A Novel 3-DOF HIP Exoskeleton for Kinematically Establishing Animal Model of Avascular Necrosis of the Femoral Head

Zhang-yin Yu, Zhang Jiafan, Dong Yi-ming, Yang Can-jun, Chen Ying, L. Jianhua, Wu Tao
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Abstract

This paper outlines a detailed description of the design on a 3-DOF hip robotic device for kinematically establishing animal model of avascular necrosis (AVN) of the femoral head. In order to realize the hip extension/flexion and abduction/adduction movements of rabbit subjects, a novel 2-DOF hip motion apparatus based on a pair of cardan joints is investigated. 2 electric grounded motors are used to drive rabbits passively in terms of predefined trajectories repeatedly with an additional periodical impact loading on the femoral head during motions. It is ideal to simulate usual forceful and repeated actions in sports, such as gymnastics and acrobatics, and initiated a new way to establish animal femoral head AVN models by means of kinematically simulating the real motion procedure rather than traditional medical or physiological operation method. With sets of experiments, the characterization of the exoskeleton system is discussed.
新型3-DOF髋关节外骨骼用于建立股骨头缺血性坏死动物模型
本文详细介绍了一种用于股骨头缺血性坏死动物模型运动学建立的3自由度机器人装置的设计。为了实现兔的髋关节伸/屈和外展/内收运动,研究了一种基于一对万向关节的2自由度髋关节运动装置。2 .使用接地电机被动地驱动兔子按照预定的轨迹重复运动,在运动过程中对股骨头施加额外的周期性冲击载荷。理想地模拟了体操、杂技等体育运动中常见的有力重复动作,开创了一种通过运动学模拟真实运动过程而不是传统的医学或生理手术方法建立动物股骨头AVN模型的新途径。通过一系列的实验,讨论了外骨骼系统的特性。
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