类似的适应行为在经肱骨截肢者和健全受试者之间

Reva E. Johnson, Konrad Paul Kording, L. Hargrove, J. Sensinger
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引用次数: 6

摘要

动力上肢假体的肌电控制困难且不精确。改善控制的一种方法是帮助截肢者开发更精确的假肢装置内部模型。这可以通过神经信号到设备运动的直观映射,提供感官反馈的方式或训练方法来促进。可以说,第一步是了解截肢是如何影响适应的。在这里,我们研究了一个简单的目标导向任务中的逐试验适应,其中包括经肱骨截肢者和健康对照。我们发现,使用残肢的截肢者、使用完整肢的截肢者和健全者的适应行为是没有区别的。经肱骨截肢者比健全人完成任务的误差更大,但可能令人惊讶的是,残肢和完整肢之间没有区别。
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Similar trial-by-trial adaptation behavior across transhumeral amputees and able-bodied subjects
EMG control of powered upper limb prostheses is difficult and imprecise. One approach for improving control is to help amputees develop more accurate internal models of their prosthetic device. This may be facilitated by an intuitive mapping of neural signals to device movement, a way of providing sensory feedback, or training methods. A first step, arguably, is to understand how an amputation affects adaptation. Here we studied trial-by-trial adaptation in a simple target-directed task with transhumeral amputees and healthy controls. We found that adaptation behavior was indistinguishable between amputees using the residual limb, amputees using the intact limb, and able-bodied subjects. Transhumeral amputees completed the task with larger errors than able-bodied subjects, but there was, perhaps surprisingly, no difference between the residual and intact limb.
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