Biomechanical Analysis of an Aortic Aneurysm Model and Its Clinical Application to Thoracic Aortic Aneurysms for Defining “Saccular” Aneurysms

Author:

Akai Takafumi1,Hoshina Katsuyuki1,Yamamoto Sota2,Takeuchi Hiroaki2,Nemoto Youkou1,Ohshima Marie3,Shigematsu Kunihiro1,Miyata Tetsuro4,Yamauchi Haruo5,Ono Minoru5,Watanabe Toshiaki1

Affiliation:

1. Division of Vascular Surgery, Department of Surgery, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan

2. Department of Mechanical Engineering, Graduate School, Shibaura Institute of Technology, Tokyo, Japan

3. Interfaculty Initiative in Information Studies/Institute of Industrial Science, The University of Tokyo, Tokyo, Japan

4. Vascular Center, Sanno Hospital and Sanno Medical Center, Tokyo, Japan

5. Division of Cardiac Surgery, Department of Surgery, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan

Abstract

Background We aimed to develop a simple structural model of aortic aneurysms using computer‐assisted drafting ( CAD ) in order to create a basis of definition for saccular aortic aneurysms. Methods and Results We constructed a simple aortic aneurysm model with 2 components: a tube similar to an aorta and an ellipse analogous to a bulging aneurysm. Three parameters, including the vertical and horizontal diameters of the ellipse and the fillet radius, were altered in the model. Using structural analysis with the finite element method, we visualized the distribution of the maximum principal stress ( MPS ) in the aortic wall and identified the area(s) of prominent stress. We then selected patients with thoracic aortic aneurysms in whom the aneurysm expansion rates were followed up and applied the theoretical results to the raw imaging data. The maximum MPS drastically increased at areas where the aspect ratio (vertical/horizontal) was <1, indicating that “horizontally long” hypothetical ellipses should be defined as “saccular” aneurysms. The aneurysm expansion rate for the patients with thoracic aneurysms conforming to these parameters was significantly high. Further, “vertically long” ellipses with a small fillet might be candidates for saccular aneurysms; however, the clinical data did not support this. Conclusions Based on the biomechanical analysis of a simple aneurysm model and the clinical data of the thoracic aortic aneurysms, we defined “horizontally long” aortic aneurysms with an aspect ratio of <1 as “saccular” aneurysms.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine

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