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体外脑干-小脑制备中豚鼠小脑核细胞的电生理学

Electrophysiology of guinea-pig cerebellar nuclear cells in the in vitro brain stem-cerebellar preparation.

作者信息

Llinás R, Mühlethaler M

机构信息

Department of Physiology and Biophysics, New York University Medical Center, NY 10016.

出版信息

J Physiol. 1988 Oct;404:241-58. doi: 10.1113/jphysiol.1988.sp017288.

Abstract
  1. Intracellular recordings were obtained from cerebellar nuclear neurones in the isolated brain stem-cerebellar preparation of guinea-pigs in vitro. The electrical properties of the cells were quite similar to those reported in in vitro slice studies. They had an average resting potential of -56.7 +/- 1.8 mV, an input resistance of 23.8 +/- 4.9 M omega, and a time constant of 12.5 +/- 2.7 ms. The action potentials had an average amplitude of 57.3 +/- 5.28 mV (n = 20). 2. In addition to the ionic mechanisms required for the generation of the fast action potential, cerebellar nuclear neurones displayed a low-threshold Ca2+-dependent spike which produced a powerful rebound excitation following anodal break. This type of electroresponsiveness was absent in the slice preparation. 3. The anodal break response was further enhanced by the presence of a non-inactivating Na+ conductance similar to that described in Purkinje cells. 4. Following electrical stimulation of the cerebellar cortex or the underlying white matter, excitatory and inhibitory synaptic potentials (EPSP-IPSP sequences) could be recorded in cerebellar nuclear neurones. The EPSPs were elicited by direct activation of collaterals of mossy or climbing fibre afferents. The IPSPs followed direct or orthodromic Purkinje cell activation. 5. The integrity of the olivo-cerebellar system was tested by the administration of harmaline which produced powerful EPSP-IPSP sequences or pure IPSPs in cerebellar nuclear neurones. These IPSPs were often followed by a rebound firing of the cells. 6. These results indicate that the olivo-cerebellar pathway, in addition to its activation of the cerebellar cortex, exerts a powerful and complex set of synaptic events on cerebellar nuclear cells. As such it is a true afferent system, having a distinct role in cerebellar physiology.
摘要
  1. 在豚鼠离体脑干 - 小脑制备物中,从小脑核神经元获得细胞内记录。这些细胞的电特性与体外切片研究中报道的非常相似。它们的平均静息电位为 -56.7±1.8 mV,输入电阻为23.8±4.9 MΩ,时间常数为12.5±2.7 ms。动作电位的平均幅度为57.3±5.28 mV(n = 20)。2. 除了产生快速动作电位所需的离子机制外,小脑核神经元还表现出低阈值钙依赖性尖峰,在阳极断电后产生强烈的反弹兴奋。这种电反应性在切片制备中不存在。3. 类似于浦肯野细胞中描述的非失活钠电导的存在进一步增强了阳极断电反应。4. 对小脑皮质或其下方白质进行电刺激后,可在小脑核神经元中记录到兴奋性和抑制性突触电位(EPSP - IPSP序列)。EPSP由苔藓纤维或攀缘纤维传入侧支的直接激活引发。IPSP跟随浦肯野细胞的直接或顺向激活。5. 通过给予哈马灵来测试橄榄小脑系统的完整性,哈马灵在小脑核神经元中产生强烈的EPSP - IPSP序列或纯IPSP。这些IPSP之后细胞常常会出现反弹放电。6. 这些结果表明,橄榄小脑通路除了激活小脑皮质外,还对小脑核细胞施加了一系列强大而复杂的突触事件。因此,它是一个真正的传入系统,在小脑生理学中具有独特的作用。

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