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兔的附属视觉系统。I. 基本视觉反应特性。

The accessory optic system of rabbit. I. Basic visual response properties.

作者信息

Soodak R E, Simpson J I

机构信息

Rockefeller University, New York 10021.

出版信息

J Neurophysiol. 1988 Dec;60(6):2037-54. doi: 10.1152/jn.1988.60.6.2037.

DOI:10.1152/jn.1988.60.6.2037
PMID:3236060
Abstract
  1. The response properties of accessory optic system (AOS) neurons were assessed using single-unit extracellular recording from each of the three AOS terminal nuclei [medial, lateral, and dorsal terminal nuclei (MTN, LTN, and DTN)] in the anesthetized rabbit. 2. AOS neurons had large, monocular (contralateral) receptive fields (tens of degrees on a side) and exhibited a pronounced selectivity to the speed and direction of movement of large, textured patterns. The greatest responses occurred at slow speeds on the order of 0.5 degrees/s. 3. MTN and LTN neurons responded best to movement in near vertical directions. However, the stimulus directions corresponding to the greatest excitation and the greatest inhibition both had a posterior component and, thus, the preferred excitatory and inhibitory directions were not opposite each other. DTN neurons responded most strongly to horizontal movement and were excited by temporal to nasal movement. 4. AOS neurons were unresponsive to natural vestibular stimulation presented as sinusoidal oscillations of the rabbit about the yaw, pitch, and roll axes. 5. The response properties of AOS neurons are remarkably similar to those of the ON, direction-selective ganglion cells of the rabbit retina, and therefore this class of ganglion cell is most likely the predominant, if not the only, direct retinal input to the AOS. The local direction-selective properties of AOS neurons can be accounted for by combining the tuning curves of ON, direction-selective ganglion cells in a simple manner. 6. The low speed preference of AOS neurons, along with their large receptive fields suggests that they are suited to complement the vestibular system in detecting self-motion.
摘要
  1. 使用细胞外单单位记录技术,在麻醉的兔子身上,对三个附属视觉系统(AOS)终末核[内侧、外侧和背侧终末核(MTN、LTN和DTN)]中的每个神经元的反应特性进行了评估。2. AOS神经元具有大的单眼(对侧)感受野(一侧达数十度),并对大的纹理图案的运动速度和方向表现出明显的选择性。最大反应出现在约0.5度/秒的低速时。3. MTN和LTN神经元对近垂直方向的运动反应最佳。然而,对应最大兴奋和最大抑制的刺激方向都有一个向后的分量,因此,首选的兴奋和抑制方向并非彼此相反。DTN神经元对水平运动反应最强烈,并被从颞侧到鼻侧的运动所兴奋。4. AOS神经元对兔子绕偏航、俯仰和滚动轴的正弦振荡形式的自然前庭刺激无反应。5. AOS神经元的反应特性与兔子视网膜上的ON方向选择性神经节细胞的反应特性非常相似,因此,这类神经节细胞很可能是AOS的主要(如果不是唯一的)直接视网膜输入。AOS神经元的局部方向选择性特性可以通过简单地组合ON方向选择性神经节细胞的调谐曲线来解释。6. AOS神经元对低速的偏好及其大的感受野表明,它们适合在检测自身运动方面补充前庭系统。

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