DocumentCode :
129820
Title :
Non-invasive vascular modulography: An inverse problem method for imaging the local elasticity of atherosclerotic carotid plaques
Author :
Poree, Jonathan ; Garcia, D. ; Chayer, Boris ; Soulez, Gilles ; Ohayon, Jacques ; Cloutier, Guy
Author_Institution :
Lab. of Biorheology & Med. Ultrasonics (LBUM), Univ. of Montreal Hosp. Res. Center (CRCHUM), Montreal, QC, Canada
fYear :
2014
fDate :
3-6 Sept. 2014
Firstpage :
1798
Lastpage :
1801
Abstract :
Quantifying biomechanical properties of atherosclerotic plaques may help preventing strokes. Non-invasive vascular elastography (NIVE) in superficial carotid arteries has the potential to assess such properties and to discriminate plaque components (e.g., fibrosis, lipid and calcium) through elastograms (i.e., spatial strain distribution). However, the elasticity and morphology of the vessel wall, cannot be assessed directly from strain maps since the stress distribution remains unknown. In this study, we describe an unsupervised inverse problem for elasticity mapping (non invasive vascular modulography), which is capable of reconstructing a heterogeneous Young´s modulus distribution of a plaque. High resolution elastograms were computed from ultrasound compounded plane wave images using the constrained lagrangian speckle model estimator (constrained LSME). Von mises strain maps were combined with a stress map, evaluated using a parametric finite element model (PFEM), and used to highlight mechanical heterogeneities and compute Young modulus maps (Modulograms).
Keywords :
Young´s modulus; bioacoustics; biomechanics; elasticity; finite element analysis; internal stresses; inverse problems; ultrasonic imaging; Modulograms; Von mises strain maps; atherosclerotic carotid plaques; biomechanical properties; calcium; compounded plane wave images; constrained lagrangian speckle model estimator; elastograms; fibrosis; heterogeneous Young´s modulus; imaging; inverse problem method; lipid; local elasticity; morphology; noninvasive vascular elastography; noninvasive vascular modulography:; parametric finite element model; spatial strain distribution; stress distribution; stress map; strokes; vessel wall; Acoustics; Computational modeling; Elasticity; Imaging; Strain; Ultrasonic imaging; Young´s modulus; Elastography; circular waves; diverging waves; modulography; ultrafast ultrasound;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Ultrasonics Symposium (IUS), 2014 IEEE International
Conference_Location :
Chicago, IL
Type :
conf
DOI :
10.1109/ULTSYM.2014.0446
Filename :
6932278
Link To Document :
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