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对3名年龄在3至16岁儿童50毫秒潜伏期诱发的听觉脑反应进行颅内记录和源定位。

Intracranial recording and source localization of auditory brain responses elicited at the 50 ms latency in three children aged from 3 to 16 years.

作者信息

Korzyukov Oleg, Asano Eishi, Gumenyuk Valentina, Juhász Csaba, Wagner Michael, Rothermel Robert D, Chugani Harry T

机构信息

Carman and Ann Adams Department of Pediatrics, Children's Hospital of Michigan, Wayne State University, Detroit, MI 48201, USA.

出版信息

Brain Topogr. 2009 Nov;22(3):166-75. doi: 10.1007/s10548-009-0108-3. Epub 2009 Aug 22.

Abstract

Maturational studies of the auditory-evoked brain response at the 50 ms latency provide an insight into why this response is aberrant in a number of psychiatric disorders that have developmental origin. Here, using intracranial recordings we found that neuronal activity of the primary contributors to this response can be localised at the lateral part of Heschl's gyrus already at the age of 3.5 years. This study provides results to support the notion that deviations in cognitive function(s) attributed to the auditory P50 in adults might involve abnormalities in neuronal activity of the frontal lobe or in the interaction between the frontal and temporal lobes. Validation and localisation of progenitors of the adults' P50 in young children is a much-needed step in the understanding of the biological significance of different subcomponents that comprise the auditory P50 in the adult brain. In combination with other approaches investigating neuronal mechanisms of auditory P50, the present results contribute to the greater understanding of what and why neuronal activity underlying this response is aberrant in a number of brain dysfunctions. Moreover, the present source localisation results of auditory response at the 50 ms latency might be useful in paediatric neurosurgery practice.

摘要

对50毫秒潜伏期听觉诱发脑反应的成熟度研究,有助于深入了解为何这种反应在许多起源于发育阶段的精神疾病中会出现异常。在此,我们通过颅内记录发现,对该反应起主要作用的神经元活动在3.5岁时就已定位在颞横回的外侧部分。本研究结果支持这样一种观点,即成年人中归因于听觉P50的认知功能偏差可能涉及额叶神经元活动异常或额叶与颞叶之间的相互作用异常。确定幼儿期成年人P50祖细胞的位置并进行验证,是理解成年大脑中构成听觉P50的不同子成分生物学意义的迫切需要的一步。结合其他研究听觉P50神经元机制的方法,本研究结果有助于更深入地了解在一些脑功能障碍中该反应背后的神经元活动是什么以及为何异常。此外,本研究中50毫秒潜伏期听觉反应的源定位结果可能在儿科神经外科实践中有用。

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本文引用的文献

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The human auditory system: a timeline of development.人类听觉系统:发育时间表。
Int J Audiol. 2007 Sep;46(9):460-78. doi: 10.1080/14992020701383019.
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