DocumentCode
746961
Title
Sonography and quantitative measurements
Author
Jorgensen, C.S. ; Knauss, D. ; Hager, H. ; Briggs, G.A.D.
Author_Institution
SAM Lab., Skejby Univ. Hospital, Denmark
Volume
15
Issue
1
fYear
1996
Firstpage
35
Lastpage
41
Abstract
A preliminary study of coronary artery wall topography and mechanical properties is presented. The aim of this study was to give a brief demonstration of scanning acoustic microscopy (SAM) as a sonographic technique, and to apply the time-resolved SAM (TR-SAM) technique for quantification of coronary artery wall mechanical properties under passive conditions ex-vivo, and compare the data for the tunica externa and tunica media of the wall. The authors chose the diagonal branches of the left anterior descending coronary artery (LADCA) of young healthy pigs for measurements. It is concluded that SAM is well suited for sonography at the micrometer level, and TR-SAM provides a refined tool for biorheological quantification ex-vivo, provided that a number of physical factors influencing measurements and tissue properties are considered and dealt with. With time and effort, SAM may also become a valuable tool for recognizing important relations of composition and structure to function. For future SAM studies of arteries, more detailed analyses of layer interfaces and better models of biorheology should be applied to describe the anisotropy and nonlinear viscoelasticity of the wall
Keywords
acoustic microscopy; biological techniques; biorheology; cardiology; viscoelasticity; biorheological quantification; coronary artery wall topography; diagonal branches; layer interfaces; left anterior descending coronary artery; mechanical properties; micrometer level; nonlinear viscoelasticity; physical factors; scanning acoustic microscopy; time-resolved technique; tissue properties; tunica externa; tunica media; young healthy pigs; Acoustic measurements; Acoustic pulses; Acoustic waves; Arteries; Mechanical factors; Mechanical variables measurement; Optical microscopy; Surfaces; Transmission electron microscopy; Ultrasonography;
fLanguage
English
Journal_Title
Engineering in Medicine and Biology Magazine, IEEE
Publisher
ieee
ISSN
0739-5175
Type
jour
DOI
10.1109/51.482792
Filename
482792
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