Comparison of Different Material Models to Simulate 3-D Breast Deformations Using Finite Element Analysis

Author:

Eder Maximilian,Raith Stefan,Jalali Jalil,Volf Alexander,Settles Markus,Machens Hans-Günther,Kovacs Laszlo

Publisher

Springer Science and Business Media LLC

Subject

Biomedical Engineering

Reference32 articles.

1. American Cancer Society, Breast Cancer Facts & Figures 2011–2012. http://www.cancer.org/acs/groups/content/@epidemiologysurveilance/documents/document/acspc-030975.pdf . Accessed 29 July 2013.

2. Aspert, N., D. Santa-Cruz, and T. Ebrahimi. Mesh: measuring errors between surfaces using the Hausdorff distance. In: Proceedings of the IEEE International Conference on Multimedia and Expo, Lausanne, Switzerland, 2002, pp. 705–708.

3. Azar, F., D. Metaxas, and M. Schnall. A deformable finite element model of the breast for predicting mechanical deformations under external perturbations. Acad. Radiol. 8:965–975, 2001.

4. Azar, F., D. Metaxas, and M. Schnall. Methods for modeling and predicting mechanical deformations of the breast under external perturbations. Med. Image Anal. 6:1–27, 2002.

5. Del Palomar, A., B. Calvo, J. Herrero, J. Lopez, and M. Doblare. A finite element model to accurately predict real deformations of the breast. Med. Eng. Phys. 30:1089–1097, 2008.

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