Normalized Wall Index Specific and MRI-Based Stress Analysis of Atherosclerotic Carotid Plaques : A Study Comparing Acutely Symptomatic and Asymptomatic Patients
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概要
- 論文の詳細を見る
Background: Biomechanical stresses play an important role in determining plaque stability. Quantification of these simulated stresses can be potentially used to assess plaque vulnerability and differentiate different patient groups. Methods and Results: 54 asymptomatic and 45 acutely symptomatic patients underwent in vivo multicontrast magnetic resonance imaging (MRI) of the carotid arteries. Plaque geometry used for nite element analysis was derived from in vivo MRI at the sites of maximum and minimum plaque burden. In total, 198 slices were used for the computational simulations. A pre-shrink technique was used to refine the simulation. Maximum principle stress at the vulnerable plaque sites (ie, critical stress) was extracted for the selected slices and a comparison was performed between the 2 groups. Critical stress in the slice with maximum plaque burden is significantly higher in acutely symptomatic patients as compared to asymptomatic patients (median, inter quartile range: 198.0 kPa (119.8-359.0 kPa) vs 138.4 kPa (83.8-242.6 kPa), P=0.04). No significant difference was found in the slice with minimum plaque burden between the 2 groups (196.7 kPa (133.3-282.7 kPa) vs 182.4 kPa (117.2-310.6 kPa), P=0.82). Conclusions: Acutely symptomatic carotid plaques have significantly high biomechanical stresses than asymptomatic plaques. This might be potentially useful for establishing a biomechanical risk stratification criteria based on plaque burden in future studies. (Circ J 2010; 74: 2360-2364)
- 社団法人 日本循環器学会の論文
- 2010-10-25
著者
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LI Zhi
School of Chinese Medicine, Hong Kong Baptist University
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Graves Martin
University Department Of Radiology Addenbrooke's Hospital
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Gillard Jonathan
University of Cambridge
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Graves Martin
University Department Of Radiology University Of Cambridge
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ZHU Chengcheng
University Department of Radiology, University of Cambridge
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TENG Zhongzhao
University Department of Radiology, University of Cambridge
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SADAT Umar
University Department of Radiology, University of Cambridge
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YOUNG Victoria
University Department of Radiology, University of Cambridge
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Gillard Jonathan
University Department Of Radiology University Of Cambridge
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Gillard Jonathan
University Department Of Radiology Addenbrooke's Hospital
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Li Zhi
School Of Biological Science & Medical Engineering Southeast University
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Teng Zhongzhao
University Department Of Radiology University Of Cambridge
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Young Victoria
University Department Of Radiology University Of Cambridge
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Sadat Umar
University Department Of Radiology University Of Cambridge
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Zhu Chengcheng
University Department Of Radiology University Of Cambridge
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