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首页> 外文期刊>Journal of Neurophysiology >Distributed sensitivity for movement amplitude in directionally tuned neuronal populations.
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Distributed sensitivity for movement amplitude in directionally tuned neuronal populations.

机译:定向调谐的神经元群体中运动幅度的分布式灵敏度。

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Neurons in macaque primary motor cortex and dorsal premotor cortex are tuned to movement direction. In humans, neuronal populations tuned to movement direction have recently been described using multivoxel pattern analysis and functional magnetic resonance imaging adaptation. It is unclear, however, to what extent directionally tuned neuronal populations are sensitive to movement amplitude. Here we used functional magnetic resonance imaging adaptation to determine whether directionally tuned neuronal populations are modulated by movement amplitude. In different blocks, participants were adapted to small- or large-amplitude hand-reaching movements. On occasional test trials, we parametrically varied the angular difference between adaptation and test direction and the congruency between adapted and tested amplitude (same or different). We predicted that the blood oxygen level-dependent signal in directionally tuned regions should be adapted in proportion to the angular difference between adaptation and test direction. Directionally tuned regions insensitive to movement amplitude should show a transfer of adaptation from the adapted to the nonadapted amplitude. In contrast, regions sensitive to the specific combination of movement direction and amplitude should show directional tuning only for the adapted amplitude. We identified a network of parietal and frontal regions tuned to movement direction. We found that parietal areas contain neuronal populations sensitive to specific combinations of movement direction and amplitude, while frontal areas show transfer from the adapted to the nonadapted amplitude during small-amplitude movements after adaptation to large amplitude, but not vice versa. Our results thus imply different processing of movement amplitude in directionally tuned frontal and parietal areas.
机译:猕猴初级运动皮层和背运动前皮层中的神经元被调整到运动方向。在人类中,最近已使用多体素模式分析和功能性磁共振成像适应性技术描述了适应运动方向的神经元群体。但是,尚不清楚定向调谐的神经元群体在多大程度上对运动幅度敏感。在这里,我们使用功能磁共振成像适应性来确定是否通过运动幅度来调制定向调谐的神经元群体。在不同的区块中,参与者适应了小幅度或大幅度的伸手动作。在偶尔的试验中,我们会根据参数调整适应和测试方向之间的角度差以及适应和测试幅度(相同或不同)之间的一致性。我们预测定向调整区域中与血氧水平相关的信号应与适应和测试方向之间的角度差成比例地进行适应。对运动幅度不敏感的方向调整区域应该显示出适应从适应幅度到非适应幅度的转移。相反,对运动方向和幅度的特定组合敏感的区域应仅针对调整后的幅度显示方向调整。我们确定了顶叶和额叶区域的网络调整到运动方向。我们发现顶区包含对运动方向和幅度的特定组合敏感的神经元种群,而额叶区域在适应大幅度后的小幅度运动过程中显示出从适应幅度向非适应幅度的转移,反之则不然。因此,我们的结果暗示了在定向调整的额叶和顶叶区域中对运动幅度的不同处理。

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