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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Latent Factors and Dynamics in Motor Cortex and Their Application to Brain-Machine Interfaces
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Latent Factors and Dynamics in Motor Cortex and Their Application to Brain-Machine Interfaces

机译:电机皮层中的潜在因子和动力学及其在脑机接口中的应用

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摘要

In the 1960s, Evarts first recorded the activity of single neurons in motor cortex of behaving monkeys (Evarts, 1968). In the 50 years since, great effort has been devoted to understanding how single neuron activity relates to movement. Yet these single neurons exist within a vast network, the nature of which has been largely inaccessible. With advances in recording technologies, algorithms, and computational power, the ability to study these networks is increasing exponentially. Recent experimental results suggest that the dynamical properties of these networks are critical to movement planning and execution. Here we discuss this dynamical systems perspective and how it is reshaping our understanding of the motor cortices. Following an overview of key studies in motor cortex, we discuss techniques to uncover the "latent factors" underlying observed neural population activity. Finally, we discuss efforts to use these factors to improve the performance of brain-machine interfaces, promising to make these findings broadly relevant to neuroengineering as well as systems neuroscience.
机译:在20世纪60年代,Evarts首先记录了在运动猴子的运动皮层中单个神经元的活动(Evarts,1968)。在50年来以来,努力了解单一神经元活动如何与运动有何关系。然而,这些单一神经元存在于庞大的网络中,其性质在很大程度上无法进入。通过录音技术,算法和计算能力的进步,研究这些网络的能力是指数增长的。最近的实验结果表明,这些网络的动态特性对于运动规划和执行至关重要。在这里,我们讨论这种动态系统的透视图,以及如何重塑我们对电机皮质的理解。概述电机皮质中的主要研究之后,我们讨论揭示潜在观察到的神经人群活动的“潜在因子”的技术。最后,我们讨论努力利用这些因素来提高脑机接口的性能,承诺使这些调查结果与神经衰老以及系统神经科学相比。

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