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颞上回皮质厚度减小可作为人类初级听觉皮层的活体标志物。

Reduced cortical thickness in Heschl's gyrus as an in vivo marker for human primary auditory cortex.

机构信息

Department of Neurology, Section of Biomagnetism, University of Heidelberg Medical School, Heidelberg, Germany.

Department of Neuroradiology, University of Heidelberg Medical School, Heidelberg, Germany.

出版信息

Hum Brain Mapp. 2019 Mar;40(4):1139-1154. doi: 10.1002/hbm.24434. Epub 2018 Oct 27.

Abstract

The primary auditory cortex (PAC) is located in the region of Heschl's gyrus (HG), as confirmed by histological, cytoarchitectonical, and neurofunctional studies. Applying cortical thickness (CTH) analysis based on high-resolution magnetic resonance imaging (MRI) and magnetoencephalography (MEG) in 60 primary school children and 60 adults, we investigated the CTH distribution of left and right auditory cortex (AC) and primary auditory source activity at the group and individual level. Both groups showed contoured regions of reduced auditory cortex (redAC) along the mediolateral extension of HG, illustrating large inter-individual variability with respect to shape, localization, and lateralization. In the right hemisphere, redAC localized more within the medial portion of HG, extending typically across HG duplications. In the left hemisphere, redAC was distributed significantly more laterally, reaching toward the anterolateral portion of HG. In both hemispheres, redAC was found to be significantly thinner (mean CTH of 2.34 mm) as compared to surrounding areas (2.99 mm). This effect was more dominant in the right hemisphere rather than in the left one. Moreover, localization of the primary component of auditory evoked activity (P1), as measured by MEG in response to complex harmonic sounds, strictly co-localized with redAC. This structure-function link was found consistently at the group and individual level, suggesting PAC to be represented by areas of reduced cortex in HG. Thus, we propose reduced CTH as an in vivo marker for identifying shape and localization of PAC in the individual brain.

摘要

初级听觉皮层(PAC)位于 Heschl 回(HG)区域,这已被组织学、细胞构筑学和神经功能研究证实。我们应用高分辨率磁共振成像(MRI)和脑磁图(MEG)的皮质厚度(CTH)分析,对 60 名小学生和 60 名成年人进行了研究,以探讨左、右听觉皮层(AC)的 CTH 分布和初级听觉源活动在组和个体水平上的情况。两组均沿 HG 的前后向延伸显示出轮廓分明的听觉皮层减少区(redAC),表明个体之间的形状、定位和侧化存在很大的变异性。在右半球,redAC 更局限于 HG 的内侧部分,通常横跨 HG 重复。在左半球,redAC 分布明显更靠外侧,延伸至 HG 的前外侧部分。在两个半球中,redAC 明显比周围区域(2.99mm)薄(平均 CTH 为 2.34mm)。这种效应在右半球比在左半球更为明显。此外,通过 MEG 对复杂谐波声音的反应测量到的听觉诱发电活动(P1)的主要成分的定位与 redAC 严格重合。这种结构-功能联系在组和个体水平上都是一致的,提示 PAC 由 HG 中皮质减少的区域来表示。因此,我们提出 CTH 减少作为在个体大脑中识别 PAC 形状和定位的活体标记物。

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本文引用的文献

1
"When Music Speaks": Auditory Cortex Morphology as a Neuroanatomical Marker of Language Aptitude and Musicality.
Front Psychol. 2017 Dec 1;8:2096. doi: 10.3389/fpsyg.2017.02096. eCollection 2017.
2
From where to what: a neuroanatomically based evolutionary model of the emergence of speech in humans.
F1000Res. 2015 Mar 13;4:67. doi: 10.12688/f1000research.6175.3. eCollection 2015.
3
Prevalence and function of Heschl's gyrus morphotypes in musicians.
Brain Struct Funct. 2017 Nov;222(8):3587-3603. doi: 10.1007/s00429-017-1419-x. Epub 2017 Apr 10.
4
Differential tinnitus-related neuroplastic alterations of cortical thickness and surface area.
Hear Res. 2016 Dec;342:1-12. doi: 10.1016/j.heares.2016.08.016. Epub 2016 Sep 23.
5
Neural Biomarkers for Dyslexia, ADHD, and ADD in the Auditory Cortex of Children.
Front Neurosci. 2016 Jul 15;10:324. doi: 10.3389/fnins.2016.00324. eCollection 2016.
6
A multi-modal parcellation of human cerebral cortex.
Nature. 2016 Aug 11;536(7615):171-178. doi: 10.1038/nature18933. Epub 2016 Jul 20.
8
Assessing intracortical myelin in the living human brain using myelinated cortical thickness.
Front Neurosci. 2015 Oct 23;9:396. doi: 10.3389/fnins.2015.00396. eCollection 2015.
9
The Infancy of the Human Brain.
Neuron. 2015 Oct 7;88(1):93-109. doi: 10.1016/j.neuron.2015.09.026.

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