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根据声音诱发的总电位分析听觉分析仪皮质端的核团和弥散成分特性

[Properties of nuclear and dispersed elements of the cortical end of the auditory analyzer according to total evoked potentials to sound].

作者信息

Daurova F K

出版信息

Zh Vyssh Nerv Deiat Im I P Pavlova. 1978 May-Jun;28(3):628-36.

PMID:676512
Abstract

In chronic experiments on cats short-latency evoked potentials (EPs) to clicks were recorded simultaneously in three cortical areas--auditory (nuclear elements of the cortical end of the auditory analyser) sensorimotor and visual ones (scattered auditory elements). EPs to above threshold clicks in the auditory area differed from EPs of non-auditory areas by a greater amplitude and relatively stable configuration. The EP threshold in the auditory area was lower and the increase in its amplitude throughout a rise in clicks' intensity far greater than in the non-auditory areas. The above difference in responses of nuclear elements in the primary auditory cortex and of scattered elements in non-auditory areas are considered as the sign of specificity of their functional organization, i. e. as the manifestation of the participation of auditory nuclear elements in a relatively delicate analysis of auditory stimuli and that of scattered ones--in a more simple and limited analysis.

摘要

在对猫进行的慢性实验中,同时在三个皮质区域记录了对咔嗒声的短潜伏期诱发电位(EP)——听觉区域(听觉分析器皮质端的核元件)、感觉运动区域和视觉区域(分散的听觉元件)。听觉区域中对阈值以上咔嗒声的EP与非听觉区域的EP不同,其幅度更大且构型相对稳定。听觉区域的EP阈值较低,并且随着咔嗒声强度的增加,其幅度的增加远大于非听觉区域。初级听觉皮质中的核元件与非听觉区域中的分散元件在反应上的上述差异被认为是其功能组织特异性的标志,即听觉核元件参与对听觉刺激的相对精细分析,而分散元件参与更简单和有限分析的表现。

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