Niimi Hideyuki, Nakano Atushi, Komai Yutaka, Seki Junji
National Cardiovascular Center Research Institute, 5-6-1, Fujishiro-dai, Suita, Osaka 565-8565, Japan.
Microvasc Res. 2005 Jul;70(1-2):23-31. doi: 10.1016/j.mvr.2005.04.002.
Arteriovenous (AV) fistulas have been used clinically for improving adjunctive bypass patency. Such AV shunting induces retrograde flow in the microvascular network, which may induce microvascular remodeling and angiogenesis at the chronic phase. This paper was aimed to examine heterogeneity of blood flow among capillaries in the retrograde microcirculation induced by AV shunting. An AV anastomosis was created in rat hind limb. Using a dual window method or frame-by-frame technique on the fluorescence microscopic video images, we measured velocities of red blood cells (RBCs) flowing in the capillary network in three flow conditions: control (normal flow), arterial occlusion, and AV shunting (retrograde flow). For each flow condition, RBC velocities were obtained in 155 capillaries of 6 rats. By classifying all the capillaries into four groups based on the levels of RBC velocity in the occlusion state, we evaluated the mean velocities, coefficient of variation (CV), and histograms for each group of capillaries. The mean velocity and CV in each group changed significantly from the control to AV shunting states. Especially, most significant changes appeared in capillary groups where the superficial femoral artery or its collateral arteries might have a direct influence. Though the AV shunting improved capillary perfusion in the mean level, major parts of capillaries still remained at low perfusion.
动静脉(AV)瘘已在临床上用于提高辅助旁路的通畅性。这种动静脉分流会在微血管网络中诱导逆行血流,这可能在慢性期诱导微血管重塑和血管生成。本文旨在研究动静脉分流诱导的逆行微循环中毛细血管间血流的异质性。在大鼠后肢建立了动静脉吻合。使用荧光显微镜视频图像上的双窗口法或逐帧技术,我们在三种血流状态下测量了毛细血管网络中流动的红细胞(RBC)速度:对照(正常血流)、动脉闭塞和动静脉分流(逆行血流)。对于每种血流状态,在6只大鼠的155根毛细血管中获得了红细胞速度。通过根据闭塞状态下的红细胞速度水平将所有毛细血管分为四组,我们评估了每组毛细血管的平均速度、变异系数(CV)和直方图。从对照状态到动静脉分流状态,每组的平均速度和CV均发生了显著变化。特别是,在股浅动脉或其侧支动脉可能有直接影响的毛细血管组中出现了最显著的变化。尽管动静脉分流在平均水平上改善了毛细血管灌注,但大部分毛细血管仍处于低灌注状态。