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Rapid control and feedback rates enhance neuroprosthetic control

机译:快速控制和反馈速率可增强神经修复控制

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摘要

Brain-machine interfaces (BMI) create novel sensorimotor pathways for action. Much as the sensorimotor apparatus shapes natural motor control, the BMI pathway characteristics may also influence neuroprosthetic control. Here, we explore the influence of control and feedback rates, where control rate indicates how often motor commands are sent from the brain to the prosthetic, and feedback rate indicates how often visual feedback of the prosthetic is provided to the subject. We developed a new BMI that allows arbitrarily fast control and feedback rates, and used it to dissociate the effects of each rate in two monkeys. Increasing the control rate significantly improved control even when feedback rate was unchanged. Increasing the feedback rate further facilitated control. We also show that our high-rate BMI significantly outperformed state-of-the-art methods due to higher control and feedback rates, combined with a different point process mathematical encoding model. Our BMI paradigm can dissect the contribution of different elements in the sensorimotor pathway, providing a unique tool for studying neuroprosthetic control mechanisms.
机译:脑机接口(BMI)为动作创造了新颖的感觉运动途径。感觉运动设备会影响自然运动控制,而BMI通路的特性也可能会影响神经修复控制。在这里,我们探讨了控制率和反馈率的影响,其中控制率指示从大脑向假体发送运动命令的频率,反馈率指示向对象提供假体的视觉反馈的频率。我们开发了一种新的BMI,该BMI允许任意快速地控制和反馈速率,并使用它来分离两只猴子中每个速率的影响。即使在反馈速率不变的情况下,提高控制速率也会显着改善控制。增加反馈速率进一步促进了控制。我们还表明,由于具有更高的控制和反馈率,再加上不同的点过程数学编码模型,我们的高速率BMI明显优于最新技术。我们的BMI范例可以剖析感觉运动通路中不同元素的作用,为研究神经修复控制机制提供了独特的工具。

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