首页> 外文期刊>Journal of NeuroEngineering Rehabilitation >A real-time comparison between direct control, sequential pattern recognition control and simultaneous pattern recognition control using a Fitts’ law style assessment procedure
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A real-time comparison between direct control, sequential pattern recognition control and simultaneous pattern recognition control using a Fitts’ law style assessment procedure

机译:使用Fitts律法评估程序在直接控制,顺序模式识别控制和同时模式识别控制之间进行实时比较

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Background Pattern recognition (PR) based strategies for the control of myoelectric upper limb prostheses are generally evaluated through offline classification accuracy, which is an admittedly useful metric, but insufficient to discuss functional performance in real time. Existing functional tests are extensive to set up and most fail to provide a challenging, objective framework to assess the strategy performance in real time. Methods Nine able-bodied and two amputee subjects gave informed consent and participated in the local Institutional Review Board approved study. We designed a two-dimensional target acquisition task, based on the principles of Fitts’ law for human motor control. Subjects were prompted to steer a cursor from the screen center of into a series of subsequently appearing targets of different difficulties. Three cursor control systems were tested, corresponding to three electromyography-based prosthetic control strategies: 1) amplitude-based direct control (the clinical standard of care), 2) sequential PR control, and 3) simultaneous PR control, allowing for a concurrent activation of two degrees of freedom (DOF). We computed throughput (bits/second), path efficiency (%), reaction time (second), and overshoot (%)) and used general linear models to assess significant differences between the strategies for each metric. Results We validated the proposed methodology by achieving very high coefficients of determination for Fitts’ law. Both PR strategies significantly outperformed direct control in two-DOF targets and were more intuitive to operate. In one-DOF targets, the simultaneous approach was the least precise. The direct control was efficient in one-DOF targets but cumbersome to operate in two-DOF targets through a switch-depended sequential cursor control. Conclusions We designed a test, capable of comprehensively describing prosthetic control strategies in real time. When implemented on control subjects, the test was able to capture statistically significant differences (p?
机译:通常基于脱机分类准确性评估基于背景模式识别(PR)的肌电上肢假体控制策略,这是公认的有用指标,但不足以实时讨论功能性能。现有的功能测试需要广泛设置,并且大多数无法提供具有挑战性的客观框架来实时评估策略性能。方法9名身体健全的受试者和2名截肢者给予了知情同意,并参加了当地机构审查委员会批准的研究。我们根据Fitts人体运动控制法则的原理设计了二维目标获取任务。提示对象将光标从屏幕中心引向一系列随后出现的具有不同难度的目标。测试了三个光标控制系统,它们对应于三种基于肌电图的修复控制策略:1)基于幅度的直接控制(临床护理标准),2)顺序PR控制和3)同时PR控制,从而可以同时激活两个自由度(DOF)。我们计算了吞吐量(位/秒),路径效率(%),反应时间(秒)和超调(%)),并使用一般的线性模型来评估每个指标的策略之间的显着差异。结果我们通过获得非常高的Fitts定律确定系数来验证所提出的方法。两种PR策略均明显优于两自由度目标中的直接控制,并且操作更直观。在单自由度目标中,同步方法最不精确。直接控制在一个自由度的目标中是有效的,但是通过依赖于开关的顺序光标控制在两个自由度的目标中进行操作很麻烦。结论我们设计了一种能够实时全面描述假肢控制策略的测试。当在控制对象上实施时,在考虑通过量,路径效率和反应时间时,该测试能够捕获控制策略上的统计学显着差异(p≤0.05)。特别要注意的是,与直接控制或顺序PR相比,同时PR的吞吐量和路径效率在统计学上有显着提高(p <0.01)。截肢者可以轻松完成任务;但是,仅对有限数量的受试者进行了测试,并且未对该人群进行统计分析。

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