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[人和动物大脑皮质对体感和听觉传入投射至大脑皮质的控制]

[The cerebral control of the somatosensory and auditory afferent projections to the cerebral cortex in man and animals].

作者信息

Liubimov N N, Orlova T V, Liubimov S N

机构信息

Brain Research Institute, RAMS, Moscow, Russia.

出版信息

Usp Fiziol Nauk. 1998 Jul-Sep;29(3):3-20.

PMID:9749454
Abstract

The main purpose of the present paper was consisted in studying of topology (spreading) of the somatosensory and auditory projections in cortex of both brain hemispheres in humans under different functional states conditions: during quiet walking state and during realization of the meditative programme. At the same time for the purpose of verification these steering mechanisms a number of experiments were realized in animals with neurosurgical cutting of brainstem ascending projections, which control the transfer of somatosensory and auditory sensibility. Experimental study was realized with two groups of subjects--8 subjects (age from 25 to 35 years old) and 25 (age from 25 to 40 years old) subjects practicing technique of Transcendental Meditation (TM). In addition to the mentioned above group some groups of animals were used in the experiments. Among them there were used the groups of monkeys (8 macaque rhesus and macaque nemestrina) and cats (10 animals) in conditions of acute experiment, under tiopenthal anesthesia. Two experimental methods were used in the study: electrophysiological for subjects and neurosurgical, additionally for animals. For evaluation of the brain reactivity in subjects registration of the somatosensory, to median nerve stimulation, and auditory, to bilateral application of auditory clicks, evoked potentials (EPs) in the symmetrical cortical structures of the brain was used. Registration of the somatosensory and auditory evoked potentials in animals was realized not only from the cortex, but from the brainstem somatosensory and auditory structures. SSEP in subjects-meditators were registered before and during meditation programme. In animals SSEP and AEP registration on the corresponding stimuli realized before and after neurosurgical operation--section of the midbrain tegmentum. Specific alterations of the early (up to 80 ms) and late components SSEP and AEP complexes in forms of topology spreading and diminution of registration areas of these components were obtained during the meditation. Origins of these functional reorganization are discussed from the positions of internal 'feed-back' inhibition.

摘要

本文的主要目的在于研究人类大脑两半球皮质在不同功能状态下,即安静行走状态和冥想程序实施过程中,体感和听觉投射的拓扑结构(分布)。同时,为了验证这些调控机制,对脑干上行投射进行神经外科切断的动物进行了一系列实验,这些投射控制着体感和听觉敏感性的传递。实验研究针对两组受试者——8名年龄在25至35岁之间的受试者以及25名练习超觉静坐法(TM)的年龄在25至40岁之间的受试者。除上述组外,实验中还使用了几组动物。其中包括在硫喷妥钠麻醉下急性实验条件下的猕猴(8只恒河猴和豚尾猕猴)和猫(10只)。研究中使用了两种实验方法:受试者采用电生理方法,动物额外采用神经外科方法。为评估受试者的大脑反应性,采用了对正中神经刺激的体感诱发电位(EPs)以及对双侧施加听觉点击的听觉诱发电位,记录大脑对称皮质结构中的诱发电位。动物的体感和听觉诱发电位不仅从皮质记录,还从脑干体感和听觉结构记录。冥想者受试者的体感诱发电位在冥想程序前后进行记录。在动物中,在神经外科手术——中脑被盖切断前后,对相应刺激记录体感诱发电位和听觉诱发电位。在冥想过程中,获得了体感诱发电位和听觉诱发电位复合体早期(至80毫秒)和晚期成分的特定改变,表现为拓扑分布的变化以及这些成分记录区域的减小。从内部“反馈”抑制的角度讨论了这些功能重组的起源。

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