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警觉家鸽(Columbia livia)在视动、前庭及视-前庭刺激过程中基底视根核(nBOR)的单单位活动

Single unit activity in the nucleus of the basal optic root (nBOR) during optokinetic, vestibular and visuo-vestibular stimulations in the alert pigeon (Columbia livia).

作者信息

Gioanni H, Rey J, Villalobos J, Dalbera A

出版信息

Exp Brain Res. 1984;57(1):49-60. doi: 10.1007/BF00231131.

Abstract

Extracellular recordings were performed in the nucleus of the basal optic root (nBOR) of alert pigeons during optokinetic nystagmus (OKN), vestibulo-ocular reflex (VOR) and combined visuo-vestibular stimulation. Cell identification was assessed either by histological control or by electrophysiological testing (antidromic response to vestibulo-cerebellar or oculomotor complex stimulation). 1) OKN was induced in 8 directions by a binocular stimulation. During the fast phase of OKN, optokinetic after nystagmus (OKAN) or reversed OKAN, most cells showed an inhibition which varied in magnitude independent of the direction of stimulation. A few cells however showed a phasic discharge for some OKN directions. 2) During the slow phase of OKN induced by a binocular stimulation, cells displayed either a tonic activation or a more or less strong inhibition according to the direction of the OKN. Cells were classified in 4 groups, according to their degree of directional specificity. The best OKN direction (slow phase) for maximal cell activation was upwards and naso-upwards, and next to best, naso-temporal and downwards. Maximal cell inhibition occurred during downward, and for some cells during upward, directions. 3) During OKN induced by stimulating the eye contralateral to the recorded nBOR, cell responses resembled those obtained during binocular stimulation, but, during ipsilaterally induced OKN, the cells lost their directional specificity. As a result of binocular integration, neuronal activation seems to originate from contralateral input whereas cell inhibition would mainly come from ipsilateral input. 4) During sinusoidal optokinetic stimulation induced in the temporo downward-naso upward axis, cells showed a more or less marked modulation (according to their directional selectivity) that was closely in phase with the stimulation velocity, and therefore probably with retinal slip. 5) nBOR cells appeared generally unaffected during both the slow phase and the fast phase of the VOR. However, some cells showed a slight but irregular modulation which might imply a weak vestibular input. During visuo-vestibular stimulation, the response resembled that obtained with sinusoidal optokinetic stimulation but the fast phase inhibition was often strengthened in the downwards direction (fast phase).

摘要

在警觉鸽子的基底视根核(nBOR)中,于视动性眼震(OKN)、前庭眼反射(VOR)以及视觉 - 前庭联合刺激期间进行细胞外记录。通过组织学对照或电生理测试(对前庭小脑或动眼神经复合体刺激的逆向反应)来评估细胞识别。1)通过双眼刺激在8个方向诱发OKN。在OKN的快相期间,视动性眼震后眼震(OKAN)或反向OKAN时,大多数细胞表现出抑制,其幅度变化与刺激方向无关。然而,少数细胞在某些OKN方向表现出阶段性放电。2)在双眼刺激诱发的OKN慢相期间,细胞根据OKN的方向表现出持续性激活或或多或少的强烈抑制。根据其方向特异性程度,细胞被分为4组。最大细胞激活的最佳OKN方向(慢相)是向上和鼻上方向,其次是鼻颞和向下方向。最大细胞抑制发生在向下方向,对于一些细胞在向上方向也有抑制。3)在刺激与记录nBOR对侧的眼睛诱发OKN期间,细胞反应类似于双眼刺激时获得的反应,但在同侧诱发OKN期间,细胞失去其方向特异性。由于双眼整合,神经元激活似乎源于对侧输入,而细胞抑制主要来自同侧输入。4)在颞下 - 鼻上轴诱导的正弦视动刺激期间,细胞表现出或多或少明显的调制(根据其方向选择性),与刺激速度密切同相,因此可能与视网膜滑动有关。5)nBOR细胞在VOR的慢相和快相期间通常不受影响。然而,一些细胞表现出轻微但不规则的调制,这可能意味着微弱的前庭输入。在视觉 - 前庭刺激期间,反应类似于正弦视动刺激时获得的反应,但快相抑制在向下方向(快相)经常增强。

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