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猫外侧后丘脑-丘脑枕复合体纹状接受区细胞的单眼和双眼反应特性

Monocular and binocular response properties of cells in the striate-recipient zone of the cat's lateral posterior-pulvinar complex.

作者信息

Casanova C, Freeman R D, Nordmann J P

机构信息

Group in Neurobiology, School of Optometry, University of California, Berkeley 94720.

出版信息

J Neurophysiol. 1989 Aug;62(2):544-57. doi: 10.1152/jn.1989.62.2.544.

DOI:10.1152/jn.1989.62.2.544
PMID:2769346
Abstract
  1. We have studied response properties of single cells in the striate-recipient zone of the cat's lateral posterior-pulvinar (LP-P) complex. This zone is in the lateral section of the lateral posterior nucleus (LP1). Our purpose was to determine basic response characteristics of these cells and to investigate the possibility that the LP-P complex is a center of integration that is dominated by input from visual cortex. 2. The majority (72%) of cells in the striate-recipient zone respond to drifting sinusoidal gratings with unmodulated discharge. 3. Cells in the LP1 are selective to the orientation of gratings, and tuning functions have a mean bandwidth of 31 degrees. More than one-half of these units are direction-selective. The preferred orientation and the tuning widths for the two eyes are generally well matched. However, a few cells exhibited the interesting property of opposite preferred directions for the two eyes. Orientation tuning for a small group of cells was different for the mean discharge and first harmonic components, suggesting a convergence from different inputs to these cells. 4. Two-thirds of LP1 cells are tuned to low spatial frequencies (less than 0.5 c/deg). The tuning is broad with a mean bandwidth of 2.2 octaves. The remaining one-third of the units are low-pass because they show no attenuation of their responses to low spatial frequencies. Both eyes exhibit the same spatial frequency preference and the same spatial frequency tuning. There is a high correlation between spatial frequency and orientation selectivities. 5. All cells tested are tuned for temporal frequency with a sharp attenuation for low frequencies. The optimal values range between 4 and 8 Hz, and the mean bandwidth is 2.2 octaves. 6. Cells in LP1 are mostly binocular. When monocular, cells are almost always contralaterally driven. Dichoptic presentation of gratings reveals the presence of strong binocular interaction. In almost all cases, these interactions are phase specific. The cell's discharge is facilitated at particular phases and inhibited at phases 180 degrees away. These binocular interactions are orientation dependent. 7. Twenty-five percent of the cells with phase-specific binocular facilitation appear to be monocular when each eye is tested separately. For three cells, we observed a non-phase-specific inhibitory effect of the silent eye. 8. Our findings indicate that LP1 cells form a relatively homogeneous group, suggesting a high degree of integration of multiple cortical inputs.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 我们研究了猫外侧后核 - 丘脑枕(LP - P)复合体的纹状区接受区单个细胞的反应特性。该区域位于外侧后核(LP1)的外侧部分。我们的目的是确定这些细胞的基本反应特征,并研究LP - P复合体是否是一个由视觉皮层输入主导的整合中心。2. 纹状区接受区的大多数细胞(72%)对漂移的正弦光栅以无调制放电做出反应。3. LP1中的细胞对光栅方向具有选择性,调谐函数的平均带宽为31度。这些细胞中超过一半具有方向选择性。两只眼睛的偏好方向和调谐宽度通常匹配良好。然而,少数细胞表现出有趣的特性,即两只眼睛的偏好方向相反。一小部分细胞的平均放电和一次谐波分量的方向调谐不同,这表明这些细胞有来自不同输入的汇聚。4. 三分之二的LP1细胞调谐到低空间频率(小于0.5周/度)。调谐范围很宽,平均带宽为2.2倍频程。其余三分之一的细胞是低通的,因为它们对低空间频率的反应没有衰减。两只眼睛表现出相同的空间频率偏好和相同的空间频率调谐。空间频率和方向选择性之间存在高度相关性。5. 所有测试的细胞都对时间频率进行调谐,对低频有明显衰减。最佳值在4至8赫兹之间,平均带宽为2.2倍频程。6. LP1中的细胞大多是双眼的。当单眼时,细胞几乎总是由对侧驱动。双眼分别呈现光栅揭示了强烈的双眼相互作用的存在。在几乎所有情况下,这些相互作用是相位特异性的。细胞在特定相位放电增强,在相差180度的相位放电受到抑制。这些双眼相互作用是方向依赖性的。7. 当分别测试每只眼睛时,25%具有相位特异性双眼增强作用的细胞似乎是单眼的。对于三个细胞,我们观察到静息眼的非相位特异性抑制作用。8. 我们的研究结果表明,LP1细胞形成了一个相对同质的群体,这表明多个皮层输入有高度的整合。(摘要截选至400字)

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