Published July 1983 | Version v1
Journal article

CT-number variability in thoracic geometry

  • 1. Mayo Clinic and Mayo Foundation, Rochester, MN

Description

The use of absolute CT numbers for in vivo tissue characterization is compromised by a number of technical and geometrical factors. A phantom simulating thoracic geometry and containing intrapulmonary ''features'' was scanned on three CT scanners allowing for assessment of CT-number variations with a wide number of scanning and geometric parameters. It was found that, with thoracic geometry, the absolute CT numbers of intrapulmonary features (e.g., solitary pulmonary nodules) can vary significantly due to a number of CT scanning parameters, such as geometry, CT scanner used, and/or time. Such variations must be taken into account when establishing criteria for characterizing tissue types using CT numbers. However, results show that variations in quantitative behavior with reasonable changes in patient geometry do not preclude meaningful characterization of solitary lung nodules (using CT-number averages) using CT scans for the tree CT scanners studied, providing CT-number threshold data are derived from the same model scanner and operating conditions. The use of CT-number patterns within high-density intrapulmonary pathology (e.g. solitary pulmonary nodules) is compromised by the fact that high CT-number patterns were found to be a function of the reconstruction filter used and object size as well as being influenced by details of the surrounding medium

Additional details

Publishing Information

Journal Title
AJR, Am. J. Roentgenol.
Journal Volume
141
Journal Issue
1
Series
AJR, Am. J. Roentgenol.
Journal Page Range
135-140
ISSN
0361-803X

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
15024851
Subject category
S62: RADIOLOGY AND NUCLEAR MEDICINE;
Descriptors DEI
CHEST; COMPUTERIZED TOMOGRAPHY; GEOMETRY; IRRADIATION PROCEDURES; LUNGS; PHANTOMS
Descriptors DEC
BODY; BODY AREAS; DIAGNOSTIC TECHNIQUES; MATHEMATICS; MOCKUP; ORGANS; RESPIRATORY SYSTEM; STRUCTURAL MODELS; TOMOGRAPHY