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TWO TYPES OF CALCIUM RESPONSE LIMITED TO SINGLE SPINES IN CEREBELLAR PURKINJE CELLS

机译:局限性小脑浦肯野细胞中的两种类型的钙响应仅限于单峰

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Of fundamental importance in understanding neuronal function is the unambiguous determination of the smallest unit of neuronal integration. It was recently suggested that a whole dendritic branchlet, including tens of spines, acts as the fundamental unit in terms of dendritic calcium dynamics in Purkinje cells. By contrast, we demonstrate that the smallest such unit is the single spine. The results show, by two-photon excited fluorescence laser scanning microscopy, that individual spines are capable of independent calcium activation. Moreover, two distinct spine populations were distinguished by their opposite response to membrane hyperpolarization. Indeed, in a subpopulation of spines calcium entry can also occur through a pathway other than voltage-gated channels. These findings challenge the assumption of a unique parallel fiber activation mode and prompt a reevaluation of the level of functional complexity ascribed to single neurons. [References: 16]
机译:在理解神经元功能中最重要的是确定神经元整合的最小单位。最近有人提出,整个树突状小枝,包括数十个棘突,是浦肯野细胞中树突状钙动力学的基本单位。相比之下,我们证明最小的单位是单根脊柱。结果表明,通过双光子激发荧光激光扫描显微镜观察,单个刺能够独立地激活钙。而且,两个截然不同的脊椎种群对膜超极化的反应相反。实际上,在刺的亚群中,钙的进入也可以通过电压门控通道以外的途径发生。这些发现挑战了独特的平行纤维激活模式的假设,并促使重新评估归因于单个神经元的功能复杂性水平。 [参考:16]

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