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Silencing Top-Down Cortical Signals Affects Spike-Responses of Neurons in Cat’s Intermediate Visual Cortex

机译:沉默自上而下的皮质信号会影响猫的中级视觉皮层中神经元的突波反应

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摘要

We examined the effects of reversible inactivation of a higher-order, pattern/form-processing, postero-temporal visual (PTV) cortex on the background activities and spike-responses of single neurons in the ipsilateral cytoarchitectonic area 19 (putative area V3) of anesthetized domestic cats. Very occasionally (2/28), silencing recurrent “feedback” signals from PTV, resulted in significant and reversible reduction in background activity of area 19 neurons. By contrast, in large proportions of area 19 neurons, PTV inactivation resulted in: (i) significant reversible changes in the peak magnitude of their responses to visual stimuli (35.5%; 10/28); (ii) substantial reversible changes in direction selectivity indices (DSIs; 43%; 12/28); and (iii) reversible, upward shifts in preferred stimulus velocities (37%; 7/19). Substantial (≥20°) shifts in preferred orientation and/or substantial (≥20°) changes in width of orientation-tuning curves of area 19 neurons were however less common (26.5%; 4/15). In a series of experiments conducted earlier, inactivation of PTV also induced upward shifts in the preferred velocities of the ipsilateral cytoarchitectonic area 17 (V1) neurons responding optimally at low velocities. These upward shifts in preferred velocities of areas 19 and 17 neurons were often accompanied by substantial increases in DSIs. Thus, in both the primary visual cortex and the “intermediate” visual cortex (area 19), feedback from PTV plays a modulatory role in relation to stimulus velocity preferences and/or direction selectivity, that is, the properties which are usually believed to be determined by the inputs from the dorsal thalamus and/or feedforward inputs from the primary visual cortices. The apparent specialization of area 19 for processing information about stationary/slowly moving visual stimuli is at least partially determined, by the feedback from the higher-order pattern-processing visual area. Overall, the recurrent signals from the higher-order, pattern/form-processing visual cortex appear to play an important role in determining the magnitude of spike-responses and some “motion-related” receptive field properties of a substantial proportion of neurons in the intermediate form-processing visual area—area 19.
机译:我们检查了可逆失活的高阶,模式/形式处理,后颞视觉(PTV)皮质对背景活动和单个神经元的同侧细胞建筑区域19(假定区域V3)的峰值反应的影响。麻醉的家猫。偶尔(2/28),来自PTV的复发性“反馈”信号沉默,导致19区神经元的本底活动显着且可逆地减少。相比之下,在大部分19区神经元中,PTV失活导致:(i)其对视觉刺激的反应峰值幅度发生显着的可逆变化(35.5%; 10/28); (ii)方向选择性指数(DSI; 43%; 12/28)的可逆变化很大; (iii)偏好刺激速度的可逆向上移动(37%; 7/19)。然而,区域19个神经元的定向方向发生了实质性变化(≥20°)和/或方向调整曲线的宽度发生了实质性变化(≥20°)不太普遍(26.5%; 4/15)。在较早进行的一系列实验中,PTV的失活也诱导了同侧细胞构建区17(V1)神经元在低速时反应最佳的优选速度向上移动。这些区域19和17神经元的首选速度的向上变化通常伴随着DSI的大幅增加。因此,在初级视觉皮层和“中级”视觉皮层(区域19)中,来自PTV的反馈均与刺激速度偏好和/或方向选择性(即通常被认为是由来自丘脑背侧的输入和/或来自初级视皮层的前馈输入确定。至少部分地通过来自高阶图案处理视觉区域的反馈来确定用于处理关于静止/缓慢运动的视觉刺激的信息的区域19的明显专业化。总体而言,来自高阶,经过模式/形式处理的视觉皮层的递归信号似乎在确定尖峰反应的幅度和神经元中大部分神经元的某些“运动相关”感受野特性方面起着重要作用。中间表单处理视觉区域-区域19。

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