Patient-specific finite element analysis of ascending aorta aneurysms.

نویسندگان

  • Caitlin Martin
  • Wei Sun
  • John Elefteriades
چکیده

Catastrophic ascending aorta aneurysm (AsAA) dissection and rupture can be prevented by elective surgical repair, but identifying individuals at risk remains a challenge. Typically the decision to operate is based primarily on the overall aneurysm size, which may not be a reliable indicator of risk. In this study, AsAA inflation and rupture was simulated in 27 patient-specific finite element models constructed from clinical CT imaging data and tissue mechanical testing data from matching patients. These patients included n = 8 with concomitant bicuspid aortic valve (BAV), n = 10 with bovine aortic arch (BAA), and n = 10 with neither BAV nor BAA. AsAA rupture risk was found to increase with elevated systolic wall stress and tissue stiffness. The aortic size index was sufficient for identifying the patients with the lowest risk of rupture, but unsuitable for delineating between patients at moderate and high risk. There was no correlation between BAV or BAA and AsAA rupture risk; however, the AsAA morphology was different among these patients. These results support the use of mechanical parameters such as vessel wall stress and tissue stiffness for AsAA presurgical evaluation.

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Patient-specific finite element analysis of ascending aorta

3/11/2015 18 19 Word count: 5,513 20 21 For correspondence: 22 Wei Sun, Ph.D. 23 Associate Professor 24 The Wallace H. Coulter Department of Biomedical Engineering 25 Georgia Institute of Technology and Emory University 26 Technology Enterprise Park, Room 206 27 387 Technology Circle, Atlanta, GA 30313-2412 28 Tel:(404) 385-1245; Email: [email protected] 29 30 31 32 Articles in PresS. Am J...

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عنوان ژورنال:
  • American journal of physiology. Heart and circulatory physiology

دوره 308 10  شماره 

صفحات  -

تاریخ انتشار 2015