Pittman Roland N
Department of Physiology, Medical College of Virginia Campus, Virginia Commonwealth University, Richmond, VA 23298-0551, USA.
Microcirculation. 2005 Jan-Feb;12(1):59-70. doi: 10.1080/10739680590895064.
The cardiovascular system is responsible for maintaining an adequate convective delivery of oxygen to the smallest branches of the network of blood vessels-the microcirculation-from which oxygen passes to the parenchymal cells by passive diffusion. The aim of this brief review is to trace the development of the study of oxygen transport from the point of view of the microcirculation. August Krogh performed measurements that allowed him to use his keen insight to draw conclusions about oxygen transport that remained the foundations of this field for decades. After an extended period of neglect, Duling rekindled interest in the field of oxygen transport by discovering that substantial amounts of oxygen diffused from the arteriolar network. Subsequent investigations confirmed this finding ill various vascular beds and extended these studies to capillaries and venules. The important contributions of computational modeling and new techniques in intravital microscopy continue to lead to more advances in our understanding of the role of the microcirculation in the supply of oxygen to tissues. Current work is applying the concepts and principles learned in normal tissues to pathophysiological situations, as well as increasing our understanding of artificial oxygen carriers, oxygen sensing, and the connections between nitric oxide and oxygen transport.
心血管系统负责维持氧气向血管网络最细小分支——微循环的充分对流输送,氧气通过被动扩散从微循环进入实质细胞。这篇简短综述的目的是从微循环的角度追溯氧气运输研究的发展历程。奥古斯特·克罗格进行了相关测量,凭借其敏锐的洞察力得出了关于氧气运输的结论,这些结论在数十年间一直是该领域的基础。在经历了长时间的忽视后,杜林通过发现大量氧气从小动脉网络扩散,重新点燃了人们对氧气运输领域的兴趣。随后的研究在各种血管床中证实了这一发现,并将这些研究扩展到了毛细血管和小静脉。计算建模和活体显微镜新技术的重要贡献继续推动我们在理解微循环在组织氧气供应中的作用方面取得更多进展。当前的工作正在将在正常组织中学到的概念和原理应用于病理生理情况,同时增进我们对人工氧载体、氧传感以及一氧化氮与氧气运输之间联系的理解。