Stress-Based Plaque Vulnerability Index and Assessment for Carotid Atherosclerotic Plaques Using Patient-Specific Vessel Material Properties
Author(s) -
Qingyu Wang,
Dalin Tang,
Gádor Cantón,
Zheyang Wu,
Thomas S. Hatsukami,
Kristen L. Billiar,
Chun Yuan
Publication year - 2018
Publication title -
molecular and cellular biomechanics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.134
H-Index - 29
eISSN - 1556-5300
pISSN - 1556-5297
DOI - 10.32604/mcb.2018.04572
Subject(s) - vulnerability (computing) , medicine , vulnerable plaque , cardiology , disease , index (typography) , computer science , computer security , world wide web
Cardiovascular diseases are closely linked to atherosclerotic plaque development and rupture. Assessment of plaque vulnerability is of fundamental significance to cardiovascular research and disease diagnosis, prevention, treatment and management. Magnetic resonance image (MRI) data of carotid atherosclerotic plaques from 8 patients (5 male, 3 female; age: 62–83, mean=71) were acquired at the University of Washington (UW), Seattle by the Vascular Imaging Laboratory (VIL) with written informed consent obtained. Patient-specific vessel material properties were quantified using Cine MRI data for modeling use. 3D thin-layer models were used to obtain plaque stress and strain for plaque assessment. A stress-based plaque vulnerability index (SPVI) was proposed to combine mechanical analysis, plaque morphology and composition for more complete carotid plaque vulnerability assessment. The five intervals (unit: kPa) [0, 46.8), [46.8, 80), [80, 92), [92, 103), and [103, +∞) from in vivo material models were used for SPVI values of 0, 1, 2, 3 and 4, respectively. The optimized agreement rate was 85.19%. The use of patient-specific material properties in plaque models could potentially improve the accuracy of model stress/strain calculations. SPVI has the potential to improve the current image-based screening and plaque vulnerability assessment schemes.
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