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Cerebral Microcirculation and Oxygen Tension in the Human Secondary Cortex

机译:人次要皮层中的脑微循环和氧张力

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摘要

The three-dimensional spatial arrangement of the cortical microcirculatory system is critical for understanding oxygen exchange between blood vessels and brain cells. A three-dimensional computer model of a 3 × 3 × 3 mm3 subsection of the human secondary cortex was constructed to quantify oxygen advection in the microcirculation, tissue oxygen perfusion, and consumption in the human cortex. This computer model accounts for all arterial, capillary and venous blood vessels of the cerebral microvascular bed as well as brain tissue occupying the extravascular space. Microvessels were assembled with optimization algorithms emulating angiogenic growth; a realistic capillary bed was built with space filling procedures. The extravascular tissue was modeled as a porous medium supplied with oxygen by advection–diffusion to match normal metabolic oxygen demand. The resulting synthetic computer generated network matches prior measured morphometrics and fractal patterns of the cortical microvasculature. This morphologically accurate, physiologically consistent, multi-scale computer network of the cerebral microcirculation predicts the oxygen exchange of cortical blood vessels with the surrounding gray matter. Oxygen tension subject to blood pressure and flow conditions were computed and validated for the blood as well as brain tissue. Oxygen gradients along arterioles, capillaries and veins agreed with in vivo trends observed recently in imaging studies within experimental tolerances and uncertainty.
机译:皮质微循环系统的三维空间排列对于理解血管和脑细胞之间的氧交换至关重要。构建了人类次级皮层3×3×3 mm 3 子区域的三维计算机模型,以定量微循环中的氧平流,组织氧灌注和人皮层的消耗。该计算机模型考虑了脑微血管床的所有动脉,毛细血管和静脉血管以及占据血管外空间的脑组织。微血管用模拟血管生成的优化算法组装。用空间填充程序构建了逼真的毛细管床。血管外组织被建模为通过对流扩散向氧气供应的多孔介质,以匹配正常的代谢需氧量。生成的合成计算机生成网络与皮质微脉管系统先前测得的形态和分形图案相匹配。大脑微循环的这种形态精确,生理上一致的多尺度计算机网络可预测皮质血管与周围灰质的氧交换。计算了受血压和血流状况影响的氧气张力,并对血液以及脑组织进行了验证。沿小动脉,毛细血管和静脉的氧气梯度与最近在成像研究中观察到的体内趋势在实验耐受性和不确定性范围内一致。

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