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前庭眼通路的绒球调节与小脑相关可塑性:一项体外全脑研究。

Floccular modulation of vestibuloocular pathways and cerebellum-related plasticity: An in vitro whole brain study.

作者信息

Babalian A L, Vidal P P

机构信息

Laboratoire de la Neurobiologie des Réseaux Sensorimoteures, Centre National de la Recherche Scientifique, 75270 Paris Cedex 06, France.

出版信息

J Neurophysiol. 2000 Nov;84(5):2514-28. doi: 10.1152/jn.2000.84.5.2514.

Abstract

The isolated whole brain (IWB) preparation of the guinea pig was used to investigate the floccular modulation of vestibular-evoked responses in abducens and oculomotor nerves and abducens nucleus; for identification of flocculus target neurons (FTNs) in the vestibular nuclei and intracellular study of some of their physiological properties; to search for possible flocculus-dependent plasticity at the FTN level by pairing of vestibular nerve and floccular stimulations; and to study the possibility of induction of long-term depression (LTD) in Purkinje cells by paired stimulation of the inferior olive and vestibular nerve. Stimulation of the flocculus had only effects on responses evoked from the ipsilateral (with respect to the stimulated flocculus) vestibular nerve. Floccular stimulation significantly inhibited the vestibular-evoked discharges in oculomotor nerves on both sides and the inhibitory field potential in the ipsilateral abducens nucleus while the excitatory responses in the contralateral abducens nerve and nucleus were free from such inhibition. Eleven second-order vestibular neurons were found to receive a short-latency monosynaptic inhibitory input from the flocculus and were thus characterized as FTNs. Monosynaptic inhibitory postsynaptic potentials from the flocculus were bicuculline sensitive, suggesting a GABA(A)-ergic transmission from Purkinje cells to FTNs. Two of recorded FTNs could be identified as vestibulospinal neurons by their antidromic activation from the cervical segments of the spinal cord. Several pairing paradigms were investigated in which stimulation of the flocculus could precede, coincide with, or follow the vestibular nerve stimulation. None of them led to long-term modification of responses in the abducens nucleus or oculomotor nerve evoked by activation of vestibular afferents. On the other hand, pairing of the inferior olive and vestibular nerve stimulation resulted in approximately a 30% reduction of excitatory postsynaptic potentials evoked in Purkinje cells by the vestibular nerve stimulation. This reduction was pairing-specific and lasted throughout the entire recording time of the neurons. Thus in the IWB preparation, we were able to induce a LTD in Purkinje cells, but we failed to detect traces of flocculus-dependent plasticity at the level of FTNs in vestibular nuclei. Although these data cannot rule out the possibility of synaptic modifications in FTNs and/or at other brain stem sites under different experimental conditions, they are in favor of the hypothesis that the LTD in the flocculus could be the essential mechanism of cellular plasticity in the vestibuloocular pathways.

摘要

采用豚鼠离体全脑(IWB)标本,研究绒球对展神经、动眼神经及展神经核前庭诱发反应的调制作用;鉴定前庭核中的绒球靶神经元(FTN)并对其中一些神经元的生理特性进行细胞内研究;通过前庭神经和绒球刺激配对,探寻FTN水平可能存在的绒球依赖性可塑性;研究通过下橄榄核与前庭神经配对刺激诱导浦肯野细胞长时程抑制(LTD)的可能性。刺激绒球仅对同侧(相对于受刺激绒球)前庭神经诱发的反应有影响。绒球刺激显著抑制双侧动眼神经的前庭诱发放电以及同侧展神经核的抑制性场电位,而对侧展神经及展神经核的兴奋性反应则不受此抑制。发现11个二级前庭神经元接受来自绒球的短潜伏期单突触抑制性输入,因此被确定为FTN。来自绒球的单突触抑制性突触后电位对荷包牡丹碱敏感,提示从浦肯野细胞到FTN存在γ-氨基丁酸A型(GABA(A))能传递。记录到的2个FTN可通过脊髓颈段的逆向激活鉴定为前庭脊髓神经元。研究了几种配对模式,其中绒球刺激可先于、与前庭神经刺激同时或跟随前庭神经刺激。但这些模式均未导致前庭传入激活所诱发的展神经核或动眼神经反应的长期改变。另一方面,下橄榄核与前庭神经刺激配对导致前庭神经刺激诱发的浦肯野细胞兴奋性突触后电位降低约30%。这种降低具有配对特异性,并且在神经元的整个记录时间内持续存在。因此,在IWB标本中,我们能够在前庭核的FTN水平诱导浦肯野细胞出现LTD,但未能检测到绒球依赖性可塑性的痕迹。尽管这些数据不能排除在不同实验条件下FTN和/或其他脑干部位发生突触修饰的可能性,但它们支持以下假设:绒球中的LTD可能是前庭眼通路中细胞可塑性的基本机制。

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