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猫的18区和外侧上薛氏回的方向选择性动态变化

Dynamics of directional selectivity in area 18 and PMLS of the cat.

作者信息

Vajda Ildikó, Lankheet Martin J M, Borghuis Bart G, van de Grind Wim A

机构信息

Department of Functional Neurobiology and Helmholtz Institute, Utrecht University, Utrecht, The Netherlands.

出版信息

Cereb Cortex. 2004 Jul;14(7):759-67. doi: 10.1093/cercor/bhh036. Epub 2004 Apr 14.

Abstract

Visual latencies and temporal dynamics of area 18 and PMLS direction-selective complex cells were defined with a reverse correlation method. The method allowed us to analyze the time course of responses to motion steps, without confounding temporal integration effects. Several measures of response latency and direction tuning dynamics were quantified: optimal latency (OL), latency of first and last significant responses (FSR, LSR), the increase and decrease of direction sensitivity in time, and the change of direction tuning in time. FSR, OL and LSR values for PMLS and area 18 largely overlapped. The small differences in mean latencies (3-4 ms for FSR and OL and 11.9 ms for the LSR) were not statistically significant. All cells in area 18 and the vast majority of cells in PMLS showed no systematic changes in preferred direction (monophasic neurons). In PMLS 5 out of 41 cells showed a reversal of preferred direction after approximately 56 ms relative to their OL (biphasic neurons). Monophasic cells showed no systematic changes in direction tuning width during the interval from FSR to LSR. In both areas, development of direction sensitivity was significantly faster than return to the non-direction sensitive state, but no significant difference was found between the two areas. We conclude that, for the monophasic type of direction-selective complex cells, the dynamics of primary motion processing are highly comparable for area 18 and PMLS. This suggests that motion information is predominantly processed in parallel, presumably based on input from the fast conducting thalamocortical Y-pathway.

摘要

通过逆相关方法定义了18区和PMLS方向选择性复合细胞的视觉潜伏期和时间动态。该方法使我们能够分析对运动步阶的反应时间进程,而不会混淆时间整合效应。对反应潜伏期和方向调谐动态的几个指标进行了量化:最佳潜伏期(OL)、首次和末次显著反应的潜伏期(FSR、LSR)、方向敏感性随时间的增加和减少,以及方向调谐随时间的变化。PMLS和18区的FSR、OL和LSR值在很大程度上重叠。平均潜伏期的微小差异(FSR和OL为3 - 4毫秒,LSR为11.9毫秒)无统计学意义。18区的所有细胞以及PMLS中的绝大多数细胞在偏好方向上均未表现出系统性变化(单相神经元)。在PMLS中,41个细胞中有5个在相对于其OL约56毫秒后表现出偏好方向的反转(双相神经元)。单相细胞在从FSR到LSR的间隔期间方向调谐宽度没有系统性变化。在这两个区域,方向敏感性的发展明显快于恢复到非方向敏感状态,但两个区域之间未发现显著差异。我们得出结论,对于单相类型的方向选择性复合细胞,18区和PMLS的初级运动处理动态高度可比。这表明运动信息主要是并行处理的,大概是基于来自快速传导的丘脑皮质Y通路的输入。

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