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首页> 外文期刊>Journal of Cerebral Blood Flow and Metabolism: Official Journal of the International Society of Cerebral Blood Flow and Metabolism >Occlusion of cortical ascending venules causes blood flow decreases, reversals in flow direction, and vessel dilation in upstream capillaries.
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Occlusion of cortical ascending venules causes blood flow decreases, reversals in flow direction, and vessel dilation in upstream capillaries.

机译:皮质上升小静脉的阻塞导致血液流量减少,流动方向逆转以及上游毛细血管扩张。

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摘要

The accumulation of small strokes has been linked to cognitive dysfunction. Although most animal models have focused on the impact of arteriole occlusions, clinical evidence indicates that venule occlusions may also be important. We used two-photon excited fluorescence microscopy to quantify changes in blood flow and vessel diameter in capillaries after occlusion of single ascending or surface cortical venules as a function of the connectivity between the measured capillary and the occluded venule. Clotting was induced by injuring the target vessel wall with femtosecond laser pulses. After an ascending venule (AV) occlusion, upstream capillaries showed decreases in blood flow speed, high rates of reversal in flow direction, and increases in vessel diameter. Surface venule occlusions produced similar effects, unless a collateral venule provided a new drain. Finally, we showed that AVs and penetrating arterioles have different nearest-neighbor spacing but capillaries branching from them have similar topology, which together predicted the severity and spatial extent of blood flow reduction after occlusion of either one. These results provide detailed insights into the widespread hemodynamic changes produced by cortical venule occlusions and may help elucidate the role of venule occlusions in the development of cognitive disorders and other brain diseases.
机译:小中风的积累与认知功能障碍有关。尽管大多数动物模型都关注小动脉闭塞的影响,但临床证据表明,小静脉闭塞也可能很重要。我们使用双光子激发荧光显微镜来量化单个上升或表面皮层小静脉闭塞后毛细血管中血流和血管直径的变化,该变化是所测毛细管与被闭塞的小静脉之间连通性的函数。通过用飞秒激光脉冲伤害目标血管壁来诱发凝血。在小静脉(AV)阻塞后,上游毛细血管显示血流速度降低,血流方向逆转率高,血管直径增加。除非附带的小静脉提供新的引流,否则表面小静脉阻塞会产生相似的效果。最后,我们表明房颤和穿透性小动脉具有不同的近邻间距,但从它们分支的毛细血管具有相似的拓扑结构,共同预测了任一种闭塞后血流减少的严重性和空间范围。这些结果为皮质小静脉闭塞产生的广泛的血液动力学变化提供了详细的见解,并可能有助于阐明小静脉闭塞在认知障碍和其他脑部疾病发展中的作用。

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