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一种用于在体内测量肩关节接触力和接触力矩的仪器化植入物。

An instrumented implant for in vivo measurement of contact forces and contact moments in the shoulder joint.

作者信息

Westerhoff P, Graichen F, Bender A, Rohlmann A, Bergmann G

机构信息

Charité - Universitätsmedizin Berlin, Campus Virchow-Klinikum, Julius Wolff Institut, Augustenburger Platz 1, D - 13353 Berlin, Germany.

出版信息

Med Eng Phys. 2009 Mar;31(2):207-13. doi: 10.1016/j.medengphy.2008.07.011. Epub 2008 Sep 12.

Abstract

To improve implant design, fixation and preclinical testing, implant manufacturers depend on realistic data of loads acting on the shoulder joint. Furthermore, these data can help to optimize physiotherapeutic treatment and to advise patients in their everyday living conditions. Calculated shoulder joint loads vary extremely among different authors [Anglin C, Wyss UP, Pichora DR. Glenohumeral contact forces. Proc Inst Mech Eng [H] 2000;214:637-44]. Additionally the moments acting in the joint caused by friction or incongruent articular surfaces, for example, are not implemented in most models. An instrumented shoulder joint implant was developed to measure the contact forces and the contact moments acting in the glenohumeral joint. This article provides a detailed description of the implant, containing a nine-channel telemetry unit, six load sensors and an inductive power supply, all hermetically sealed inside the implant. The instrumented implant is based on a clinically proven BIOMET Biomodular shoulder replacement and was calibrated before implantation by using complex mathematical calculation routines in order to achieve an average measuring precision of approximately 2%.

摘要

为改进植入物设计、固定方式及临床前测试,植入物制造商依赖于作用于肩关节的载荷的实际数据。此外,这些数据有助于优化物理治疗方案,并为患者在日常生活中的情况提供建议。不同作者计算出的肩关节载荷差异极大[安格林C、怀斯UP、皮乔拉DR。盂肱关节接触力。机械工程师学会会刊[H]2000年;214:637 - 44]。此外,例如,由摩擦或关节面不匹配引起的作用于关节的力矩在大多数模型中并未体现。一种带仪器的肩关节植入物被研发出来,用于测量盂肱关节中的接触力和接触力矩。本文详细描述了该植入物,它包含一个九通道遥测单元、六个载荷传感器和一个感应电源,所有这些都被密封在植入物内部。该带仪器的植入物基于临床上已证实的BIOMET生物模块化肩关节置换物,在植入前通过使用复杂的数学计算程序进行了校准,以实现约2%的平均测量精度。

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