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人类初级听觉皮层遵循 Heschl 回的形状。

Human primary auditory cortex follows the shape of Heschl's gyrus.

机构信息

Neuropsychology and Neurorehabilitation Service, Lausanne University Hospital (CHUV), Switzerland.

出版信息

J Neurosci. 2011 Oct 5;31(40):14067-75. doi: 10.1523/JNEUROSCI.2000-11.2011.

Abstract

The primary auditory cortex (PAC) is central to human auditory abilities, yet its location in the brain remains unclear. We measured the two largest tonotopic subfields of PAC (hA1 and hR) using high-resolution functional MRI at 7 T relative to the underlying anatomy of Heschl's gyrus (HG) in 10 individual human subjects. The data reveals a clear anatomical-functional relationship that, for the first time, indicates the location of PAC across the range of common morphological variants of HG (single gyri, partial duplications, and complete duplications). In 20/20 individual hemispheres, two primary mirror-symmetric tonotopic maps were clearly observed with gradients perpendicular to HG. PAC spanned both divisions of HG in cases of partial and complete duplications (11/20 hemispheres), not only the anterior division as commonly assumed. Specifically, the central union of the two primary maps (the hA1-R border) was consistently centered on the full Heschl's structure: on the gyral crown of single HGs and within the sulcal divide of duplicated HGs. The anatomical-functional variants of PAC appear to be part of a continuum, rather than distinct subtypes. These findings significantly revise HG as a marker for human PAC and suggest that tonotopic maps may have shaped HG during human evolution. Tonotopic mappings were based on only 16 min of fMRI data acquisition, so these methods can be used as an initial mapping step in future experiments designed to probe the function of specific auditory fields.

摘要

初级听觉皮层(PAC)是人类听觉能力的核心,但它在大脑中的位置仍不清楚。我们使用 7T 高分辨率功能磁共振成像,相对于 10 名个体人类受试者中赫希氏回(HG)的基础解剖结构,测量了 PAC 的两个最大的音调子区域(hA1 和 hR)。数据显示出一种清晰的解剖-功能关系,这首次表明 PAC 的位置跨越了 HG 的常见形态变异范围(单回、部分重复和完全重复)。在 20/20 个半球中,两个主要的镜像音调图沿着垂直于 HG 的梯度清晰地观察到。在部分和完全重复的情况下(20 个半球中的 11 个),PAC 不仅跨越了 HG 的前部分,还跨越了 HG 的整个后部分,而不仅仅是像通常假设的那样仅跨越前部分。具体来说,两个主要地图的中心联合(hA1-R 边界)始终位于完整的赫希氏结构上:在单回的脑回冠部和重复回的脑回之间的裂沟处。PAC 的解剖-功能变体似乎是一个连续体的一部分,而不是不同的亚型。这些发现极大地改变了 HG 作为人类 PAC 标志物的作用,并表明音调图可能在人类进化过程中塑造了 HG。音调映射仅基于 16 分钟的 fMRI 数据采集,因此这些方法可作为未来旨在探测特定听觉区域功能的实验的初始映射步骤使用。

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