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The role of high-level visual areas in short- and longer-lasting forms of neural plasticity.

机译:高级视觉区域在短期和长期形式的神经可塑性中的作用。

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Striate and extrastriate neurons present short-term synaptic depression and facilitation in response to brief stimulations. Recent psychophysical studies have shed light on some possible relationships between these short-term forms of neural plasticity and of psychophysical behavior. It has been shown that a brief adaptation to directional motion biases the perceived direction of a subsequently presented ambiguous test pattern towards the same direction to that of the adaptation (rapid visual motion priming--rVMP), but only after brief (40ms) adaptation-test blank intervals. Although when the adaptation duration is increased, the perceived motion direction of the ambiguous test pattern is biased towards the opposite direction to that of the adaptation pattern (rapid motion aftereffect--rMAE). In the present study we stimulated MT and MST neurons via the presentation of contracting and expanding circular gratings. Our aim was to assess whether rapid effects exist at these higher levels of processing where neurons respond to optic flow, and if such effects are present determine their timescale. Results revealed strong rMAEs and perceptual sensitization (PS), which is a long-lasting facilitation that increases gradually when using intermediate and long adaptation-test blank intervals. We did not observe any effect of rVMP. Our results are considered to reflect the competition between coexistent forms of short- and long-term synaptic depression and facilitation implemented at different visual cortical circuitries.
机译:纹状体和纹状体神经元对短暂的刺激有短期的突触抑制和促进作用。最近的心理物理学研究揭示了这些短期形式的神经可塑性和心理生理行为之间的某些可能关系。研究表明,对方向运动的短暂适应会将随后呈现的歧义测试模式的感知方向偏向与适应方向相同的方向(快速视觉运动启动-rVMP),但仅在短暂(40ms)适应之后-测试空白间隔。尽管当适应持续时间增加时,模棱两可的测试模式的感知运动方向会偏向与适应模式相反的方向(快速运动后效应-rMAE)。在本研究中,我们通过收缩和扩展圆形光栅来刺激MT和MST神经元。我们的目的是评估在神经元对视光流做出反应的较高处理水平中是否存在快速影响,以及是否存在这种影响决定了它们的时间尺度。结果显示强大的rMAE和知觉敏化(PS),这是一种长期的促进作用,在使用中度和长期适应性试验空白间隔时会逐渐增加。我们没有观察到rVMP的任何影响。我们的结果被认为反映了短期和长期的突触抑制和并存形式之间的竞争,这些竞争是在不同的视觉皮层回路中实施的。

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