首页> 外文期刊>The Journal of extra-corporeal technology >Critical oxygen delivery: the crux of bypass with a special look at the microcirculation.
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Critical oxygen delivery: the crux of bypass with a special look at the microcirculation.

机译:关键的氧气输送:旁路的症结,特别关注微循环。

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The microcirculation can be defined as those vascular structures where respiratory gas flux occurs. These are generally the arterioles, venules, and capillaries. Larger vascular conduits tend to have thicker walls, are at considerable distance from cellular sites of oxygen utilization, and therefore contribute little to oxygen flux. The microcirculation is complex, not a simple straight line of parallel groups of pipes with unidirectional flow. Rather, the complex network has most vascular structures not open (held in reserve) and often has bidirectional flow. Understanding the movement of O2, CO2, and other gases within this network has only recently been the center of focused research. The cardiopulmonary bypass machine is meant to keep the microcirculation normal, but research is demonstrating major changes within. This review looks at what is known today in spontaneously perfusing animals as well as early findings noting differences in cardiopulmonary bypass. We, as yet, do not understand all the mechanisms involved in the changes of the microcirculation so thoughts regarding future areas for research are discussed.
机译:可以将微循环定义为发生呼吸气体通量的那些血管结构。这些通常是小动脉,小静脉和毛细血管。较大的血管导管往往具有较厚的壁,与氧气利用的细胞位置相距相当远,因此对氧气流量的贡献很小。微循环是复杂的,而不是具有单向流动的平行管组的简单直线。而是,复杂的网络具有大多数不开放的血管结构(保留),并且经常具有双向流动。直到最近,了解氧气,二氧化碳和其他气体在该网络中的运动才成为重点研究的中心。心肺旁路机旨在保持微循环正常,但研究表明其内部发生了重大变化。这篇综述着眼于当今自发灌注动物的已知知识,以及发现体外循环的差异的早期发现。到目前为止,我们还不了解微循环变化所涉及的所有机制,因此讨论了有关未来研究领域的想法。

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