  optimization  of  dual  mobility  hip  implant[D].  Xi ’an:
                 between  inertial  sensor  and  high-speed  infrared  motion  capture  Xi’an Jiaotong University, 2016 (in Chinese) [高永昌, 双动全髋关
                 system[D]. Beijing: Beijing Sport University, 2019 (in Chinese) [刘  节运动学和接触力学耦合分析及优化[D], 西安: 西安交通大学,
                 筱璨. 惯性传感器与高速红外运动捕捉系统测量步态下肢关节角                     2016].
                 度的比较[D]. 北京: 北京体育大学, 2019].                   [37]  ASTM  F2582-2014,  Standard  test  method  for  impingement  of
            [26]  Kaddick C, Wimmer M A. Hip simulator wear testing according to  acetabular prostheses[S]. ASTM International, West Conshohocken,
                 the  newly  introduced  standard  ISO  14242[J].  Proceedings  of  the  PA, 2014.
                 Institution of Mechanical Engineers Part H, Journal of Engineering  [38]  Hua  Zikai.  Research  on  artificial  joint  lubrication  and  tribological
                 in  Medicine,  2001,  215(5):  429–442.  doi:  10.1243/095441101153  test  technology[D].  Shanghai:  Shanghai  University,  2011  (in
                 6019.                                             Chinese) [华子恺. 人工关节润滑技术与摩擦学测试研究[D]. 上
            [27]  Fan Weimin, Song Huanghe, Li Xiang, et al. The impact of storage  海: 上海大学, 2011].
                 time  on  the  wear  rates  of  ultrahigh-molecular-weight  polyethylene  [39]  Shankar S, Gowthaman K, Uddin M S. Predicting long-term wear
                 acetabular liners in hip simulators[J]. The Journal of Arthroplasty,  performance  of  hard-on-hard  bearing  couples:  effect  of  cup
                 2009, 24(4): 543–548. doi: 10.1016/j.arth.2008.01.308.  orientation[J].  Medical  &  Biological  Engineering  &  Computing,
            [28]  Chen  Guomei,  Ni  Zifeng,  Qian  Shanhua,  et  al.  Biotribological  2016, 54(10): 1541–1552. doi: 10.1007/s11517-015-1440-2.
                 behaviour of Vitamin E-blended highly cross-linked UHMWPE in a  [40]  Johnston R C, Smidt G L. Measurement of hip-joint motion during
                 hip  joint  simulator[J].  Industrial  Lubrication  and  Tribology,  2016,  walking[J].  The  Journal  of  Bone  &  Joint  Surgery,  1969,  51(6):
                 68(5): 548–553. doi: 10.1108/ilt-09-2015-0130.    1083–1094. doi: 10.1007/BF00417222.
            [29]  Beijing  Chunlizhengda  Medical  Instruments  Co.  Ltd.  Wear  test  of  [41]  Paul J P. Force actions transmitted by joints in the human body[J].
                 VEXL  hip  prosthesis[R].  Beijing:  Beijing  Chunlizhengda  Medical  Proceedings  of  the  Royal  Society  of  London,  1976,  192(1107):
                 Instruments Co. Ltd, 2019 (in Chinese) [北京市春立正达医疗器械  163–172. doi: 10.1098/rspb.1976.0004.
                 股份有限公司, VE髋关节全髋臼磨损性能测试[R]. 北京: 北京市            [42]  Wang  Chengtao.  Human  Biotribology[M].  Beijing:  Science  Press,
                 春立正达医疗器械股份有限公司, 2019].                            2008 (in Chinese) [王成焘. 人体生物摩擦学[M], 北京: 科学出版
            [30]  Beijing  Chunlizhengda  Medical  Instruments  Co.  Ltd.  Wear  test  of  社, 2008].
                 58#  acetabular  cup[R].  Beijing:  Beijing  Chunlizhengda  Medical  [43]  Tang  Gang.  Biomechanics  simulation  analysis  for  typical
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