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Learning-Induced Improvement in Encoding and Decoding of Specific Movement Directions by Neurons in the Primary Motor Cortex

机译:学习诱导的初级运动皮层神经元对特定运动方向的编码和解码的改进

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摘要

Many recent studies describe learning-related changes in sensory and motor areas, but few have directly probed for improvement in neuronal coding after learning. We used information theory to analyze single-cell activity from the primary motor cortex of monkeys, before and after learning a local rotational visuomotor task. We show that after learning, neurons in the primary motor cortex conveyed more information about the direction of movement and did so with relation to their directional sensitivity. Similar to recent findings in sensory systems, this specific improvement in encoding is correlated with an increase in the slope of the neurons' tuning curve. We further demonstrate that the improved information after learning enables a more accurate reconstruction of movement direction from neuronal populations. Our results suggest that similar mechanisms govern learning in sensory and motor areas and provide further evidence for a tight relationship between the locality of learning and the properties of neurons; namely, cells only show plasticity if their preferred direction is near the training one. The results also suggest that simple learning tasks can enhance the performance of brain–machine interfaces.
机译:最近的许多研究描述了与感觉有关的运动和运动区域的变化,但是很少有研究直接探讨学习后神经元编码的改善。我们使用信息论来分析猴子的初级运动皮层在学习局部旋转视觉运动任务之前和之后的单细胞活动。我们显示,学习后,初级运动皮层中的神经元传达了有关运动方向的更多信息,并且这样做与它们的方向敏感性有关。与感觉系统中的最新发现类似,这种编码方面的特定改进与神经元调整曲线斜率的增加相关。我们进一步证明,学习后改进的信息可以使神经元群体的运动方向更准确地重建。我们的研究结果表明,类似的机制控制着感觉和运动区域的学习,并为学习的位置和神经元的特性之间的紧密关系提供了进一步的证据。也就是说,只有当细胞的首选方向接近训练方向时,它们才会显示可塑性。结果还表明,简单的学习任务可以增强脑机接口的性能。

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