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精选贡献:失重和重力增加期间肺灌注的重新分布

Selected contribution: redistribution of pulmonary perfusion during weightlessness and increased gravity.

作者信息

Glenny R W, Lamm W J, Bernard S L, An D, Chornuk M, Pool S L, Wagner W W, Hlastala M P, Robertson H T

机构信息

Department of Medicine, University of Washington School of Medicine, Seattle, Washington 98195, USA.

出版信息

J Appl Physiol (1985). 2000 Sep;89(3):1239-48. doi: 10.1152/jappl.2000.89.3.1239.

Abstract

To compare the relative contributions of gravity and vascular structure to the distribution of pulmonary blood flow, we flew with pigs on the National Aeronautics and Space Administration KC-135 aircraft. A series of parabolas created alternating weightlessness and 1.8-G conditions. Fluorescent microspheres of varying colors were injected into the pulmonary circulation to mark regional blood flow during different postural and gravitational conditions. The lungs were subsequently removed, air dried, and sectioned into approximately 2 cm(3) pieces. Flow to each piece was determined for the different conditions. Perfusion heterogeneity did not change significantly during weightlessness compared with normal and increased gravitational forces. Regional blood flow to each lung piece changed little despite alterations in posture and gravitational forces. With the use of multiple stepwise linear regression, the contributions of gravity and vascular structure to regional perfusion were separated. We conclude that both gravity and the geometry of the pulmonary vascular tree influence regional pulmonary blood flow. However, the structure of the vascular tree is the primary determinant of regional perfusion in these animals.

摘要

为比较重力和血管结构对肺血流分布的相对贡献,我们与猪一同乘坐美国国家航空航天局的KC - 135飞机飞行。一系列抛物线创造出交替的失重和1.8倍重力条件。将不同颜色的荧光微球注入肺循环,以标记不同姿势和重力条件下的局部血流。随后取出肺脏,风干并切成约2立方厘米的小块。测定不同条件下每小块的血流情况。与正常重力和增加的重力相比,失重期间灌注不均一性无显著变化。尽管姿势和重力改变,但每个肺小块的局部血流变化很小。通过多元逐步线性回归,分离出重力和血管结构对局部灌注的贡献。我们得出结论,重力和肺血管树的几何形状均影响局部肺血流。然而,血管树结构是这些动物局部灌注的主要决定因素。

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