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小脑蚓部浦肯野细胞对颈部和黄斑前庭输入的反应。

Responses of Purkinje cells of the cerebellar vermis to neck and macular vestibular inputs.

作者信息

Denoth F, Magherini P C, Pompeiano O, Stanojević M

出版信息

Pflugers Arch. 1979 Aug;381(2):87-98. doi: 10.1007/BF00582338.

Abstract
  1. The dynamic analysis of the control exerted by neck and macular vestibular receptors on the cerebellar cortex has been investigated in precollicular decerebrate cats submitted to sinusoidal rotation along the longitudinal axis of the animal at the frequency of 0.026 Hz and at peak amplitudes up to 10 degrees for the neck input and 15 degrees for the macular input. 2. Purkinje (P) cells located in the vermal cortex of the cerebellar anterior lobe, particularly in the longitudinal parasagittal zone which projects to the ipsilateral lateral vestibular nucleus (LVN), showed a sinusoidal modulation of the firing rate in response to sinusoidal stimulation of the neck receptors or the vestibular receptors, the phase of the responses being in most units related to the extreme neck or head position. Mossy fiber (MF) and/or climbing fiber (CF) responses of the same or different P-cells to the two inputs were observed. 3. The sensitivity of the MF-response of the P-cells to the neck input, elicited by sinusoidal rotation of the neck and expressed in per cent of the average firing rate per degree of neck rotation, corresponded on the average to 2.71 +/- 1.67, S.D. This value was significantly higher than that of the MF-response of the P-cells to the macular input elicited by sinusoidal tilt along the longitudinal axis of the whole animal, which correspond to 1.71 +/- 1.01, S.D. 4. Most of the MF-responses of the P-cells to the neck input were characterized by an excitation during side-down rotation of the neck and by an inhibition during side-up rotation, whereas most of the MF-responses of the P-cells to the macular input showed just the opposite behavior, being inhibited by side-down tilt of the animal and excited by side-up tilt. 5. Units which received a convergent input from both neck and macular receptors and showed an antagonistic pattern of response to the two inputs were tested during rotation of the head alone, in order to excite simultaneously the two kinds of receptors. Due to the higher sensitivity of the neck over the macular response, the magnitude of the combined response tended to be similar to the difference between the individual ones. Moreover, the phase of the resulting response was always modified with respect to that of the response to the neck input alone, and became in some instances related to velocity of neck rotation rather than to neck position. 6. These findings indicate that opposite responses to neck and macular inputs occur at corticocerebellar level. However, a final integration of the two inputs, leading to suppression of the conflicting responses, may occur either at medullary (LVN) or at spinal cord level.
摘要
  1. 研究了在延髓前脑去大脑猫中,颈部和黄斑前庭感受器对小脑皮质控制的动态分析。使动物沿纵轴以0.026Hz的频率进行正弦旋转,颈部输入的峰值幅度高达10度,黄斑输入的峰值幅度高达15度。2. 位于小脑前叶蚓部皮质,特别是投射到同侧外侧前庭核(LVN)的纵旁矢状区的浦肯野(P)细胞,在颈部感受器或前庭感受器受到正弦刺激时,其放电频率呈现正弦调制,大多数单位的反应相位与颈部或头部的极端位置有关。观察到相同或不同P细胞对两种输入的苔藓纤维(MF)和/或攀缘纤维(CF)反应。3. P细胞对颈部输入的MF反应敏感性,由颈部的正弦旋转引起,并以每度颈部旋转的平均放电频率的百分比表示,平均对应于2.71±1.67,标准差。该值显著高于P细胞对整个动物沿纵轴正弦倾斜引起的黄斑输入的MF反应值,后者对应于1.71±1.01,标准差。4. P细胞对颈部输入的大多数MF反应的特征是,颈部向下旋转时兴奋,颈部向上旋转时抑制,而P细胞对黄斑输入的大多数MF反应表现出相反的行为,动物向下倾斜时受到抑制,向上倾斜时兴奋。5. 对同时接受颈部和黄斑感受器汇聚输入并对两种输入表现出拮抗反应模式的单位,在单独旋转头部期间进行测试,以便同时激发两种感受器。由于颈部反应比黄斑反应具有更高的敏感性,联合反应的幅度往往类似于个体反应之间的差异。此外,所产生反应的相位总是相对于单独对颈部输入的反应相位发生改变,并且在某些情况下与颈部旋转速度而不是颈部位置有关。6. 这些发现表明,在皮质小脑水平上,对颈部和黄斑输入存在相反的反应。然而,两种输入的最终整合,导致冲突反应的抑制,可能发生在延髓(LVN)或脊髓水平。

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