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Penetrating arterioles are a bottleneck in the perfusion of neocortex

机译:穿透性小动脉是新皮层灌注的瓶颈

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摘要

Penetrating arterioles bridge the mesh of communicating arterioles on the surface of cortex with the subsurface microvascular bed that feeds the underlying neural tissue. We tested the conjecture that penetrating arterioles, which are positioned to regulate the delivery of blood, are loci of severe ischemia in the event of occlusion. Focal photothrombosis was used to occlude single penetrating arterioles in rat parietal cortex, and the resultant changes in flow of red blood cells were measured with two-photon laser-scanning microscopy in individual subsurface microvessels that surround the occlusion. We observed that the average flow of red blood cells nearly stalls adjacent to the occlusion and remains within 30% of its baseline value in vessels as far as 10 branch points downstream from the occlusion. Preservation of average flow emerges 350 μm away; this length scale is consistent with the spatial distribution of penetrating arterioles. We conclude that penetrating arterioles are a bottleneck in the supply of blood to neocortex, at least to superficial layers.
机译:穿透性小动脉桥接皮质表面上的连通小动脉的网状细胞与为基础神经组织提供营养的地下微血管床。我们测试了这样一种推测,即在发生阻塞时,定位于调节血液输送的穿透性小动脉是严重缺血的场所。局灶性光血栓形成用于阻塞大鼠顶叶皮层中的单个穿透性小动脉,并通过双光子激光扫描显微镜在围绕闭塞的单个亚表面微血管中测量红细胞流量的变化。我们观察到红细胞的平均流量几乎在阻塞附近停滞,并在阻塞下游10个分支点处保持在其基线值的30%以内。保持平均流量的距离为350μm。该长度尺度与穿透性小动脉的空间分布一致。我们得出的结论是,穿透性小动脉是新皮层(至少是表层)血液供应的瓶颈。

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