首页> 外文会议>Engineering in Medicine and Biology Society, 2003. Proceedings of the 25th Annual International Conference of the IEEE >Influence of movement speed on plan activity in monkey pre-motor cortex and implications for high-performance neural prosthetic system design
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Influence of movement speed on plan activity in monkey pre-motor cortex and implications for high-performance neural prosthetic system design

机译:运动速度对猴子运动前皮质计划活动的影响及其对高性能神经修复系统设计的启示

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The success of human motor prosthetics will largely depend on increasing system performance by maximizing the movement-related information that can be recorded from cortical neurons. This will in turn depend on successfully combining information from different neurons, and across times for the same neuron. Here we investigate neural activity that occurs prior to reaching movements, and attempt to understand how this activity varies with the speed of the upcoming movement. We recorded pre-motor cortex neural activity from a rhesus monkey trained to perform delayed-reaches to targets at two different speeds. We found that movement speed information is present in action potential emission rates and 20-40 Hz local field potential power during a "plan" period preceding movement. We then further analyzed the action potential data to determine the accuracy at which trial conditions, including the speed of the upcoming movement, can be estimated from neural data. System performance is expected to increase when plan-period speed information is included in prosthetic estimation algorithms.
机译:人类运动假肢的成功将在很大程度上取决于通过最大化可从皮层神经元记录的与运动有关的信息来提高系统性能。反过来,这将取决于成功地组合来自不同神经元的信息,以及跨同一神经元的时间的信息。在这里,我们研究在达到运动之前发生的神经活动,并试图了解这种活动如何随即将发生的运动的速度而变化。我们记录了恒河猴的运动前皮质神经活动,该恒河猴经过训练可以以两种不同的速度对目标进行延迟到达。我们发现运动速度信息存在于运动之前的“计划”期间的动作电势发射率和20-40 Hz的局部场电势功率中。然后,我们进一步分析了动作电位数据,以确定可以从神经数据中估算出试验条件(包括即将发生的运动的速度)时的准确性。当计划周期速度信息包含在假体估计算法中时,系统性能有望提高。

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