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区域通气分布的分形性质。

Fractal nature of regional ventilation distribution.

作者信息

Altemeier W A, McKinney S, Glenny R W

机构信息

University of Washington, Seattle, Washington 98195-6522, USA.

出版信息

J Appl Physiol (1985). 2000 May;88(5):1551-7. doi: 10.1152/jappl.2000.88.5.1551.

Abstract

High-resolution measurements of pulmonary perfusion reveal substantial spatial heterogeneity that is fractally distributed. This observation led to the hypothesis that the vascular tree is the principal determinant of regional blood flow. Recent studies using aerosol deposition show similar ventilation heterogeneity that is closely correlated with perfusion. We hypothesize that ventilation has fractal characteristics similar to blood flow. We measured regional ventilation and perfusion with aerosolized and injected fluorescent microspheres in six anesthetized, mechanically ventilated pigs in both prone and supine postures. Adjacent regions were clustered into progressively larger groups. Coefficients of variation were calculated for each cluster size to determine fractal dimensions. At the smallest size lung piece, local ventilation and perfusion are highly correlated, with no significant difference between ventilation and perfusion heterogeneity. On average, the fractal dimension of ventilation is 1.16 in the prone posture and 1. 09 in the supine posture. Ventilation has fractal properties similar to perfusion. Efficient gas exchange is preserved, despite ventilation and perfusion heterogeneity, through close correlation. One potential explanation is the similar geometry of bronchial and vascular structures.

摘要

肺灌注的高分辨率测量显示出大量呈分形分布的空间异质性。这一观察结果引出了血管树是局部血流主要决定因素的假说。最近使用气溶胶沉积的研究显示出与灌注密切相关的类似通气异质性。我们推测通气具有与血流相似的分形特征。我们在六只麻醉、机械通气的猪处于俯卧位和仰卧位时,用气雾化和注射的荧光微球测量了局部通气和灌注。相邻区域被聚集成逐渐更大的组。计算每个聚类大小的变异系数以确定分形维数。在最小尺寸的肺组织块中,局部通气和灌注高度相关,通气和灌注异质性之间无显著差异。平均而言,俯卧位时通气的分形维数为1.16,仰卧位时为1.09。通气具有与灌注相似的分形特性。尽管存在通气和灌注异质性,但通过密切的相关性仍能保持有效的气体交换。一种可能的解释是支气管和血管结构的几何形状相似。

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