Designs of Upper Limb Tremor Suppression Orthoses: Efficacy and Wearer's Comfort.

IF 0.8 4区 医学 Q4 ENGINEERING, BIOMEDICAL
MoYan ChiGan, Manlong Chen, Min Jing
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引用次数: 0

Abstract

Tremor is a rhythmic, involuntary oscillatory movement that severely affects some aspects of a patient's daily life. The use of wearable tremor-suppressing orthoses has become an effective, noninvasive treatment method for controlling tremors. This article summarizes recent developments in upper limb tremor suppression orthoses, aiming to provide a foundation for future research. By analyzing the working mechanisms, degrees-of-freedom (DOFs), weight, and tremor suppression effectiveness of various types of orthoses, the following conclusions are drawn: We found that differences in the working mechanism and the number of suppression directions are related to the weight of the device; weight, in turn, is a major factor affecting the comfort of the orthoses; and the combination of the number and weight of the damping direction affects the effect of the damping equipment. Balancing these three factors should be a key focus of future research. Moreover, researchers are placing greater emphasis on the comfort of the wearer during the development of these orthoses.

上肢震颤抑制矫形器的设计:功效和佩戴者的舒适度。
震颤是一种有节奏的、不自主的振荡运动,严重影响患者日常生活的某些方面。使用可穿戴的震颤抑制矫形器已经成为一种有效的、无创的治疗方法来控制震颤。本文综述了近年来上肢震颤抑制矫形器的研究进展,旨在为今后的研究提供基础。通过对不同类型矫形器的工作机理、自由度、重量和抑颤效果的分析,得出以下结论:我们发现,工作机理和抑颤方向数量的差异与装置重量有关;反过来,体重是影响矫形器舒适度的主要因素;并且减震方向的数量和权重的组合影响减震设备的效果。平衡这三个因素应该是未来研究的重点。此外,在这些矫形器的开发过程中,研究人员更加重视佩戴者的舒适度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.80
自引率
11.10%
发文量
56
审稿时长
6-12 weeks
期刊介绍: The Journal of Medical Devices presents papers on medical devices that improve diagnostic, interventional and therapeutic treatments focusing on applied research and the development of new medical devices or instrumentation. It provides special coverage of novel devices that allow new surgical strategies, new methods of drug delivery, or possible reductions in the complexity, cost, or adverse results of health care. The Design Innovation category features papers focusing on novel devices, including papers with limited clinical or engineering results. The Medical Device News section provides coverage of advances, trends, and events.
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