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皮层电刺激改变大鼠脑毛细血管网络中红细胞的灌注模式。

Cortical electrical stimulation alters erythrocyte perfusion pattern in the cerebral capillary network of the rat.

作者信息

Schulte M L, Wood J D, Hudetz A G

机构信息

Department of Anesthesiology, Medical College of Wisconsin, 8701 Watertown Plank Road, Milwaukee, WI 53226, USA.

出版信息

Brain Res. 2003 Feb 14;963(1-2):81-92. doi: 10.1016/s0006-8993(02)03848-9.

Abstract

The effect of direct cortical electrical stimulation on the pattern of erythrocyte perfusion in the capillary network of the rat cerebral cortex was studied by fluorescence intravital video-microscopy. The movement of fluorescently labeled red blood cells (FRBCs) in individual capillaries 50-70 microm subsurface in the dorsal somatosensory cortex was visualized using a closed cranial window. Cortical stimulation electrodes were placed on opposite sides of the window. FRBC velocity (mm/s) and supply rate (cells/s) were measured in 51 capillaries from six rats before and during electrical stimulation of increasing intensities (15-s trains of 3-Hz, 3-ms, 0.5-5.0-mA, square pulses). FRBC velocity, supply rate, and the instantaneous capillary erythrocyte content (lineal cell density, LCD, cells/mm) increased with the stimulation current and reached maxima of 110, 160 and 33% above control, respectively. Capillaries with low resting velocity showed a greater response than those with high resting velocity. The fraction of capillaries in which FRBC velocity increased was not constant, but increased with the stimulation current, as did the magnitude of the velocity change in these capillaries. A few capillaries showed a negative FRBC velocity response at stimulations <4 mA. These results suggest that a robust rise in the fraction of responding (engaged) capillaries and a smaller rise in the capillary LCD contribute to neuronal activation-induced cortical hyperemia. Thus, capillary engagement and erythrocyte recruitment appear to represent important components of the cortical functional hyperemic response. These results provide insight into some of the specific hemodynamic changes associated with functional hyperemia occurring at the capillary level.

摘要

通过荧光活体视频显微镜研究了直接皮层电刺激对大鼠大脑皮层毛细血管网络中红细胞灌注模式的影响。使用封闭的颅骨窗口观察背侧体感皮层中50 - 70微米表层下单个毛细血管中荧光标记红细胞(FRBCs)的运动。皮层刺激电极放置在窗口的相对两侧。在强度逐渐增加的电刺激(3赫兹、3毫秒、0.5 - 5.0毫安的3赫兹方波脉冲,持续15秒)之前和期间,测量了六只大鼠的51根毛细血管中的FRBC速度(毫米/秒)和供应率(细胞/秒)。FRBC速度、供应率和瞬时毛细血管红细胞含量(线性细胞密度,LCD,细胞/毫米)随刺激电流增加,分别达到比对照高110%、160%和33%的最大值。静息速度低的毛细血管比静息速度高的毛细血管反应更大。FRBC速度增加的毛细血管比例不是恒定的,而是随刺激电流增加,这些毛细血管中速度变化的幅度也随之增加。少数毛细血管在刺激电流<4毫安时显示出FRBC速度负反应。这些结果表明,反应性(参与)毛细血管比例的显著增加和毛细血管LCD的较小增加有助于神经元激活诱导的皮层充血。因此,毛细血管参与和红细胞募集似乎代表了皮层功能性充血反应的重要组成部分。这些结果为与毛细血管水平发生的功能性充血相关的一些特定血流动力学变化提供了见解。

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