肌电图技术在Myo运动控制器治疗肘关节内侧和外侧神经痛中的应用。

Q3 Biochemistry, Genetics and Molecular Biology Australasian Physical & Engineering Sciences in Medicine Pub Date : 2019-09-01 Epub Date: 2019-06-14 DOI:10.1007/s13246-019-00770-5
Adam Grabczyński, Krzysztof Szklanny, Piotr Wrzeciono
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引用次数: 6

摘要

肌电图(EMG)是一种诊断技术,允许检测由横纹肌电位变化产生的信号。该技术的应用正日益成为科学研究的热门课题。随着检索肌电数据的新设备的出现,用于各种目的的肌电数据处理的新方法正在开发。其中一个设备是Myo运动控制器,由Thalmic Labs(现为North)生产。该设备已被用于分析“网球肘”和“高尔夫肘”患者的肌肉激活水平——上肢通常由职业伤害引起。他们的康复过程是复杂的,需要不断监测其进展情况。通过Myo控制器获得的数据用于损伤手与健康手的模式识别。这项研究检查了10个受试者,包括5个对照组。结果表明,损伤个体的肌肉激活力明显降低。损伤组6个分析动作的算术平均值低38.54%。SmartEMG应用程序(https://www.smartemg.com)可以在检查过程中执行程序,也可以对收集的记录进行管理。该研究取得了满意的结果,这表明使用Myo控制器治疗肘关节神经病的可能性。
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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Applying EMG technology in medial and lateral elbow enthesopathy treatment using Myo motion controller.

Electromyography (EMG) is a diagnostic technique allowing for the detection of signals generated by changes in electrical potentials of striated muscles. The application of this technology is becoming an increasingly popular subject of scientific research. With the appearance of new devices retrieving EMG data, novel methods of its processing for various purposes are being developed. One such device is the Myo movement controller, produced by Thalmic Labs (now North). The device has been used for the analysis of muscle activation levels in patients with "tennis elbow" and "golfer's elbow"-conditions of upper limbs which usually result from occupational injuries. The process of their rehabilitation is complex and requires a continuous monitoring of its progress. The data obtained by means of the Myo controller was used for pattern recognition of an injured hand with relation to the healthy one. The study involved examining ten subjects, including five controls. The results indicate that the muscle activation force is considerably lower in injured individuals. The arithmetic mean for the 6 analyzed motions in the injured group is 38.54% lower. The SmartEMG application ( https://www.smartemg.com ) enables the implementation of procedures performed during an examination as well as those involved in the management of the collected recordings. The study produced satisfactory results, which indicates the possibility of using the Myo controller in the treatment of elbow enthesopathy.

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来源期刊
CiteScore
2.00
自引率
0.00%
发文量
0
审稿时长
6-12 weeks
期刊介绍: Australasian Physical & Engineering Sciences in Medicine (APESM) is a multidisciplinary forum for information and research on the application of physics and engineering to medicine and human physiology. APESM covers a broad range of topics that include but is not limited to: - Medical physics in radiotherapy - Medical physics in diagnostic radiology - Medical physics in nuclear medicine - Mathematical modelling applied to medicine and human biology - Clinical biomedical engineering - Feature extraction, classification of EEG, ECG, EMG, EOG, and other biomedical signals; - Medical imaging - contributions to new and improved methods; - Modelling of physiological systems - Image processing to extract information from images, e.g. fMRI, CT, etc.; - Biomechanics, especially with applications to orthopaedics. - Nanotechnology in medicine APESM offers original reviews, scientific papers, scientific notes, technical papers, educational notes, book reviews and letters to the editor. APESM is the journal of the Australasian College of Physical Scientists and Engineers in Medicine, and also the official journal of the College of Biomedical Engineers, Engineers Australia and the Asia-Oceania Federation of Organizations for Medical Physics.
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Acknowledgment of Reviewers for Volume 35 Acknowledgment of Reviewers for Volume 34 A comparison between EPSON V700 and EPSON V800 scanners for film dosimetry. Nanodosimetric understanding to the dependence of the relationship between dose-averaged lineal energy on nanoscale and LET on ion species. EPSM 2019, Engineering and Physical Sciences in Medicine : 28-30 October 2019, Perth, Australia.
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