首页> 美国卫生研究院文献>The Journal of Neuroscience >PMv Neuronal Firing May Be Driven by a Movement Command Trajectory within Multidimensional Gaussian Fields
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PMv Neuronal Firing May Be Driven by a Movement Command Trajectory within Multidimensional Gaussian Fields

机译:PMv神经元射击可能是由多维高斯场中的运动命令轨迹驱动的

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摘要

The premotor cortex (PM) is known to be a site of visuo-somatosensory integration for the production of movement. We sought to better understand the ventral PM (PMv) by modeling its signal encoding in greater detail. Neuronal firing data was obtained from 110 PMv neurons in two male rhesus macaques executing four reach-grasp-manipulate tasks. We found that in the large majority of neurons (∼90%) the firing patterns across the four tasks could be explained by assuming that a high-dimensional position/configuration trajectory-like signal evolving ∼250 ms before movement was encoded within a multidimensional Gaussian field (MGF). Our findings are consistent with the possibility that PMv neurons process a visually specified reference command for the intended arm/hand position trajectory with respect to a proprioceptively or visually sensed initial configuration. The estimated MGF were (hyper) disc-like, such that each neuron's firing modulated strongly only with commands that evolved along a single direction within position/configuration space. Thus, many neurons appeared to be tuned to slices of this input signal space that as a collection appeared to well cover the space. The MGF encoding models appear to be consistent with the arm-referent, bell-shaped, visual target tuning curves and target selectivity patterns observed in PMV visual-motor neurons. These findings suggest that PMv may implement a lookup table-like mechanism that helps translate intended movement trajectory into time-varying patterns of activation in motor cortex and spinal cord. MGFs provide an improved nonlinear framework for potentially decoding visually specified, intended multijoint arm/hand trajectories well in advance of movement.
机译:运动前皮层(PM)已知是产生视觉运动的视觉体感整合。我们试图通过更详细地建模其信号编码来更好地了解腹侧PM(PMv)。神经元放电数据是从两只雄性恒河猴猕猴中的110个PMv神经元获得的,这些神经元执行了四项可抓握操纵任务。我们发现,在大多数神经元(约90%)中,可以通过假设多维多维高斯编码运动之前〜250 ms进化出约250 ms的高维位置/配置轨迹样信号来解释这四个任务的触发模式。字段(MGF)。我们的发现与PMv神经元相对于本体感受或视觉感知的初始配置针对预期手臂/手位置轨迹处理视觉指定参考命令的可能性一致。估计的MGF为(超级)盘状,因此每个神经元的发射仅使用在位置/配置空间内沿单个方向演化的命令强烈调制。因此,许多神经元似乎被调谐到该输入信号空间的切片,而这些集合似乎很好地覆盖了该空间。 MGF编码模型似乎与在PMV视觉运动神经元中观察到的手臂参照,钟形视觉目标调整曲线和目标选择性模式一致。这些发现表明,PMv可以实现类似查找表的机制,该机制有助于将预期的运动轨迹转化为运动皮层和脊髓的时变激活模式。 MGF提供了一种改进的非线性框架,可以很好地在运动之前解码视觉指定的预期多关节手臂/手部轨迹。

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