Biomedical Engineering Reference
In-Depth Information
[96] Wu, E., Judd, R. M., Vargas, J. D., Klocke, F. J., Bonow, R. O., and
Kim, R. J., Visualisation of presence, location, and transmural extent
of healed Q-wave and non-Q-wave myocardial infarction, Lancet,
Vol. 357, No. 9249, pp. 21-28, 2001.
[97] Gerber, B. L., Garot, J., Bluemke, D. A., Wu, K. C., and Lima, J. A., Accu-
racy of contrast-enhanced magnetic resonance imaging in predicting
improvement of regional myocardial function in patients after acute
myocardial infarction, Circulation, Vol. 106, No. 9, pp. 1083-1089,
2002.
[98] Choi, K. M., Kim, R. J., Gubernikoff, G., Vargas, J. D., Parker, M.,
and Judd, R. M., Transmural extent of acute myocardial infarction
predicts long-term improvement in contractile function, Circulation,
Vol. 104, No. 10, pp. 1101-1107, 2001.
[99] Costa, K. D., Hunter, P. J., Wayne, J. S., Waldman, L. K., Guccione, J.
M., and McCulloch, A. D., A three-dimensional finite element method
for large elastic deformations of ventricular myocardium, Part II:
Prolate spheroidal coordinates, J. Biomech. Eng. Vol. 118, No. 4, pp.
464-472, 1996.
[100] Costa, K. D., Hunter, P. J., Rogers, J. M., Guccione, J. M., Waldman,
L. K., and McCulloch, A. D., A three-dimensional finite element
method for large elastic deformations of ventricular myocardium,
Part I: Cylindrical and spherical polar coordinates, J. Biomech. Eng.,
Vol. 118, No. 4, pp. 452-463, 1996.
[101] Guccione, J. M., McCulloch, A. D., and Waldman, L. K., Passive ma-
terial properties of intact ventricular myocardium determined from a
cylindrical model, J. Biomech. Eng., Vol. 113, No. 1, pp. 42-55, 1991.
[102] Needleman, A., Rabinowitz, S. A., Bogen. D. K., and McMahon. T. A.,
A finite element model of the infarcted left ventricle, J. Biomech.,
Vol. 16, No. 1, pp. 45-58, 1983.
[103] Vito, R. P. and Hickey, J., The mechanical properties of soft tissues,
Part II: The elastic response of arterial segments, J. Biomech., Vol. 13,
No. 11, pp. 951-957, 1980.
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