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Postontogenetic short-term plasticity in the somatosensory system: a neural network model

机译:躯体感觉系统中的产后短期可塑性:神经网络模型

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Both repetitive tactile stimulation applied to the hindpaw of an adult rat and intracortical microstimulation in the primary somatosensory cortex lead to fully reversible plastic changes in the cortical hindpaw representation which occur withinhours. Psychophysical experiments in humans indicate that the plastic changes are accompanied by an increase in tactile resolution. We introduce a biologically oriented neural network to simulate the different experiments. The model uses a local learningrule which accounts for all major effects observed, such as the dynamical changes of receptive field (RF) size, the increase of the cortical representation area and the full reversibility of all plastic changes. We also discuss the conditions under whichan increase in receptive field size of somatosensory neurons results in a higher sensory resolution.
机译:既有重复触觉刺激都适用于成年大鼠的后爪和原发性躯体感染术皮层中的内部躯体血管刺激导致皮质后爪表示的完全可逆的塑性变化发生在何种内部。人类的心理物理实验表明,塑料变化伴随着触觉分辨率的增加。我们介绍了一种生物导向的神经网络来模拟不同的实验。该模型使用局部学习,占据所有主要效果的局部学习,例如接收领域(RF)尺寸的动态变化,皮质表示区域的增加以及所有塑料变化的完全可逆性。我们还讨论了躯体感官神经元的接受场大小增加的条件导致更高的感官分辨率。

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