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清醒猕猴(食蟹猴)顶叶岛叶前庭皮质中神经元的定位与反应

Localization and responses of neurones in the parieto-insular vestibular cortex of awake monkeys (Macaca fascicularis).

作者信息

Grüsser O J, Pause M, Schreiter U

机构信息

Department of Physiology, Freie Universität, Berlin, FRG.

出版信息

J Physiol. 1990 Nov;430:537-57. doi: 10.1113/jphysiol.1990.sp018306.

Abstract
  1. In four Java monkeys (Macaca fascicularis) 152 vestibular neurones were recorded in the parietal cortex located in the upper bank of the lateral sulcus near the posterior end of the insula. We called this region parieto-insular vestibular cortex (PIVC). PIVC extends about 6-8 mm in the anterior-posterior direction from the posterior part of the insula into the retroinsular region (stereotaxic co-ordinates: anterior 4-12 mm, lateral 16-19 mm and vertical 3-6 mm). 2. About two-thirds of the neurones recorded from this region responded to vestibular stimuli; the non-vestibular neurones responded predominantly to somatosensory stimulation of the neck and shoulder region. The PIVC area is a polysensory field, since almost all vestibular neurones were also activated by somatosensory and visual stimuli. Large-field optokinetic stimulation was the most effective visual stimulus. 3. With vestibular stimuli, responses to angular acceleration were dominant; steady tilt in darkness rarely led to any change in neuronal spontaneous activity. Of sixty-four neurones tested by rotation in more than one plane, fifty-four responded to excitation of semicircular canal receptors aroused by rotation in more than one of the three experimental planes (roll, yaw, pitch). Compared with vestibular brain stem units PIVC neurones discharged with a higher variability. 4. In the responses to horizontal rotation of the animal 38% type I, 53% type II and 9% type III units were recorded (classification according to Duensing & Schaefer, 1958). The gain measured with horizontal sinewave rotation was lower by a factor of about 4 in PIVC neurones as compared with the responses of vestibular neurones in the brain stem or thalamus (VPL). The phase response characteristics and the gain increase with increasing sinewave stimulus frequency, however, were in the same range as observed in neurones of the afferent vestibular system. 5. When the vestibular responses to sinusoidal rotation were tested in all three experimental planes (yaw, roll, pitch), the response strength as expressed by the amplitude of the peristimulus time histograms (PSTHs) differed for the three rotational planes. For different units the relative sensitivity to rotation in each of the three planes also differed. We concluded from this observation that different PIVC units had different optimum sensitivity planes for rotation with respect to the head co-ordinates, whereby all possible planes are represented.
摘要
  1. 在4只恒河猴(食蟹猴)中,在位于外侧沟上壁靠近脑岛后端的顶叶皮层记录到152个前庭神经元。我们将这个区域称为顶叶 - 脑岛前庭皮层(PIVC)。PIVC从脑岛后部向后岛叶区域在前后方向上延伸约6 - 8毫米(立体定位坐标:前4 - 12毫米,外侧16 - 19毫米,垂直3 - 6毫米)。2. 从该区域记录的神经元中约三分之二对前庭刺激有反应;非前庭神经元主要对颈部和肩部区域的体感刺激有反应。PIVC区域是一个多感觉场,因为几乎所有前庭神经元也会被体感和视觉刺激激活。大视野视动刺激是最有效的视觉刺激。3. 在前庭刺激下,对角加速度的反应占主导;黑暗中的稳定倾斜很少导致神经元自发活动的任何变化。在多个平面旋转测试的64个神经元中,54个对在三个实验平面(横滚、偏航、俯仰)中的一个以上平面旋转引起的半规管感受器兴奋有反应。与前庭脑干单位相比,PIVC神经元放电的变异性更高。4. 在对动物水平旋转的反应中,记录到38%的I型、53%的II型和9%的III型单位(根据Duensing和Schaefer,1958年的分类)。与脑干或丘脑(VPL)中的前庭神经元反应相比,PIVC神经元中水平正弦波旋转测量的增益低约4倍。然而,相位反应特性和增益随正弦波刺激频率增加而增加,与传入前庭系统神经元中观察到的范围相同。5. 当在所有三个实验平面(偏航、横滚、俯仰)中测试对正弦旋转的前庭反应时,由刺激时间直方图(PSTH)幅度表示的反应强度在三个旋转平面中有所不同。对于不同的单位,对三个平面中每个平面旋转的相对敏感性也不同。我们从这个观察结果得出结论,不同的PIVC单位相对于头部坐标对旋转有不同的最佳敏感平面,从而代表了所有可能的平面。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2983/1181752/e7160d048280/jphysiol00456-0543-a.jpg

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