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Real-time control of hind limb functional electrical stimulation using feedback from dorsal root ganglia recordings

机译:利用背根神经节记录的反馈实时控制后肢功能性电刺激

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摘要

Objective. Functional electrical stimulation (FES) approaches often utilize an open-loop controller to drive state transitions. The addition of sensory feedback may allow for closed-loop control that can respond effectively to perturbations and muscle fatigue. Approach. We evaluated the use of natural sensory nerve signals obtained with penetrating microelectrode arrays in lumbar dorsal root ganglia (DRG) as real-time feedback for closed-loop control of FES-generated hind limb stepping in anesthetized cats. Main results. Leg position feedback was obtained in near real-time at 50 ms intervals by decoding the firing rates of more than 120 DRG neurons recorded simultaneously. Over 5 m of effective linear distance was traversed during closed-loop stepping trials in each of two cats. The controller compensated effectively for perturbations in the stepping path when DRG sensory feedback was provided. The presence of stimulation artifacts and the quality of DRG unit sorting did not significantly affect the accuracy of leg position feedback obtained from the linear decoding model as long as at least 20 DRG units were included in the model. Significance. This work demonstrates the feasibility and utility of closed-loop FES control based on natural neural sensors. Further work is needed to improve the controller and electrode technologies and to evaluate long-term viability.
机译:目的。功能性电刺激(FES)方法通常利用开环控制器来驱动状态转换。感觉反馈的增加可以允许闭环控制,该闭环控制可以有效地响应摄动和肌肉疲劳。方法。我们评估了在腰背根神经节(DRG)中使用穿透性微电极阵列获得的自然感觉神经信号作为实时反馈,以对麻醉猫中FES产生的后肢踩踏进行闭环控制。主要结果。通过解码同时记录的120多个DRG神经元的放电速率,以50毫秒的间隔近乎实时地获得了腿部位置反馈。在两只猫中的每只猫的闭环步进试验中,遍历了超过5 m的有效线性距离。当提供DRG感觉反馈时,控制器可有效补偿步进路径中的扰动。只要模型中至少包含20个DRG单元,刺激伪影的存在和DRG单元分类的质量就不会显着影响从线性解码模型获得的腿部位置反馈的准确性。意义。这项工作证明了基于自然神经传感器的闭环FES控制的可行性和实用性。需要进一步的工作来改善控制器和电极技术并评估长期的可行性。

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  • 来源
    《Journal of neural engineering》 |2013年第2期|21.1-21.13|共13页
  • 作者单位

    Department of Physical Medicine and Rehabilitation, University of Pittsburgh, Pittsburgh, PA, USA;

    Department of Bioengineering, University of Pittsburgh, Pittsburgh, PA, USA,Department of Bioengineering, University of Pennsylvania, Philadelphia, PA, USA;

    Department of Bioengineering, University of Pittsburgh, Pittsburgh, PA, USA;

    Department of Physical Medicine and Rehabilitation, University of Pittsburgh, Pittsburgh, PA, USA,Department of Bioengineering, University of Pittsburgh, Pittsburgh, PA, USA;

    Department of Physical Medicine and Rehabilitation, University of Pittsburgh, Pittsburgh, PA, USA,Department of Bioengineering, University of Pittsburgh, Pittsburgh, PA, USA,Department of Veterans Affairs, Pittsburgh, PA, USA;

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