Kobayashi Toshiki, Leung Aaron Kl, Hutchins Stephen W
Department of Health Technology and Informatics, The Hong Kong Polytechnic University, Hong Kong, People's Republic of China.
Prosthet Orthot Int. 2011 Dec;35(4):478-81. doi: 10.1177/0309364611425696. Epub 2011 Oct 19.
Ankle joint stiffness and its range of motion (ROM) are commonly assessed to determine the appropriate mechanical characteristics required in an effective ankle-foot orthosis (AFO) prescription. The aim of this technical note is to present the design of a manual device that enables their convenient measurement in the clinical setting and to demonstrate its reliability.
The manual device was designed with a torquemeter, a potentiometer, a steering wheel, a rotary plate, and a foot plate. The measurement of resistive torque at 0° (neutral), 5° (dorsiflexion) and 10° (dorsiflexion) ankle angular positions demonstrated the high reliability of the device with Intraclass Correlation Coefficient (ICC) (1,k) values over 0.97.
Quantitative measurement of ankle joint stiffness and ROM by this manual device would provide objective information that could potentially assist AFO prescriptions. A future study should investigate how to incorporate the measurement obtained from the device into the prescription of an AFO.
通常会评估踝关节僵硬程度及其活动范围(ROM),以确定有效的踝足矫形器(AFO)处方所需的合适机械特性。本技术说明的目的是介绍一种手动装置的设计,该装置能够在临床环境中方便地进行测量,并证明其可靠性。
该手动装置由扭矩计、电位计、方向盘、旋转盘和脚板组成。在踝关节0°(中立位)、5°(背屈)和10°(背屈)角位置测量阻力扭矩,结果表明该装置具有高度可靠性,组内相关系数(ICC)(1,k)值超过0.97。
通过这种手动装置对踝关节僵硬程度和ROM进行定量测量将提供客观信息,这可能有助于AFO处方的制定。未来的研究应探讨如何将该装置获得的测量结果纳入AFO的处方中。