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Coding of position by simultaneously recorded sensory neurones in the cat dorsal root ganglion

机译:通过猫背根神经节中同时记录的感觉神经元对位置进行编码

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摘要

Muscle, cutaneous and joint afferents continuously signal information about the position and movement of individual joints. How does the nervous system extract more global information, for example about the position of the foot in space? To study this question we used microelectrode arrays to record impulses simultaneously from up to 100 discriminable nerve cells in the L6 and L7 dorsal root ganglia (DRG) of the anaesthetized cat. When the hindlimb was displaced passively with a random trajectory, the firing rate of the neurones could be predicted from a linear sum of positions and velocities in Cartesian (x, y), polar or joint angular coordinates. The process could also be reversed to predict the kinematics of the limb from the firing rates of the neurones with an accuracy of 1–2 cm. Predictions of position and velocity could be combined to give an improved fit to limb position. Decoders trained using random movements successfully predicted cyclic movements and movements in which the limb was displaced from a central point to various positions in the periphery. A small number of highly informative neurones (6–8) could account for over 80% of the variance in position and a similar result was obtained in a realistic limb model. In conclusion, this work illustrates how populations of sensory receptors may encode a sense of limb position and how the firing of even a small number of neurones can be used to decode the position of the limb in space.
机译:肌肉,皮肤和关节传入持续不断地发出有关各个关节的位置和运动的信息。神经系统如何提取更多的全局信息,例如关于脚在太空中的位置?为了研究这个问题,我们使用微电极阵列同时记录了麻醉猫的L6和L7背根神经节(DRG)中多达100个可区分的神经细胞的脉冲。当后肢以随机轨迹被动移动时,可以根据笛卡尔坐标系(x,y),极坐标或关节角坐标中位置和速度的线性总和来预测神经元的放电速率。该过程也可以颠倒过来,根据神经元的发射速率来预测肢体的运动学,准确度为1-2 cm。可以将位置和速度的预测结合起来,以更好地适应肢体位置。使用随机运动训练的解码器成功地预测了循环运动以及肢体从中心点移至外围的各个位置的运动。少数高度信息丰富的神经元(6-8)可能占姿势差异的80%以上,并且在逼真的肢体模型中也获得了类似的结果。总之,这项工作说明了感觉感受器群体如何可以编码肢体位置感,以及如何发射少量神经元来解码肢体在空间中的位置。

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