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自闭症的电生理研究:巨响中的低语。

Electrophysiological studies of autism: the whisper of the bang.

作者信息

Tanguay P E, Edwards R M

出版信息

J Autism Dev Disord. 1982 Jun;12(2):177-84. doi: 10.1007/BF01531307.

Abstract

Many neurophysiological hypotheses have focused upon the level of the central nervous system at which abnormal neural function may be present. Although some have argued that the type of language and cognitive defects shown by autistic children almost certainly reflects forebrain dysfunctions, current studies point to the possibility that some autistic children may have dysfunction of neural systems in the brainstem. One interpretation of these findings is that such abnormalities, occurring during a critical phase of early postnatal development, might themselves have acted directly as neuropathological agents, adversely influencing developing forebrain systems. A model for such an event has already been identified in animal research. If this be true, neurobiologists may not necessarily be identifying what is current pathology but may only be seeing a reflection of abnormal neural factors that once were important in development of the syndrome. Such a possibility suggests that investigators should consider extending their current studies to include young normal children as well as children with prototypic signs of abnormal language and interpersonal development.

摘要

许多神经生理学假说都聚焦于中枢神经系统中可能存在异常神经功能的层面。尽管有些人认为,自闭症儿童所表现出的语言和认知缺陷类型几乎肯定反映了前脑功能障碍,但目前的研究指出,一些自闭症儿童可能存在脑干神经系统功能障碍的可能性。对这些发现的一种解释是,这种在出生后早期发育的关键阶段出现的异常情况,本身可能直接作为神经病理因素,对发育中的前脑系统产生不利影响。动物研究中已经确定了这样一个事件的模型。如果这是真的,神经生物学家不一定是在识别当前的病理状况,而可能只是看到了曾经在该综合征发展过程中起重要作用的异常神经因素的一种反映。这种可能性表明,研究人员应考虑将他们目前的研究范围扩大,纳入正常幼儿以及具有语言和人际发展异常典型症状的儿童。

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