首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >In vitro analog of operant conditioning in aplysia. II. Modifications of the functional dynamics of an identified neuron contribute to motor pattern selection.
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In vitro analog of operant conditioning in aplysia. II. Modifications of the functional dynamics of an identified neuron contribute to motor pattern selection.

机译:在海兔操作条件的体外类似物。二。识别出的神经元的功能动力学的修改有助于运动模式的选择。

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Previously, an analog of operant conditioning was developed using the buccal ganglia of Aplysia, the probabilistic occurrences of a specific motor pattern (i.e., pattern I), a contingent reinforcement (i.e., stimulation of the esophageal nerve), and monotonic stimulation of a peripheral nerve (i.e., n.2,3). This analog expressed a key feature of operant conditioning (i.e., selective enhancement of the probability of occurrence of a designated motor pattern by contingent reinforcement). In addition, the training induced changes in the dynamical properties of neuron B51, an element of the buccal central pattern generator. To gain insights into the neuronal mechanisms that mediate features of operant conditioning, the present study identified a neuronal element that was critically involved in the selective enhancement of pattern I. We found that bursting activity in cell B51 contributed significantly to the expression of pattern I and that changes in the dynamical properties of this cell were associated with the selective enhancement of pattern I. These changes could be induced by an explicit association of reinforcement with random depolarization of B51. No stimulation of n.2,3 was required. These results indicate that the selection of a designated motor pattern by contingent reinforcement and the underlying neuronal plasticity resulted from the association of reinforcement with a component of central neuronal activity that contributes to a specific motor pattern. The sensory stimulus that allows for occurrences of different motor acts may not be critical for induction of plasticity that mediates the selection of a motor output by contingent reinforcement in operant conditioning.
机译:以前,使用海ly的颊神经节,特定运动模式(即模式I),偶然性增强(即食道神经刺激)和单调刺激周围神经的概率发生了操作性调节的类似物。神经(即n,2,3)。该类似物表达了操作调节的关键特征(即,通过偶然增强选择性地提高了指定电动机模式的出现概率)。此外,训练还引起了神经元B51动力学特性的变化,而神经元B51是颊中央模式发生器的一个组成部分。为了深入了解介导操作条件调节功能的神经元机制,本研究鉴定了关键参与模式I选择性增强的神经元。我们发现细胞B51的爆发活性显着促进了模式I和神经元的表达。该细胞动力学特性的变化与模式I的选择性增强有关。这些变化可能是由增强与B51随机去极化的明确关联引起的。不需要刺激n,2,3。这些结果表明,通过偶然性增强选择指定的运动模式和潜在的神经元可塑性,是由于增强与有助于特定运动模式的中枢神经元活动成分相关联而产生的。允许发生不同运动行为的感觉刺激对于诱导可塑性不是至关重要的,可塑性诱导通过操作条件调节中的偶然增强来介导选择电动机输出。

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