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首页> 外文期刊>Journal of prosthetics and orthotics: JPO >uscle Activation Patterns of the Forearm: High-Density Electromyography Data of Normally Limbed and Transradial Amputee Subjects
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uscle Activation Patterns of the Forearm: High-Density Electromyography Data of Normally Limbed and Transradial Amputee Subjects

机译:前臂的肌肉激活模式:正常肢体和Trans动脉截肢者的高密度肌电图数据

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摘要

For many years, myoelectric prostheses have been accepted by upper limb amputees. Multifunction pattern recognition has been used successfully to develop myoelectric-controlled limbs; however, much of this research has used normally limbed subjects as they are capable of producing distinguishable muscle activation patterns for different movements. Surprisingly, there has been limited research using clinical populations to test advanced devices and control systems. One reason for the lack of studies with amputees is the limited data regarding their ability to produce repeatable muscle activation patterns. Although it would be expected that these patterns would differ between amputees and normally limbed individuals, it is worthwhile to determine whether amputees can produce repeatable muscle patterns. Therefore, the purpose of this study was to look for distinct and repeatable muscle activation patterns (required for pattern recognition myoelectric control) using amputee subjects. A high-density electromyography system was used to investigate muscle activation patterns during wrist and hand motions. Subjects performed repetitions of different movements, so that intertrial and intermovement electromyography activity comparison could be completed within subject. Topographical (energy maps), classification accuracies, and a separability index were used to determine the discriminate power of the movements performed. It was found that amputee subjects are able to elicit distinct and repeatable patterns for at least a subset of the movements, suggesting promise for amputee control of multifunction myoelectric prostheses.
机译:多年来,肌电假体已被上肢截肢者接受。多功能模式识别已成功用于开发肌电控制的肢体。然而,许多研究使用了正常肢体对象,因为他们能够针对不同的运动产生明显的肌肉激活模式。令人惊讶的是,使用临床人群来测试先进设备和控制系统的研究有限。缺乏对截肢者进行研究的原因之一是关于其产生可重复的肌肉激活模式的能力的数据有限。尽管可以预期,截肢者和正常肢体个体的这些模式会有所不同,但是值得确定截肢者是否可以产生可重复的肌肉模式。因此,本研究的目的是寻找使用截肢者的独特且可重复的肌肉激活模式(模式识别肌电控制所必需)。高密度肌电图系统用于研究手腕和手部运动期间的肌肉激活模式。受试者执行不同动作的重复,从而可以在受试者内完成心房间和肌间肌电图活动比较。地形图(能量图),分类精度和可分离性指数用于确定所执行运动的区分力。发现被截肢者对象能够为至少一部分运动引出不同且可重复的模式,这暗示了对截肢者控制多功能肌电假体的希望。

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