Stochastic dynamics of metastasis formation.
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[1] C. A. Condat,et al. Non-linear model of cancer growth and metastasis: a limiting nutrient as a major determinant of tumor shape and diffusion. , 1999, Medical hypotheses.
[2] E Georg Luebeck,et al. Multistage carcinogenesis and the incidence of colorectal cancer , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[3] Martin A Nowak,et al. Evolution of Resistance During Clonal Expansion , 2006, Genetics.
[4] Van,et al. A gene-expression signature as a predictor of survival in breast cancer. , 2002, The New England journal of medicine.
[5] Martin A Nowak,et al. Evolutionary dynamics of escape from biomedical intervention , 2003, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[6] L. Liotta,et al. Primary rat embryo cells transformed by one or two oncogenes show different metastatic potentials. , 1986, Science.
[7] M. Nowak,et al. Dynamics of cancer progression , 2004, Nature Reviews Cancer.
[8] Yudong D. He,et al. Gene expression profiling predicts clinical outcome of breast cancer , 2002, Nature.
[9] G. Naumov,et al. Molecular biology of breast cancer metastasis: Clinical implications of experimental studies on metastatic inefficiency , 2000, Breast Cancer Research.
[10] N. Geller,et al. Multivariate analysis of prognostic variables in patients with metastatic testicular cancer. , 1983, Cancer research.
[11] M. Nowak,et al. Stochastic Tunnels in Evolutionary Dynamics , 2004, Genetics.
[12] I. Macdonald,et al. Metastasis: Dissemination and growth of cancer cells in metastatic sites , 2002, Nature Reviews Cancer.
[13] M. Nowak,et al. Oncogenes, anti-oncogenes and the immune response to cancer : a mathematical model , 1992, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[14] Yudong D. He,et al. A Gene-Expression Signature as a Predictor of Survival in Breast Cancer , 2002 .
[15] M. Nowak,et al. Local Regulation of Homeostasis Favors Chromosomal Instability , 2003, Current Biology.
[16] Martin A. Nowak,et al. The role of chromosomal instability in tumor initiation , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[17] E. Hill. Journal of Theoretical Biology , 1961, Nature.
[18] S H Moolgavkar,et al. Mutation and cancer: a model for human carcinogenesis. , 1981, Journal of the National Cancer Institute.
[19] I. Fidler,et al. Critical determinants of metastasis. , 2002, Seminars in cancer biology.
[20] Martin A. Nowak,et al. Dynamics of chronic myeloid leukaemia , 2005, Nature.
[21] Y. Naito,et al. A mathematical model of axillary lymph node involvement considering lymph node size in patients with breast cancer , 2001, Breast cancer.
[22] D. Williams. STOCHASTIC DIFFERENTIAL EQUATIONS: THEORY AND APPLICATIONS , 1976 .
[23] A Romano,et al. Analysis of a "phase transition" from tumor growth to latency. , 2000, Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics.
[24] Y. Iwasa,et al. On the emergence of multifocal cancers , 2004, Journal of carcinogenesis.
[25] A. W. F. Edwards,et al. The statistical processes of evolutionary theory , 1963 .
[26] D. Spandidos,et al. Rodent fibroblast tumours expressing human myc and ras genes: growth, metastasis and endogenous oncogene expression. , 1987, British Journal of Cancer.
[27] Natalia L. Komarova,et al. Computational Biology of Cancer: Lecture Notes and Mathematical Modeling , 2005 .
[28] L. Weiss,et al. Observations on the Antiquity of Cancer and Metastasis , 2000, Cancer and Metastasis Reviews.
[29] M. Hung,et al. Expression of activated rat neu oncogene is sufficient to induce experimental metastasis in 3T3 cells. , 1991, Oncogene.
[30] L. J. Veer,et al. Road map to metastasis , 2003, Nature Medicine.
[31] René Bernards,et al. A progression puzzle. , 2002, Nature.
[32] T. Buchholz,et al. Frequency of first metastatic events in breast cancer: implications for sequencing of systemic and local-regional treatment. , 1999, Journal of clinical oncology : official journal of the American Society of Clinical Oncology.
[33] M. Nowak,et al. Linear Model of Colon Cancer Initiation , 2004, Cell cycle.
[34] W. Godwin. Article in Press , 2000 .
[35] M. Little,et al. A stochastic carcinogenesis model incorporating genomic instability fitted to colon cancer data. , 2003, Mathematical biosciences.
[36] Steven A Frank,et al. Patterns of cell division and the risk of cancer. , 2003, Genetics.
[37] M. Nowak,et al. The linear process of somatic evolution , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[38] John Carl Panetta,et al. A mathematical model of periodically pulsed chemotherapy: Tumor recurrence and metastasis in a competitive environment , 1996 .
[39] D. Krakauer,et al. Genetic instability and the evolution of angiogenic tumor cell lines (review). , 2001, Oncology reports.
[40] R. Tibshirani,et al. Gene expression patterns of breast carcinomas distinguish tumor subclasses with clinical implications , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[41] J E Talmadge,et al. Evidence for a novel gene associated with low tumor metastatic potential. , 1988, Journal of the National Cancer Institute.
[42] Martin A Nowak,et al. Evolutionary dynamics of tumor suppressor gene inactivation. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[43] P. Maini,et al. Mathematical oncology: Cancer summed up , 2003, Nature.
[44] G. Naumov,et al. Critical steps in hematogenous metastasis: an overview. , 2001, Surgical oncology clinics of North America.
[45] E. Lander,et al. A molecular signature of metastasis in primary solid tumors , 2003, Nature Genetics.
[46] L. Weiss,et al. Metastasis of cancer: a conceptual history from antiquity to the 1990s. , 2000, Cancer metastasis reviews.