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Development of a prosthesis shoulder mechanism for upper limb amputees: application of an original design methodology to optimize functionality and wearability.

作者信息

Troncossi Marco, Borghi Corrado, Chiossi Marco, Davalli Angelo, Parenti-Castelli Vincenzo

机构信息

Department of Mechanical Engineering, DIEM, University of Bologna, via Fontanelle, 40, 47100 Forlì, Italy.

出版信息

Med Biol Eng Comput. 2009 May;47(5):523-31. doi: 10.1007/s11517-009-0465-9. Epub 2009 Mar 3.

DOI:10.1007/s11517-009-0465-9
PMID:19255796
Abstract

The application of a design methodology for the determination of the optimal prosthesis architecture for a given upper limb amputee is presented in this paper along with the discussion of its results. In particular, a novel procedure was used to provide the main guidelines for the design of an actuated shoulder articulation for externally powered prostheses. The topology and the geometry of the new articulation were determined as the optimal compromise between wearability (for the ease of use and the patient's comfort) and functionality of the device (in terms of mobility, velocity, payload, etc.). This choice was based on kinematic and kinetostatic analyses of different upper limb prosthesis models and on purpose-built indices that were set up to evaluate the models from different viewpoints. Only 12 of the 31 simulated prostheses proved a sufficient level of functionality: among these, the optimal solution was an articulation having two actuated revolute joints with orthogonal axes for the elevation of the upper arm in any vertical plane and a frictional joint for the passive adjustment of the humeral intra-extra rotation. A prototype of the mechanism is at the clinical test stage.

摘要

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本文引用的文献

1
Limb amputation and limb deficiency: epidemiology and recent trends in the United States.肢体截肢与肢体缺损:美国的流行病学及近期趋势
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The development of the Edinburgh modular arm system.爱丁堡模块化手臂系统的研发
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Review of arm motion analyses.
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Analysis of arm trajectories of everyday tasks for the development of an upper-limb orthosis.用于上肢矫形器开发的日常任务手臂轨迹分析。
IEEE Trans Rehabil Eng. 2000 Mar;8(1):60-70. doi: 10.1109/86.830950.
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A list of everyday tasks for use in prosthesis design and development.
Bull Prosthet Res. 1970 Spring;10(13):135-64.
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The design of a complete arm prosthesis.
Biomed Eng. 1973 Feb;8(2):56-9.