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大鼠触须受到机械刺激时大脑皮质体感区不同层的血流动力学

Blood flow dynamics in different layers of the somatosensory region of the cerebral cortex on the rat during mechanical stimulation of the vibrissae.

作者信息

Moskalenko Y E, Woolsey T A, Rovainen C, Weinstein G B, Liu D, Semernya V N, Mitrofanov V F

机构信息

Laboratory for Comparative Circulatory Physiology, I. M. Sechenov Institute of Evolutionary Physiology and Biochemistry, St. Petersburg, Russia.

出版信息

Neurosci Behav Physiol. 1998 Jul-Aug;28(4):459-67. doi: 10.1007/BF02464807.

Abstract

The present work reports studies of the quantitative spatial and temporal characteristics of changes in local blood flow in different layers of the somatosensory cortex of rats during adequate mechanical stimulation of the vibrissae. Studies were performed using 34 Wistar rats. Skull trepanning was performed under urethane (1 g/kg) anesthesia. Television-guided microscopy was used to introduce a set of three platinum electrodes (100 microns in diameter, with tip diameters of 30-40 microns) into the somatosensory cortex projection zone of the vibrissae. The first and third electrodes were positioned in cortical layers I-III and IV-VI and the central electrode was used to generate hydrogen within the tissue. Electrode positions were confirmed histologically after experiments. Animals were placed on artificial ventilation and one or all vibrissae were stimulated at a frequency of 3 Hz for 60 sec, with interstimulus intervals of 3 min. Changes in the local blood flow were measured during stimulation and for 1 min afterwards, using the hydrogen clearance method, and brain tissue impedance was also measured. There was a small (up to 5-7%) reduction in blood flow in the first seconds of stimulation, which was followed 15-25 sec later by an increase and subsequent return to initial when stimulation stopped. The increases in blood flow during stimulation of all vibrissae were by 24.2 +/- 6.7% (n = 36) in layers IV-VI and 24.5 +/- 5.6% (n = 34) in layers I-III; increases in response to stimulation of single vibrissae were by 19.4 +/- 7.4% (n = 28) and 17.8 +/- 6.4% (n = 28) respectively. The dynamics of impedance changes corresponded to those of blood flow changes. Thus, heterogeneity was found in changes of local brain blood flow in different layers of the somatosensory cortex during increases in cortical functional activity.

摘要

本研究报告了在对大鼠触须进行适当机械刺激期间,大鼠体感皮层不同层局部血流变化的定量空间和时间特征。研究使用了34只Wistar大鼠。在氨基甲酸乙酯(1 g/kg)麻醉下进行颅骨钻孔。使用电视引导显微镜将一组三根铂电极(直径100微米,尖端直径30 - 40微米)插入触须的体感皮层投射区。第一根和第三根电极位于皮层I - III层和IV - VI层,中央电极用于在组织内产生氢气。实验后通过组织学方法确认电极位置。将动物置于人工通气状态,以3 Hz的频率刺激一根或所有触须60秒,刺激间隔为3分钟。使用氢气清除法在刺激期间及之后1分钟测量局部血流变化,并测量脑组织阻抗。在刺激的最初几秒内,血流有小幅(高达5 - 7%)减少,15 - 25秒后增加,刺激停止后恢复到初始水平。刺激所有触须时,IV - VI层的血流增加24.2±6.7%(n = 36),I - III层的血流增加24.5±5.6%(n = 34);刺激单根触须时,血流增加分别为19.4±7.4%(n = 28)和17.8±6.4%(n = 28)。阻抗变化的动态与血流变化的动态相对应。因此,在皮层功能活动增加期间,体感皮层不同层局部脑血流变化存在异质性。

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