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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Distributed and partially separate pools of neurons are correlated with two different components of the gill-withdrawal reflex in Aplysia.
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Distributed and partially separate pools of neurons are correlated with two different components of the gill-withdrawal reflex in Aplysia.

机译:分布和部分分离的神经元池与海Ap中g退出反射的两个不同成分相关。

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摘要

We compared the spike activity of individual neurons in the Aplysia abdominal ganglion with the movement of the gill during the gill-withdrawal reflex. We discriminated four populations that collectively encompass approximately half of the active neurons in the ganglion: (1) second-order sensory neurons that respond to the onset and offset of stimulation of the gill and are active before the movement starts; (2) neurons whose activity is correlated with the position of the gill and typically have a tonic output during gill withdrawal; (3) neurons whose activity is correlated with the velocity of the movement and typically fire in a phasic manner; and (4) neurons whose activity is correlated with both position and velocity. A reliable prediction of the position of the gill is achieved only with the combined output of 15-20 neurons, whereas a reliable prediction of the velocity depends on the combined output of 40 or more cells.
机译:我们将海Ap腹部神经节中单个神经元的突波活动与g退出反射期间the的运动进行了比较。我们区分了四个群体,这些群体共同包含了神经节中大约一半的活动神经元:(1)对order刺激的发作和偏移有反应并在运动开始之前活跃的二阶感觉神经元; (2)神经元,其活动与the的位置相关,并且在withdrawal退出期间通常具有补品输出; (3)神经元,其活动与运动的速度相关,并且通常以阶段性方式发射; (4)神经元的活动与位置和速度相关。仅通过15-20个神经元的组合输出才能实现对ill位置的可靠预测,而速度的可靠预测取决于40个或更多细胞的组合输出。

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