首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Sensitivity analysis of a novel five-degrees-of-freedom user command controller in people with spinal cord injury and non-injured for full upper extremity neuroprosthesis, wearable powered orthoses and prosthetics
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Sensitivity analysis of a novel five-degrees-of-freedom user command controller in people with spinal cord injury and non-injured for full upper extremity neuroprosthesis, wearable powered orthoses and prosthetics

机译:新型五自由度用户命令控制器在脊髓损伤且完全上肢神经假肢,可穿戴动力矫形器和假肢未受伤的人中的敏感性分析

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摘要

Sensitivity analysis for a user command controller monitoring head position for artificial control of the proximal upper limb was performed. The controller was evaluated by having subjects complete target matching tasks manipulating a simulated on-screen hand representation to investigate the effects of target location and target speed on performance. Sixteen subjects took part in the study, 11 of whom had sustained cervical spinal cord injuries. The subjects were able to control the on-screen hand with overall low sensitivity of performance with the controller to target position in its five-degrees-of-freedom. The optimal speed was found to be a compromise between low speed and high accuracy but longer completion time and fast speed for short completion time with lower accuracy. The results demonstrated the robustness of the controller across a population of non-injured subjects and those with tetraplegia.
机译:进行了用户命令控制器监视头部位置以对上肢近端进行人工控制的敏感性分析。通过让受试者完成目标匹配任务并操纵模拟的屏幕上手部表现来研究目标位置和目标速度对性能的影响,从而对控制器进行了评估。 16名受试者参加了研究,其中11名受到了颈脊髓损伤。受试者能够通过控制器以其五自由度的目标位置来控制屏幕上的手,但总体上对性能的敏感性较低。发现最佳速度是低速和高精度之间的折衷,但是较长的完成时间和较快的速度对于较短的完成时间具有较低的精度。结果证明了控制器在非受伤受试者和四肢瘫痪患者中的鲁棒性。

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