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Activity-dependent regulation of ‘on’ and ‘off’ responses in cat visual cortical receptive fields

机译:猫视皮层接受区域中与活动有关的开和关响应调节

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摘要

class="enumerated" style="list-style-type:decimal">A supervised learning procedure was applied to individual cat area 17 neurons to test the possible role of neuronal co-activity in controlling the plasticity of the spatial ‘on-off’ organization of visual cortical receptive fields (RFs).Differential pairing between visual input evoked in a fixed position of the RF and preset levels of postsynaptic firing (imposed iontophoretically) were used alternately to boost the ‘on’ (or ‘off’) response to a ‘high’ level of firing (S+ pairing), and to reduce the opponent response (respectively ‘off’ or ‘on’) in the same position to a ‘low’ level (S pairing). This associative procedure was repeated 50-100 times at a low temporal frequency (0.1-0.15 s−1).Long-lasting modifications of the ratio of ‘on-off’ responses, measured in the paired position or integrated across the whole RF, were found in 44% of the conditioned neurons (17/39), and in most cases this favoured the S+ paired characteristic. The amplitude change was on average half of that imposed during pairing. Comparable proportions of modified cells were obtained in ‘simple’ (13/27) and ‘complex’ (4/12) RFs, both in adult cats (4/11) and in kittens within the critical period (13/28).The spatial selectivity of the pairing effects was studied by pseudorandomly stimulating both paired and spatially distinct unpaired positions within the RF. Most modifications were observed in the paired position (for 88% of successful pairings).In some cells (n = 13), a fixed delay pairing procedure was applied, in which the temporal phase of the onset of the current pulse was shifted by a few hundred milliseconds from the presentation or offset of the visual stimulus. Consecutive effects were observed in 4/13 cells, which retained the temporal pattern of activity imposed during pairing for 5-40 min. They were expressed in the paired region only.The demonstration of long-lasting adaptive changes in the ratio of ‘on’ and ‘off’ responses, expressed in localized subregions of the RF, leads us to suggest that simple and complex RF organizations might be two stable functional states derived from a common connectivity scheme.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 将监督学习程序应用于猫的17个区域的单个神经元,以测试神经元协同活动在控制视觉皮层接受域(RF)的空间“开-关”组织的可塑性中的可能作用。
  • 在RF的固定位置诱发的视觉输入与突触后激发的预设水平(离子电渗疗法)之间的差分配对被交替使用,以增强对“高”激发水平的“开”(或“关”)响应(S + 配对),并将相同位置的对手响应(分别为“ off”或“ on”)降低到“低”水平(S -配对)。在低时间频率(0.1-0.15 s -1 )上重复此关联过程50-100次。 对“开-关”比率的持久修改在成对的位置测量或在整个RF上积分的反应在44%的条件神经元中被发现(17/39),并且在大多数情况下,这有利于S + 配对特征。振幅变化平均为配对期间施加的振幅变化的一半。在关键时期(13/28)内,成年猫(4/11)和小猫的“简单”(13/27)和“复杂”(4/12)RF中获得了相当比例的修饰细胞。 / li> li通过配对随机地刺激RF中的配对和空间上不同的未配对位置,研究了配对效应的空间选择性。在配对位​​置上观察到大多数修饰(成功配对的88%)。 在某些单元格(n = 13)中,应用了固定的延迟配对程序,在这种情况下,当前脉冲从视觉刺激的呈现或偏移开始偏移了几百毫秒。在4/13细胞中观察到连续效应,该效应保留了配对5-40分钟时施加的暂时性活动模式。它们仅在配对区域中表达。 在RF局部区域中表现出的“开”和“关”响应之比的长期自适应变化的演示使我们建议,简单和复杂的RF组织可能是从通用连接方案中得出的两个稳定的功能状态。
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