首页> 外文期刊>The Journal of Physiology >Encoding of whisker input by cerebellar Purkinje cells.
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Encoding of whisker input by cerebellar Purkinje cells.

机译:小脑浦肯野细胞晶须输入的编码。

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The cerebellar cortex is crucial for sensorimotor integration. Sensorimotor inputs converge on cerebellar Purkinje cells via two afferent pathways: the climbing fibre pathway triggering complex spikes, and the mossy fibre-parallel fibre pathway, modulating the simple spike activities of Purkinje cells. We used, for the first time, the mouse whisker system as a model system to study the encoding of somatosensory input by Purkinje cells.We show that most Purkinje cells in ipsilateral crus 1 and crus 2 of awake mice respond to whisker stimulation with complex spike and/or simple spike responses. Single-whisker stimulation in anaesthetised mice revealed that the receptive fields of complex spike and simple spike responses were strikingly different. Complex spike responses, which proved to be sensitive to the amplitude, speed and direction of whisker movement, were evoked by only one or a few whiskers. Simple spike responses, which were not affected by the direction of movement, could be evoked by many individual whiskers. The receptive fields of Purkinje cells were largely intermingled, and we suggest that this facilitates the rapid integration of sensory inputs from different sources. Furthermore, we describe that individual Purkinje cells, at least under anaesthesia, may be bound in two functional ensembles based on the receptive fields and the synchrony of the complex spike and simple spike responses. The 'complex spike ensembles' were oriented in the sagittal plane, following the anatomical organization of the climbing fibres, while the 'simple spike ensembles' were oriented in the transversal plane, as are the beams of parallel fibres.
机译:小脑皮层对于感觉运动整合至关重要。感觉运动输入通过两个传入途径在小脑浦肯野细胞上汇聚:攀升的纤维途径触发复杂的峰,而苔藓纤维平行的纤维途径调节浦肯野细胞的简单穗期活动。我们首次使用小鼠晶须系统作为模型系统来研究浦肯野细胞的体感输入编码。我们显示,清醒小鼠同侧1和2的大多数浦肯野细胞对晶须刺激具有复杂的尖峰响应和/或简单的尖峰响应。麻醉小鼠的单晶须刺激显示,复杂的尖峰和简单的尖峰响应的接受场显着不同。事实证明,复杂的尖峰响应对晶须运动的幅度,速度和方向很敏感,仅由一个或几个晶须引起。不受单个运动方向影响的简单尖峰响应可以由许多单独的晶须引起。浦肯野细胞的感受野在很大程度上交织在一起,我们建议这有助于快速整合来自不同来源的感觉输入。此外,我们描述了至少在麻醉下,单个的浦肯野细胞可能会基于感受力场以及复杂尖峰和简单尖峰响应的同步性而结合在两个功能性集合中。遵循攀爬纤维的解剖结构,“复杂的穗状集合”沿矢状面定向,而“简单的穗状集合”沿平行纤维束定向于横向平面。

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