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成年视觉皮层中的感受野扩展与皮层连接强度的动态变化有关。

Receptive field expansion in adult visual cortex is linked to dynamic changes in strength of cortical connections.

作者信息

Das A, Gilbert C D

机构信息

Rockefeller University, New York, New York 10021-6399, USA.

出版信息

J Neurophysiol. 1995 Aug;74(2):779-92. doi: 10.1152/jn.1995.74.2.779.

DOI:10.1152/jn.1995.74.2.779
PMID:7472382
Abstract
  1. Receptive field (RF) sizes of neurons in adult primary visual cortex are dynamic, expanding and contracting in response to alternate stimulation outside and within the RF over periods ranging from seconds to minutes. The substrate for this dynamic expansion was shown to lie in cortex, as opposed to subcortical parts of the visual pathway. The present study was designed to examine changes in cortical connection strengths that could underlie this observed plasticity by measuring the changes in cross-correlation histograms between pairs of primary visual cortex neurons that are induced to dynamically change their RF sizes. 2. Visually driven neural activity was recorded from single units in the superficial layers of primary visual cortex in adult cats, with two independent electrodes separated by 0.1-5 mm at their tips, and cross-correlated on-line. The neurons were then conditioned by stimulation with an "artificial scotoma," a field of flashing random dots filling the region of visual space around a blank rectangle enclosing the RFs of the recorded neurons. The neuronal RFs were tested for expansion and their visually driven output again cross-correlated. After this, the neurons were stimulated vigorously through their RF centers to induce the field to collapse, and the visually driven output from the collapsed RFs was again cross-correlated. Cross-correlograms obtained before and after conditioning, and after RF collapse, were normalized by their flanks to control for changes in peak size due solely to fluctuations in spike rate. 3. A total of 37 pairs of neurons that showed distinct cross-correlogram peaks, and whose RF borders were clearly discernible both before and after conditioning, were used in the final analysis. Of these neuron pairs, conditioning led to a clear expansion of RF boundaries in 28 pairs, whereas in 9 pairs the RFs did not expand. RFs that did expand showed no significant shifts in their orientation preference, orientation selectivity, or ocularity. 4. When the RFs of a pair of neurons expanded with conditioning, the area of the associated flank-normalized cross-correlogram peaks also increased (by a factor ranging from 0.84 up to 3.5). Correlograms returned to their preconditioning values when RFs collapsed.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 成年初级视觉皮层中神经元的感受野(RF)大小是动态的,在数秒到数分钟的时间段内,会根据RF外部和内部的交替刺激而扩大和收缩。研究表明,这种动态扩展的基础在于皮层,而非视觉通路的皮层下部分。本研究旨在通过测量被诱导动态改变其RF大小的初级视觉皮层神经元对之间互相关直方图的变化,来检查可能是这种观察到的可塑性基础的皮层连接强度变化。2. 从成年猫初级视觉皮层浅层的单个神经元记录视觉驱动的神经活动,使用两个独立电极,其尖端相距0.1 - 5毫米,并进行在线互相关分析。然后用“人工盲点”刺激对神经元进行预处理,“人工盲点”是一个闪烁随机点的区域,填满围绕记录神经元RF的空白矩形周围的视觉空间区域。测试神经元RF的扩展情况,并再次对其视觉驱动输出进行互相关分析。在此之后,通过神经元的RF中心进行强烈刺激以使该区域收缩,然后再次对收缩后的RF的视觉驱动输出进行互相关分析。预处理前后以及RF收缩后获得的互相关图通过其侧翼进行归一化,以控制仅由于放电率波动导致的峰值大小变化。3. 最终分析中使用了总共37对神经元,这些神经元对显示出明显的互相关图峰值,并且其RF边界在预处理前后都清晰可辨。在这些神经元对中,预处理导致28对神经元的RF边界明显扩展,而9对神经元的RF没有扩展。扩展的RF在其方向偏好、方向选择性或眼优势方面没有显著变化。4. 当一对神经元的RF随着预处理而扩展时,相关的侧翼归一化互相关图峰值面积也增加(增加因子范围从0.84到3.5)。当RF收缩时,互相关图恢复到预处理前的值。(摘要截断于400字)

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