Key result
Electron-beam computed tomography revealed that patients with primary pulmonary hypertension had significantly lower and uniform pulmonary perfusion compared to healthy subjects.
Why the study?
Can electron-beam computed tomography quantify differences in the distribution of pulmonary perfusion between patients with primary pulmonary hypertension and healthy subjects?
Observational (n=10)
Can electron-beam computed tomography quantify differences in the distribution of pulmonary perfusion between patients with primary pulmonary hypertension and healthy subjects?
Electron-beam computed tomography can effectively quantify physiological differences in pulmonary perfusion distribution and vasodilator response in patients with primary pulmonary hypertension.
EBCT may quantify perfusion differences in primary pulmonary hypertension; leaves open its clinical or prognostic utility pending prospective validation.
Traditionally, a gravitational distribution of pulmonary perfusion has been described in normal subjects. How this may vary in patients with primary pulmonary hypertension (PPH), which is characterised by vascular obstruction due to intimal thickening, smooth muscle cell proliferation and episodes of thrombosis in small and medium sized pulmonary arteries, is unclear. In this study the potential of electron-beam computed tomography in quantifying the distribution of pulmonary perfusion in patients with PPH was investigated. Contrast-enhanced sections were obtained during inspiration in the supine position at baseline and during administration of the vasodilator adenosine in five healthy subjects and five patients with PPH. Under each experimental condition, regions of interest were placed along the nondependent-to-dependent axis and values for relative perfusion derived. In healthy individuals, a marked nondependent-to-dependent gradient in perfusion was observed. By contrast, in PPH, perfusion values were significantly lower and were uniform across the lung section, although the administration of adenosine resulted in increased perfusion in all regions of interest. Electron-beam computed tomography provides physiological and structural information about the pulmonary circulation in subjects with pulmonary vascular disease.
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Jones et al. (2004) conducted an observational in Primary pulmonary hypertension (n=10). Electron-beam computed tomography vs. Healthy subjects was evaluated on Distribution of pulmonary perfusion. Electron-beam computed tomography revealed that patients with primary pulmonary hypertension had significantly lower and uniform pulmonary perfusion compared to healthy subjects.
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