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Regional pulmonary blood flow in humans and dogs by 4D computed tomography.

机译:通过4D计算机断层扫描在人和狗中的局部肺血流。

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RATIONALE AND OBJECTIVES: Pulmonary vascular control mechanisms are complex and likely to differ between species. We wish to quantify regional perfusion and the effects of gravity using computed tomography. MATERIALS AND METHODS: Sequential density measurements following the administration of a bolus of iodinated contrast medium were acquired from four healthy human subjects and four dogs. RESULTS: In humans, perfusion (Q) was linear throughout most of the range of vertical height, with an overall gradient of -2.6% cm(-1). However, when perfusion was normalized to "tissue" density (blood plus tissue: sQt), maximum perfusion occurred around the mid-range of vertical height, being 9% (range 1-22%) greater than either the dorsal or ventral extreme. Within discrete transverse axial sections, concentric zones of perfusion centered on blood vessels were demonstrated. The relationship between sQt and vertical height in dogs was distinctly linear, with a gradient of -7.2% cm(-1). In dogs, the median gradient of Q was -13.6% cm(-1) (range -9.7 to -17.1%). CONCLUSIONS: Differences in regional pulmonary perfusion, particularly the vertical gradient observed in humans and dogs, may in part reflect anatomic differences between the symmetric dichotomous branching structure of the human pulmonary vasculature and the more asymmetrical structure found in dogs.
机译:理由和目标:肺血管控制机制很复杂,并且在物种之间可能有所不同。我们希望使用计算机断层扫描来量化区域灌注和重力的影响。材料与方法:从四名健康人类受试者和四只狗获得大剂量碘化造影剂给药后的顺序密度测量。结果:在人类中,在大多数垂直高度范围内,灌注(Q)都是线性的,总体梯度为-2.6%cm(-1)。但是,将灌注标准化为“组织”密度(血液加组织:sQt)时,最大灌注发生在垂直高度的中部附近,比背侧或腹侧大9%(范围1-22%)。在离散的横向轴向截面内,显示了以血管为中心的同心灌注区域。 sQt与狗的垂直高度之间的关系是线性的,梯度为-7.2%cm(-1)。在狗中,Q的中值梯度为-13.6%cm(-1)(范围-9.7至-17.1%)。结论:区域肺灌注的差异,特别是在人和狗中观察到的垂直梯度,可能部分反映了人肺血管的对称二分性分支结构与狗中更为不对称的结构之间的解剖学差异。

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