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猫小脑绒球中小脑浦肯野细胞对视网膜图像运动的攀爬纤维反应。

Climbing fiber responses of Purkinje cells to retinal image movement in cat cerebellar flocculus.

作者信息

Fushiki H, Sato Y, Miura A, Kawasaki T

机构信息

Department of Physiology, Faculty of Medicine, Toyama Medical and Pharmaceutical University, Japan.

出版信息

J Neurophysiol. 1994 Apr;71(4):1336-50. doi: 10.1152/jn.1994.71.4.1336.

Abstract
  1. The complex spike (CS) of the floccular Purkinje cell has been reported to be driven by retinal image movement in the rabbit, the rat, and the monkey, but not yet in the cat, in which the floccular neuronal network is well known. We recorded the CS activity together with concomitant simple spike (SS) activity of the floccular Purkinje cells that responded to large-field visual pattern movement in the anesthetized cat. 2. On the basis of the direction selectivity we divided the cells into two major types: the horizontal type that preferred horizontal stimuli and the vertical type that preferred vertical stimuli. The CS activity of the horizontal-type cell increased during stimuli directed contralaterally to the recording site and decreased during ipsilaterally directed stimuli, whereas that of the vertical-type cell increased during upward stimuli and decreased during downward stimuli. 3. In both types the CS response was larger at lower-velocity stimuli and the response was well maintained at higher-velocity stimuli < or = 180 degrees/s tested. The mean response decline was only 50% at stimulus velocities 90-150 degrees/s compared with the response amplitude at 2 degrees/s stimulus velocity. 4. The majority of the horizontal-type cells were modulated by the stimuli presented to either eye and the dominant eye was ipsilateral to the recording site. The majority of the vertical-type cells were also modulated by the stimuli presented to either eye without obvious differences between two eyes. 5. In both types the receptive field of the ipsilateral eye always included the area centralis and extended widely on both visual hemifields. The receptive field of the contralateral eye also included the area centralis and was usually restricted within the ipsilateral visual hemifield. The stimuli of small visual field (15 degrees x 15 degrees) projecting to the area centralis evoked especially large responses (70% of the full-screen response). 6. The CS and SS responses were reciprocal to each other, that is, when the CS firing increased the SS firing decreased and vice versa. 7. These CS responses are well suited for the direction detection of large-field retinal image motion at a wide velocity range. In light of the present unitary spike data together with the anatomic and eye movement data reported previously, we conclude that the cat flocculus is responsible for reduction of the large-field retinal image motion by producing eye movement in the same direction with the visual motion.
摘要
  1. 据报道,兔、大鼠和猴的绒球浦肯野细胞的复合峰电位(CS)由视网膜图像运动驱动,但在猫中尚未得到证实,而猫的绒球神经元网络是广为人知的。我们记录了麻醉猫中对大视野视觉模式运动有反应的绒球浦肯野细胞的CS活动以及伴随的简单峰电位(SS)活动。2. 根据方向选择性,我们将细胞分为两种主要类型:偏好水平刺激的水平型和偏好垂直刺激的垂直型。水平型细胞的CS活动在刺激方向与记录部位对侧时增加,在同侧方向刺激时减少,而垂直型细胞的CS活动在向上刺激时增加,在向下刺激时减少。3. 在两种类型中,CS反应在较低速度刺激时更大,并且在测试的较高速度刺激(≤180度/秒)时反应保持良好。与2度/秒刺激速度下的反应幅度相比,在90 - 150度/秒的刺激速度下,平均反应下降仅为50%。4. 大多数水平型细胞受到呈现给任何一只眼睛的刺激的调制,优势眼与记录部位同侧。大多数垂直型细胞也受到呈现给任何一只眼睛的刺激的调制,两只眼睛之间没有明显差异。5. 在两种类型中,同侧眼的感受野总是包括中央凹区域,并在两个视觉半视野上广泛延伸。对侧眼的感受野也包括中央凹区域,并且通常限制在同侧视觉半视野内。投射到中央凹区域的小视野(15度×15度)刺激尤其能诱发大反应(全屏反应的70%)。6. CS和SS反应相互拮抗,即当CS放电增加时SS放电减少,反之亦然。7. 这些CS反应非常适合在宽速度范围内检测大视野视网膜图像运动的方向。根据目前的单个峰电位数据以及先前报道的解剖学和眼球运动数据,我们得出结论,猫的绒球通过产生与视觉运动方向相同的眼球运动来负责减少大视野视网膜图像运动。

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