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ARUP; ISBN: 978-0-9562121-5-3 - CMBBE 2012 - Cardiff University

ARUP; ISBN: 978-0-9562121-5-3 - CMBBE 2012 - Cardiff University

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1. Brock K. K., Hollister S. J., Dawson L. A. and Balter J. M., Technical note:<br />

Creating a four dimensional model of the liver using finite element analysis,<br />

Medical Physics, 2002, Vol. 29, No. 7, 1403-1405.<br />

2. J.M. Balter, L.A. Dawson, S. Kazanjian, C. McGinn, K.k. Brock, T. Lawrence and<br />

R.T. Haken. Determination of ventilatory liver movement via radiographic<br />

evaluation of diaphragm position, International Journal of Radiation Oncology·<br />

Biology· Physics, 2001, Vol. 51, Nº 1, 267-270.<br />

3. Nguyen T. N., Moseley J. L., Dawson L. A., Jaffray D. A. and Brock K. K.,<br />

Adapting liver motion models using a navigator channel technique, Medical<br />

Physics, 2009, Vol. 36, No. 4, 1061-1073.<br />

4. Schwartz J. M., Denninger M., Rancourt D., Moisan C. and Laurendeau D.,<br />

Modelling liver tissue properties using a non-linear visco-elastic model for surgery<br />

simulation, Medical Image Analysis, 2005, Vol. 9, No. 2, 103-112.<br />

5. Kerdok A. E., Ottensmeyer M. P. and Howe R. D., Effects of perfusion on the<br />

viscoelastic characteristics of liver, Journal of Biomechanics, 2006, Vol. 39, No. 12,<br />

2221-2231.<br />

6. Jordan P., Socrate S., Zicker T. and Howe R. D., Constitutive modeling of porcine<br />

liver in indentation using 3D ultrasound imaging, Journal the Mechanical Behavior<br />

of Biomedical Materials, 2006, Vol. 2, No. 2, 192-201.<br />

7. Sakuma I., Nishimura Y., Chui C. K., Kobayashi E., Inada H., Chen X. and Hisada<br />

T., In vitro measurement of mechanical properties of liver tissue under compression<br />

and elongation using a new test piece holding method with surgical glue, In<br />

Proceedings of IS4TH2003, 2003, 284-292.<br />

8. Chui C., Kobayashi E., Chen X., Hisada T. and Sakuma I., Combined compression<br />

and elongation experiments and non-linear modeling of liver tissue for surgical<br />

simulation, Med. Biol. Eng. Comput., 2004, Vol. 42, 787-798.<br />

9. Carter F. J., Davies T. G., McLean P. J. and Cuschieri A., Measurement and<br />

modeling of the compliance of human and porcine organs, Medical Image Analysis,<br />

2001, Vol. 5, No.4, 231-236.<br />

10. Nava A., Mazza E., Furrer M., Villiger P. and Reinhart W., In vivo mechanical<br />

characterization of human liver, Medical Image Analysis, 2008, Vol. 12, No. 2, 203-<br />

216.<br />

11. Lister K., Gao Z. and Desai J. P., Development of in vivo constitutive models for<br />

liver: application to surgical simuliation, Annals of Biomedical Engineering, 2011,<br />

Vol. 39, No. 3, 1060-1073.<br />

12. Kruse S. A., Smith J. A., Lawrence A. J., Dresner M. A., Manduca A., Greenleaf J.<br />

F. abd Ehman R. L., Tissue characterization using magnetic resonance elastography:<br />

preliminary results, Physics in Medicine and Biology, 2000, Vol. 45, 1579-1590.<br />

13. Zhang M., Castaneda B., Wu Z., Nigwekar P., Joseph J. V., Rubens D. J. and<br />

Parker K. J., Congruence of imaging estimators and mechanical measurement of<br />

viscoelastic properties of soft tissue, 2007, Ultrasound in Medicine and Biology,<br />

Vol. 33, No. 10, 1617-1631.<br />

14. Lago M. A., Martínez-Martínez F., Rupérez M. J., Monserrat C. and Alcañiz M., A<br />

study about coefficients to estimate the error in biomechanical models, In<br />

Proceedings of MMVR19, <strong>2012</strong> (Accepted).<br />

15. Martínez-Martínez F., Lago M. A., Rupérez M. J. and Monserrat C., Analysis of<br />

several biomechanical models for the simulation of lamb liver behavior using<br />

similarity coefficients from medical image, Computer Methods Biomechanics and<br />

Biomedical Engineering, <strong>2012</strong> (Accepted).

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