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Bronchoarterial ratio on thin section CT: comparison between high altitude and sea level.

机译:薄层CT上的支气管动脉比率:高海拔和海平面之间的比较。

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PURPOSE: Our goal was to measure normal bronchial to accompanying pulmonary arterial diameter ratios and normal bronchial wall thickness on thin section CT at high altitude and at sea level. METHOD: Seventeen normal, healthy, nonsmoking subjects living at 1,600 m altitude and 16 living at sea level underwent thin section CT (1.5 to 2.0 mm collimation). All images were photographed at window levels of -450 and -700 HU and window width of 1,500-1,600 HU. Internal diameters of the segmental and subsegmental bronchi were measured and compared with the diameter of the adjacent pulmonary artery. Bronchial wall thickness of each bronchus was measured. Only bronchi and arteries seen in cross section and within 1 mm from each other were included in the analysis. RESULTS: Four hundred sixty-seven bronchi (215 at high altitude, 252 at sea level) were assessed. At window level of -450 HU, the bronchoarterial ratio was 0.76 +/- 0.14 (mean +/- SD) at altitude and 0.62 +/- 0.13 at sea level (p < 0.001). Bronchial wall thickness measured 0.92 +/- 0.09 mm (mean +/- SD) at altitude and 1.12 +/- 0.19 mm at sea level (p < 0.001). At window level of -700 HU, there was an artifactual decrease in the bronchoarterial diameter ratios and an increase in bronchial wall thickness. CONCLUSION: Bronchoarterial ratio increases and bronchial wall thickness decreases with altitude. These findings are presumably related to hypoxic bronchodilatation and vasoconstriction.
机译:目的:我们的目标是在高海拔和海平面的薄层CT上测量正常支气管与伴随的肺动脉直径之比和正常支气管壁厚。方法:对17名生活在1,600 m高度的正常,健康,不吸烟的受试者和16名生活在海平面的受试者进行了薄层CT(准直1.5至2.0 mm)。所有图像均在-450和-700 HU的窗口水平以及1,500-1,600 HU的窗口宽度下拍摄。测量节段和节段支气管的内径,并将其与相邻肺动脉的直径进行比较。测量每个支气管的支气管壁厚度。分析中仅包括横截面内且彼此之间相距不超过1毫米的支气管和动脉。结果:评估了67支支气管(高海拔215支,海平面252支)。在-450 HU的窗口水平下,海拔高度的支气管动脉比率为0.76 +/- 0.14(平均+/- SD),而在海平面处的支气管动脉比率为0.62 +/- 0.13(p <0.001)。支气管壁厚在海拔高度测量为0.92 +/- 0.09毫米(平均+/- SD),在海平面测量为1.12 +/- 0.19毫米(p <0.001)。在-700 HU的窗口水平下,支气管动脉直径比发生人为减少,支气管壁厚增加。结论:随着海拔的升高,支气管动脉比率增加,支气管壁厚度减少。这些发现可能与低氧性支气管扩张和血管收缩有关。

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