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A Modified Kinematic Model of Shoulder Complex Based on Vicon Motion Capturing System: Generalized GH Joint with Floating Centre

机译:基于VICON运动捕获系统的肩部复合体改进的运动模型:浮动中心的广义GH关节

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摘要

Due to the complex coupling motion of shoulder mechanism, only a small amount of quantitative information is available in the existing literature, although various kinematic models of the shoulder complex have been proposed. This study focused on the specific motion coupling relationship between glenohumeral (GH) joint center displacement variable quantity relative to the thorax coordinate system and humeral elevation angle to describe the shoulder complex. The mechanism model of shoulder complex was proposed with an algorithm designed. Subsequently, twelve healthy subjects performed right arm raising, lowering, as well as raising and lowering (RAL) movements in sixteen elevation planes, and the motion information of the markers attached to the thorax, scapula, and humerus was captured by using Vicon motion capturing system. Then, experimental data was processed and the generalized GH joint with floating center was quantized. Simultaneously, different coupling characteristics were detected during humerus raising as well as lowering movements. The motion coupling relationships in different phases were acquired, and a modified kinematic model was established, with the description of overall motion characteristics of shoulder complex validated by comparing the results with a prior kinematic model from literature, showing enough accuracy for the design of upper limb rehabilitation robots.
机译:由于肩部机构的复合耦合运动,现有文献中仅提供少量的定量信息,尽管已经提出了肩部复合物的各种运动模型。本研究专注于格伦瓦内(GH)联合中心位移变量相对于胸腔坐标系和肱骨仰角来描述肩部复合物的特定运动耦合关系。用设计的算法提出了肩部复合体的机制模型。随后,十二个健康受试者在十六个高度平面中进行右臂提高,降低以及降低(RAL)运动,并通过使用VICON MIRTORM捕获来捕获附着在胸腔,肩胛骨和肱骨上的标记的运动信息系统。然后,处理实验数据,量化具有浮动中心的广义GH关节。同时,在肱骨升高期间检测不同的耦合特性以及降低运动。获取不同阶段的运动耦合关系,并建立了修改的运动学模型,通过将结果与文献的先前运动模型进行比较,验证了肩部复合物的整体运动特性,显示出足够的精度为上肢设计康复机器人。

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