School of Engineering Systems, Queensland University of Technology, Brisbane, Australia.
Gait Posture. 2010 Feb;31(2):223-8. doi: 10.1016/j.gaitpost.2009.10.010. Epub 2009 Nov 18.
The purpose of this proof-of-concept study was to determine the relevance of direct measurements to monitor the load applied on the osseointegrated fixation of transfemoral amputees during static load bearing exercises. The objectives were (A) to introduce an apparatus using a three-dimensional load transducer, (B) to present a range of derived information relevant to clinicians, (C) to report on the outcomes of a pilot study and (D) to compare the measurements from the transducer with those from the current method using a weighing scale. One transfemoral amputee fitted with an osseointegrated implant was asked to apply 10 kg, 20 kg, 40 kg and 80 kg on the fixation, using self-monitoring with the weighing scale. The loading was directly measured with a portable kinetic system including a six-channel transducer, external interface circuitry and a laptop. As the load prescribed increased from 10 kg to 80 kg, the forces and moments applied on and around the antero-posterior axis increased by four-fold anteriorly and 14-fold medially, respectively. The forces and moments applied on and around the medio-lateral axis increased by nine-fold laterally and 16-fold from anterior to posterior, respectively. The long axis of the fixation was overloaded and underloaded in 17% and 83% of the trials, respectively, by up to + or - 10%. This proof-of-concept study presents an apparatus that can be used by clinicians facing the challenge of improving basic knowledge on osseointegration, for the design of equipment for load bearing exercises and for rehabilitation programs.
本概念验证研究旨在确定直接测量在监测静态承重运动中穿股骨假肢患者的骨整合固定所受负荷的相关性。目的是:(A) 引入一种使用三维力传感器的设备;(B) 提出一系列与临床医生相关的信息;(C) 报告一项初步研究的结果;(D) 将传感器的测量结果与使用称重秤的当前方法进行比较。一个配备有骨整合植入物的穿股骨截肢患者被要求使用称重秤自我监测在固定物上施加 10 公斤、20 公斤、40 公斤和 80 公斤的负荷。使用包括六通道传感器、外部接口电路和笔记本电脑的便携式动力学系统直接测量加载。随着规定负荷从 10 公斤增加到 80 公斤,前向和后向轴向的作用力和力矩分别增加了四倍和十四倍,侧向和前向后向轴向的作用力和力矩分别增加了九倍和十六倍。固定物的长轴在 17%的试验中被过加载和欠加载,分别达到+或-10%。本概念验证研究提出了一种设备,临床医生可以使用该设备来应对提高骨整合基础知识、设计承重运动设备和康复计划的挑战。