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Frequency Selectivity of Voxel-by-Voxel Functional Connectivity in Human Auditory Cortex

机译:人听皮层中每个体素功能连接的频率选择性

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摘要

While functional connectivity in the human cortex has been increasingly studied, its relationship to cortical representation of sensory features has not been documented as much. We used functional magnetic resonance imaging to demonstrate that voxel-by-voxel intrinsic functional connectivity (FC) is selective to frequency preference of voxels in the human auditory cortex. Thus, FC was significantly higher for voxels with similar frequency tuning than for voxels with dissimilar tuning functions. Frequency-selective FC, measured via the correlation of residual hemodynamic activity, was not explained by generic FC that is dependent on spatial distance over the cortex. This pattern remained even when FC was computed using residual activity taken from resting epochs. Further analysis showed that voxels in the core fields in the right hemisphere have a higher frequency selectivity in within-area FC than their counterpart in the left hemisphere, or than in the noncore-fields in the same hemisphere. Frequency-selective FC is consistent with previous findings of topographically organized FC in the human visual and motor cortices. The high degree of frequency selectivity in the right core area is in line with findings and theoretical proposals regarding the asymmetry of human auditory cortex for spectral processing.
机译:虽然人类皮质的功能连通性已经得到了越来越多的研究,但它与感觉特征的皮质表示之间的关系尚未得到充分记载。我们使用功能磁共振成像来证明逐个体素固有功能连接性(FC)对人类听觉皮层中体素的频率偏好具有选择性。因此,具有相似频率调谐的体素的FC明显高于具有不同调谐功能的体素的FC。通过残余血流动力学活性的相关性来测量的频率选择性FC并没有由泛型FC解释,泛型FC取决于皮质上的空间距离。即使使用从静止时期获取的剩余活动来计算FC,这种模式仍然保持。进一步的分析表明,右半球核心场中的体素在区域内FC中的频率选择性高于左半球中的体素,或者比同一半球中的非核心场中的更高。频率选择性FC与人类视觉和运动皮层中地形组织FC的先前发现一致。在右核心区域的高度频率选择性与关于人类听觉皮层用于频谱处理的不对称性的发现和理论建议是一致的。

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