Search PubMed⌕ Search

PubMed · 3840778

Flow determination using computed tomography: application to aortic dissection. Part I.

Abstract

The CT method of flow determination evaluated in this study was based on the application of contrast enhancement dynamics. In order to characterize flow, such parameters as mean transit time, rise time, peak CT value, curve width and variance, and others were derived from the venoarterial indicator dilution curves using a perfect mixers-in-series model of curve fitting analysis and a bolus injection of contrast medium. The technique was first validated in a steady state phantom model that simulated in vivo conditions of right-sided mixing closely by the introduction of a number of mixers. A series of flows through small tubes was measured. Good correlation was obtained (r = .85). For a fixed number of mixers, the central second moment of the primary peak of the indicator dilution curve or variance decreased with increasing flow and peak CT value increased. Applied to the clinical situation, this method would allow characterization of blood flow using an intravenous bolus of contrast.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

D F Guthaner, M Nassi, B Bradley, R Tello. 1985. Flow determination using computed tomography: application to aortic dissection. Part I.. https://doi.org/10.1097/00004424-198510000-00005

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Imaging of aortic abnormalities with contrast-enhanced ultrasound. A pictorial comparison with CT.

Aortic abnormalities are commonly encountered and may represent a diagnostic challenge in patients with acute or chronic clinical symptoms. Contrast-enhanced ultrasound (CEUS) with low mechanical index (low MI) is a new promising method in the diagnosis and follow-up of pathological aortic lesions. CEUS with SonoVue allows a more rapid and noninvasive diagnosis, especially in critical patients because of its bedside availability. This review compares CEUS findings with those documented on computed tomography angiography (CTA), allowing the reader to appreciate the usefulness of CEUS in this clinical situation.

Aortic Dissection↗

Risk of local adverse events by gender following cardiac catheterization.

PURPOSE: To assess the reason for the relative high risk of local complications for women following cardiac catheterization by evaluating the associations between gender, sheath size, and local adverse outcomes following cardiac catheterization. METHODS: The data used in this study were obtained from a portion of the American College of Cardiology-National Cardiovascular Data Registry (ACC-NCDR), which included 13 878 patients who underwent cardiac catheterization at one of 59 participating cardiac catheterization institutions throughout the United States during late 2003. Rates of serious local vascular adverse events were calculated by gender following cardiac catheterization, by type of vascular hemostasis used, stratified by arterial sheath size. RESULTS: Serious local vascular events were reported in 3.54% of patients, most commonly hematoma (2.00%). The relative risk for women of any vascular complication was 1.40 [95%CI = 1.17, 1.67, p = 0.0002]. A statistically significant relative risk for woman was evident when collagen plug devices or manual compression alone were used as the first method for hemostasis. The rate of vascular complications increased progressively with increasing sheath size, more so in women than in men. CONCLUSIONS: High relative risk for women of local vascular complications following cardiac catheterization was demonstrated with use of manual compression, as well as with collagen plug devices to control femoral artery bleeding. Large sheath size is associated with both a relatively high absolute risk and a high relative risk for women. Knowledge of this information should be considered by interventional cardiologists in making decisions on how to achieve hemostasis following cardiac catheterization.

Aortic Dissection↗