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一项关于在执行日常任务时肩部和肘部的外力及力矩的研究。

A study of the external forces and moments at the shoulder and elbow while performing every day tasks.

作者信息

Murray Ingram A, Johnson Garth R

机构信息

Centre for Rehabilitation and Engineering Studies (CREST), Stephenson Building, University of Newcastle, Newcastle upon Tyne, NE1 7RU, UK.

出版信息

Clin Biomech (Bristol). 2004 Jul;19(6):586-94. doi: 10.1016/j.clinbiomech.2004.03.004.

Abstract

OBJECTIVES

To establish a database of upper limb kinematics and kinetics to support the development of a biomechanical model of the shoulder and elbow.

DESIGN

Ten unimpaired subjects were studied when performing 10 different tasks of every day living.

BACKGROUND

The development of biomechanical models of the upper limb to support the design of total joint replacements requires data on the commonly performed activities. Unlike the lower limb, this involves the selection of the tasks believed to be the most common.

METHODS

Kinematic data were collected using four video cameras to track the movements of reflective markers attached to the upper limb and trunk. The rigid body kinematics was then analysed and the external forces and moments at the shoulder and elbow were calculated using inverse dynamics.

RESULTS

The greatest ranges of motion at the shoulder occurred during reaching and lifting tasks as did the greatest shoulder moment (14.3 Nm flexion). The greatest elbow flexion occurred while reaching the back of the head but the greatest moment (5.8 Nm) occurred while lifting a block to head height.

CONCLUSIONS

A database of ranges of motion and external forces and moments has been established to support the development of biomechanical models of the upper limb.

RELEVANCE

The development of biomechanical models to support the design of upper limb joint replacements requires detailed knowledge of the types and magnitudes of forces and moments at the joints.

摘要

目的

建立上肢运动学和动力学数据库,以支持肩部和肘部生物力学模型的开发。

设计

对10名未受损受试者进行研究,他们在进行10项不同的日常生活任务时接受观察。

背景

开发上肢生物力学模型以支持全关节置换设计需要有关常见活动的数据。与下肢不同,这涉及选择被认为最常见的任务。

方法

使用四个摄像机收集运动学数据,以跟踪附着在上肢和躯干上的反光标记的运动。然后分析刚体运动学,并使用逆动力学计算肩部和肘部的外力和力矩。

结果

肩部最大运动范围出现在伸展和举升任务中,最大肩部力矩(屈曲14.3牛米)也出现在这些任务中。最大肘部屈曲出现在触摸头部后方时,但最大力矩(5.8牛米)出现在将一个物体举到头部高度时。

结论

已建立运动范围以及外力和力矩的数据库,以支持上肢生物力学模型的开发。

相关性

开发支持上肢关节置换设计的生物力学模型需要详细了解关节处力和力矩的类型及大小。

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