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摆锤试验评估痉挛的客观性:实施方法和结果测量的系统评价。

Objective assessment of spasticity by pendulum test: a systematic review on methods of implementation and outcome measures.

机构信息

Department of Electrical Engineering, Faculty of Engineering, University of Bonab, 5551761167, Bonab, East Azerbaijan, Iran.

Department of Electronics, Faculty of Electrical and Computer Engineering, University of Tabriz, Tabriz, Iran.

出版信息

Biomed Eng Online. 2020 Nov 9;19(1):82. doi: 10.1186/s12938-020-00826-8.

Abstract

BACKGROUND

Instrumented pendulum test is an objective and repeatable biomechanical method of assessment for spasticity. However, multitude of sensor technologies and plenty of suggested outcome measures, confuse those interested in implementing this method in practice. Lack of a standard agreement on the definition of experimental setup and outcome measures adds to this ambiguity and causes the results of one study not to be directly attainable by a group that uses a different setup. In this systematic review of studies, we aim to reduce the confusion by providing pros and cons of the available choices, and also by standardizing the definitions.

METHODS

A literature search was conducted for the period of 1950 to the end of 2019 on PubMed, Science Direct, Google Scholar and IEEE explore; with keywords of "pendulum test" and "Spasticity".

RESULTS

Twenty-eight studies with instrumented pendulum test for assessment of spasticity met the inclusion criteria. All the suggested methods of implementation were compared and advantages and disadvantages were provided for each sensor technology. An exhaustive list categorized outcome measures in three groups of angle-based, angular velocity-based, and angular acceleration-based measures with all different names and definitions.

CONCLUSIONS

With the aim of providing standardized methodology with replicable and comparable results, sources of dissimilarity and ambiguity among research strategies were found and explained with the help of graphical representation of pendulum movement stages and corresponding parameters on the angular waveforms. We hope using the provided tables simplify the choices when implementing pendulum test for spasticity evaluation, improve the consistency when reporting the results, and disambiguate inconsistency in the literature.

摘要

背景

仪器摆锤试验是一种客观且可重复的痉挛评估生物力学方法。然而,众多的传感器技术和大量的建议的测量指标使得那些有兴趣在实践中应用这种方法的人感到困惑。缺乏对实验设置和测量指标的定义的标准协议增加了这种模糊性,并导致使用不同设置的研究小组无法直接获得一项研究的结果。在这项对研究的系统回顾中,我们旨在通过提供可用选择的优缺点,并通过标准化定义来减少混淆。

方法

在 PubMed、Science Direct、Google Scholar 和 IEEE explore 上对 1950 年至 2019 年底的文献进行了搜索,关键词为“pendulum test”和“Spasticity”。

结果

有 28 项使用仪器摆锤试验评估痉挛的研究符合纳入标准。比较了所有建议的实施方法,并为每种传感器技术提供了优缺点。一份详尽的清单将测量指标分为基于角度、基于角速度和基于角加速度的三组,具有所有不同的名称和定义。

结论

为了提供具有可复制和可比结果的标准化方法,我们发现了研究策略之间的差异和模糊性的来源,并通过摆锤运动阶段和相应的角波图形表示参数的图形表示来解释这些来源。我们希望提供的表格简化了在实施摆锤试验评估痉挛时的选择,提高了报告结果的一致性,并消除了文献中的不一致性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3630/7653760/d0ea403fd2d5/12938_2020_826_Fig1_HTML.jpg

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