Biomedical Engineering Reference
In-Depth Information
86. Thomson J.Z., Evans, A.J., Pinder, S.E., Burrell, H.C., Wilson, A.R.M., Ellis, I.O.: Growth
pattern of ductal carcinoma in situ (DCIS): a retrospective analysis based on mammographic
findings. Br. J. Cancer 85(2):225-227 (2001)
87. Trump, B.E., Berezesky, I.K., Chang, S.H., Phelps, P.C: The pathways of cell death: Oncosis,
apoptosis, and necrosis. Toxicol. Pathol. 25(1), 82-88 (1997)
88. Walsh, G.M: Mechanisms of human eosinophil survival and apoptosis. Clin. Exp. Allergy
27(5), 482-487 (1997)
89. Ward, J.P., King, J.R: Mathematical modelling of avascular tumour growth. IMA J. Math.
Appl. Med. Biol. 14(1), 36-69 (1997)
90. Ward, J.P., King, J.R: Mathematical modelling of avascular-tumour growth II: modelling
growth saturation. Math. Med. Biol. 16(2), 171-211 (1999)
91. Wise, S.M., Lowengrub, J.S., Frieboes, H.B., Cristini, V.: Three-dimensional multispecies
nonlinear tumor growth-I. model and numerical method. J. Theor. Biol. 253(3), 524-543 (2008)
92. Yagata H., Harigaya K., Suzuki M., Nagashima T., Hashimoto H., Ishii G., Miyazaki M.,
Nakajima N., Mikata, A (2003) Comedonecrosis is an unfavorable marker in node-negative
invasive breast carcinoma. Pathol. Int. 53, 8):501-506
93. Zheng, X., Wise, S.M., Cristini, V.: Nonlinear simulation of tumor necrosis, neo-
vascularization and tissue invasion via an adaptive finite-element/level set method. Bull.
Math. Biol. 67(2), 211-259 (2005)
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