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Stars and Stripes in the Cerebellar Cortex: A Voltage Sensitive Dye Study

机译:小脑皮层中的星条旗:电压敏感染料研究

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摘要

The lattice-like structure of the cerebellar cortex and its anatomical organization in two perpendicular axes provided the foundations for many theories of cerebellar function. However, the functional organization does not always match the anatomical organization. Thus direct measurement of the functional organization is central to our understanding of cerebellar processing. Here we use voltage sensitive dye imaging in the isolated cerebellar preparation to characterize the spatio-temporal organization of the climbing and mossy fiber (MF) inputs to the cerebellar cortex. Spatial and temporal parameters were used to develop reliable criteria to distinguish climbing fiber (CF) responses from MF responses. CF activation excited postsynaptic neurons along a parasagittal cortical band. These responses were composed of slow (∼25 ms), monophasic depolarizing signals. Neither the duration nor the spatial distribution of CF responses were affected by inhibition. Activation of MF generated responses that were organized in radial patches, and were composed of a fast (∼5 ms) depolarizing phase followed by a prolonged (∼100 ms) negative wave. Application of a GABAA blocker eliminated the hyperpolarizing phase and prolonged the depolarizing phase, but did not affect the spatial distribution of the response, thus suggesting that it is not the inhibitory system that is responsible for the inability of the MF input to generate beams of activity that propagate along the parallel fiber system.
机译:小脑皮层的格子状结构及其在两个垂直轴上的解剖结构为小脑功能的许多理论提供了基础。但是,功能组织并不总是与解剖组织匹配。因此,对功能组织的直接测量对于我们对小脑加工的理解至关重要。在这里,我们在孤立的小脑准备中使用电压敏感染料成像来表征小脑皮层的攀爬和苔藓纤维(MF)输入的时空组织。时空参数用于制定可靠的标准,以区分攀爬纤维(CF)响应和MF响应。 CF激活沿矢状旁皮质带激发突触后神经元。这些响应由缓慢的(〜25μms)单相去极化信号组成。 CF反应的持续时间和空间分布都不受抑制的影响。 MF的激活产生的反应呈放射状排列,并由快速(〜5µms)去极化阶段和随后的延长(〜100µms)负波组成。 GABAA阻滞剂的应用消除了超极化阶段并延长了去极化阶段,但没有影响响应的空间分布,因此表明不是抑制系统导致了MF输入无法产生活动光束。沿着平行光纤系统传播。

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