首页> 美国卫生研究院文献>The Journal of Neuroscience >Complex Spike Activity of Purkinje Cells in the Oculomotor Vermis during Behavioral Adaptation of Monkey Saccades
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Complex Spike Activity of Purkinje Cells in the Oculomotor Vermis during Behavioral Adaptation of Monkey Saccades

机译:猴扫视行为适应过程中动眼motor中浦肯野细胞的复杂穗活动。

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摘要

Throughout life, the oculomotor system can correct itself when saccadic eye movements become inaccurate. This adaptation mechanism can be engaged in the laboratory by displacing the target when the saccade toward it is in flight. Forward and backward target displacements cause gradual increases and decreases in saccade amplitude, respectively. Equipped with this paradigm, we asked whether Purkinje cells (P-cells) in the vermis of the oculomotor cerebellum, lobules VIc and VII, changed their complex spike (CS) discharge during the behavioral adaptation of horizontal saccades. We tested the hypothesis that CS activity would change only when a targeting saccade caused an error in eye position relative to the target, i.e., during the error interval between the primary and corrective saccades. We examined only those P-cells whose simple spike activity exhibited either a burst or pause with saccades in several directions. Approximately 80% of such P-cells exhibited an increase in CS activity during the error interval when the adaptation paradigm imposed horizontal eye-position errors in one direction and a decrease in activity for errors in the other. As adaptation progressed and errors were reduced, there was no consistent change in the CS activity. These data suggest that the CS activity of P-cells in the oculomotor vermis signals the direction but not the magnitude of eye-position error during saccade adaptation. Our results are consistent with cerebellar learning models that have been proposed to explain adaptation of the vestibulo-ocular reflex so similar mechanisms may also underlie plasticity of this precision voluntary oculomotor behavior.
机译:在整个生命过程中,当眼球的眼动运动不准确时,动眼系统就可以自我矫正。通过向目标扫视时移动目标,可以使这种适应机制进入实验室。向前和向后的目标位移分别导致扫视幅度逐渐增大和减小。配备了这种范式后,我们询问在水平扫视的行为适应过程中,动眼小脑的叶,小叶VIc和VII的Purkinje细胞(P细胞)是否改变了其复杂的峰值(CS)放电。我们测试了以下假设:CS活动仅在瞄准扫视引起相对于目标的眼位置错误时,即在主扫视和矫正扫视之间的误差间隔内才会改变。我们仅检查了那些简单的尖峰活动在几个方向上都呈现出爆发性或暂停性扫视的P细胞。当适应范例在一个方向上施加水平眼位置错误而在另一个方向上的错误活动减少时,大约80%的此类P细胞在错误间隔期间显示CS活动增加。随着适应的进行和错误的减少,CS活动没有一致的变化。这些数据表明,在眼球适应过程中,动眼ver中P细胞的CS活性发出信号的方向,但不发出眼睛位置误差的大小。我们的结果与小脑学习模型相一致,小脑学习模型已被提出来解释前庭眼反射的适应性,因此类似的机制也可能是这种精确的自主动眼行为的可塑性的基础。

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