Dynamic in vivo measurement of erythrocyte velocity and flow in capillaries and of microvessel diameter in the rat brain by confocal laser microscopy

被引:85
作者
Seylaz, J [1 ]
Charbonné, R [1 ]
Nanri, K [1 ]
Von Euw, D [1 ]
Borredon, J [1 ]
Kacem, K [1 ]
Méric, P [1 ]
Pinard, E [1 ]
机构
[1] Univ Paris 07, IFR6, Lab Rech Cerebrovasc, CNRS,UPR 646, F-75010 Paris, France
关键词
capillary erythrocyte flow; cerebral ischemia; cerebral microcirculation; confocal laser microscopy method;
D O I
10.1097/00004647-199908000-00005
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
A new method for studying brain microcirculation is described. Both fluorescently labeled erythrocytes and plasma were visualized on-line through a closed cranial window in anesthetized rats, using laser-scanning two-dimension confocal microscopy. Video images of capillaries, arterioles, and venules were digitized off-line to measure microvessel diameter and labeled erythrocyte flow and velocity in parenchymal capillaries up to 200 mu m beneath the brain surface. The method was used to analyze the rapid adaptation of microcirculation to a brief decrease in perfusion pressure. Twenty second periods of forebrain ischemia were induced using the four-vessel occlusion model in eight rats. EEG, arterial blood pressure, and body temperature were continuously controlled. In all conditions, labeled erythrocyte flow and velocity were both very heterogeneous in capillaries. During ischemia, capillary perfusion was close to 0, but a low blood flow persisted in arterioles and venules, while EEG was flattening. The arteriole and venule diameter did not significantly change. At the unclamping of carotid arteries, there was an instantaneous increase (by about 150%) of arteriole diameter. Capillary erythrocyte flow and velocity increased within 5 seconds, up to, respectively, 346 +/- 229% and 233 +/- 156% of their basal value. No capillary recruitment of erythrocytes was detected. All variables returned to their basal levels within less than 100 seconds after declamping. The data are discussed in terms of a possible involvement of shear stress in the reperfusion period.
引用
收藏
页码:863 / 870
页数:8
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