Ishikawa M, Sekizuka E, Shimizu K, Yamaguchi N, Kawase T
Department of Neurosurgery, Saitama National Hospital, Saitama, Japan.
Microvasc Res. 1998 Nov;56(3):166-72. doi: 10.1006/mvre.1998.2100.
The mean centerline red blood cell (RBC) velocity of the rat pial artery was measured using an image-intensified high-speed (1000 frames/s) video camera system and RBCs labeled with fluorescein isothiocyanate (FITC). Some investigations measuring RBC velocity have been made in most organs, but the RBC velocity of the pial artery has not yet been measured with this system using FITC labeled RBC. After recording the emission of the FITC labeled RBC through a closed cranial window using this system, the authors analyzed the videotape. The movement of each individual RBC for several milliseconds over a distance of 50 microm could be pursued. The mean centerline RBC velocity in normal rats varied between 1.0 and 9.0 mm/s (most of the measurements we taken in vessels ranging between 20 and 80 microm in diameter). As the diameter of the pial artery becomes smaller, the blood flow rate (pi x (diameter/2)2 x (mean centerline velocity/1.6)) tends to become smaller. During CO2 inhalation, the pial artery diameter, mean centerline RBC velocity, and blood flow rate increased with statistical significance. Mean centerline RBC velocities in the cerebral microcirculation could not be measured directly with accuracy using the older methods (30 frames/s). However, this method is useful for investigation of the cerebral microcirculation and is considered to be applicable for studying the behavior of leukocytes or platelets, which will be examined in a subsequent study.
使用图像增强高速(1000帧/秒)摄像机系统和异硫氰酸荧光素(FITC)标记的红细胞,测量大鼠软脑膜动脉的平均中心线红细胞(RBC)速度。大多数器官都进行了一些测量红细胞速度的研究,但尚未使用该系统和FITC标记的红细胞测量软脑膜动脉的红细胞速度。使用该系统通过闭合的颅骨窗记录FITC标记红细胞的发射后,作者对录像带进行了分析。可以追踪每个红细胞在50微米距离上几毫秒的运动。正常大鼠的平均中心线红细胞速度在1.0至9.0毫米/秒之间变化(我们的大多数测量是在直径为20至80微米的血管中进行的)。随着软脑膜动脉直径变小,血流速度(π×(直径/2)²×(平均中心线速度/1.6))趋于变小。在吸入二氧化碳期间,软脑膜动脉直径、平均中心线红细胞速度和血流速度显著增加。使用较旧的方法(30帧/秒)无法直接准确测量脑微循环中的平均中心线红细胞速度。然而,该方法对于研究脑微循环很有用,并且被认为适用于研究白细胞或血小板的行为,这将在后续研究中进行检查。