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不同大小的前庭脊髓神经元在姿势静态控制中的作用。

The role of different size vestibulospinal neurons in the static control of posture.

作者信息

Pompeiano O

机构信息

Dipartimento di Fisiologia e Biochimica, Università di Pisa, Italy.

出版信息

Arch Ital Biol. 1991 Jan;129(1):21-41.

PMID:2012473
Abstract
  1. In addition to giant cells, originally described by Deiters, the lateral vestibular nucleus contains also medium- and small-size cells. The role that these neurons exert in the static control of posture has been investigated in precollicular decerebrate cats in which the resting discharge of spontaneously active vestibulospinal neurons projecting to lumbosacral segments of the spinal cord (IVS neurons) has been related to the cell size inferred on the basis of the conduction velocity of their axons. 2. In control experiments, the IVS neurons with slower axonal conduction velocity and, by inference, having thinner axons and smaller cell bodies differed from those having faster conduction velocity by displaying a higher resting discharge rate and a relatively regular interspike interval distribution, i.e. a lower coefficient of variation (CV). 3. The resting discharge of the IVS neurons, which corresponded on the average to 24.5 +/- 15.7, S.D. imp./sec, in control experiments, increased significantly to 44.1 +/- 23.8, S.D. imp./sec after ablation of the cerebellar vermis and the fastigial nuclei, leading to a great increase in postural activity, while the proportion of regularly discharging units (with the lowest CV) increased. Moreover, the negative correlation between resting discharge of all the recorded IVS neurons and the conduction velocity of the corresponding axons, which was quite slight in the experiments with the cerebellum intact, greatly increased after partial cerebellectomy. This finding was due to a prominent increase in resting discharge of the small-size IVS neurons, while the discharge of the large-size IVS neurons was, on the average, comparable to that obtained in the controls. It appears, therefore, that the cerebellum exerts a prominent tonic inhibitory influence on the small-size IVS neurons, which are thus responsible for the great increase in decerebrate rigidity after cerebellectomy. 4. The resting discharge rate of the IVS neurons was not, on the average, greatly modified after ipsilateral acute (aVN) and chronic vestibular neurectomy (cVN) with respect to the controls. However, the proportion of regularly discharging units (with the lowest CV) decreased after aVN, but increased after cVN. The relation found in control experiments, i.e. the faster the conduction velocity of VS axon the lower was the unit discharge at rest, was lost after aVN, due to a decrease in resting discharge rate of the slow neurons. The mean discharge rate of these units, however, recovered after cVN, so that the negative correlation between resting discharge rate and axonal conduction velocity was reestablished.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 除了由戴特斯最初描述的巨细胞外,外侧前庭核还包含中等大小和小尺寸的细胞。在去大脑皮层猫中研究了这些神经元在姿势静态控制中所起的作用,在这些猫中,投射到脊髓腰骶段的自发活动前庭脊髓神经元(IVS神经元)的静息放电与根据其轴突传导速度推断出的细胞大小有关。2. 在对照实验中,轴突传导速度较慢、据此推断轴突较细且细胞体较小的IVS神经元,与传导速度较快的神经元不同,其表现出较高的静息放电率和相对规则的峰间期分布,即较低的变异系数(CV)。3. 在对照实验中,IVS神经元的静息放电平均为24.5±15.7次/秒,在切除小脑蚓部和顶核后显著增加至44.1±23.8次/秒,导致姿势活动大幅增加,同时规则放电单位(CV最低)的比例增加。此外,所有记录的IVS神经元的静息放电与相应轴突传导速度之间的负相关,在小脑完整的实验中相当微弱,在部分小脑切除后大大增加。这一发现是由于小尺寸IVS神经元的静息放电显著增加,而大尺寸IVS神经元的放电平均与对照实验中的相当。因此,似乎小脑对小尺寸IVS神经元施加了显著的紧张性抑制作用,这些神经元因此导致小脑切除后去大脑强直的大幅增加。4. 与对照相比,同侧急性(aVN)和慢性前庭神经切除术(cVN)后,IVS神经元的静息放电率平均没有太大改变。然而,规则放电单位(CV最低)的比例在aVN后降低,但在cVN后增加。在对照实验中发现的关系,即VS轴突传导速度越快,单位静息放电越低,在aVN后消失,这是由于慢神经元静息放电率降低。然而,这些单位的平均放电率在cVN后恢复,因此静息放电率与轴突传导速度之间的负相关重新建立。(摘要截短于400字)

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