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首页> 外文期刊>Neuron >Flexible Sensorimotor Computations through Rapid Reconfiguration of Cortical Dynamics
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Flexible Sensorimotor Computations through Rapid Reconfiguration of Cortical Dynamics

机译:灵活的传感器计算通过快速重新配置皮质动态

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摘要

Neural mechanisms that support flexible sensorimotor computations are not well understood. In a dynamical system whose state is determined by interactions among neurons, computations can be rapidly reconfigured by controlling the system’s inputs and initial conditions. To investigate whether the brain employs such control mechanisms, we recorded from the dorsomedial frontal cortex of monkeys trained to measure and produce time intervals in two sensorimotor contexts. The geometry of neural trajectories during the production epoch was consistent with a mechanism wherein the measured interval and sensorimotor context exerted control over cortical dynamics by adjusting the system’s initial condition and input, respectively. These adjustments, in turn, set the speed at which activity evolved in the production epoch, allowing the animal to flexibly produce different time intervals. These results provide evidence that the language of dynamical systems can be used to parsimoniously link brain activity to sensorimotor computations.
机译:支持柔性感觉电气计算的神经机制并不了解。在通过神经元之间的相互作用确定状态的动态系统中,可以通过控制系统的输入和初始条件来快速重新配置计算。为了调查大脑是否采用此类控制机制,我们从训练训练的猴子的背部正面皮质中记录,以便在两个感觉电流体上下文中测量和产生时间间隔。在生产时期期间神经轨迹的几何形状与一种机制一致,其中测量的间隔和传感器上下文通过分别调整系统的初始条件和输入来施加对皮质动力学的控制。这些调整又设置了在生产时期在生产时期发展的活动的速度,使得动物灵活地产生不同的时间间隔。这些结果提供了一种证据表明,动态系统的语言可用于将大脑活动扩展到传感器计算。

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