about
Computational Modelling of Metastasis Development in Renal Cell CarcinomaClassical mathematical models for description and prediction of experimental tumor growthTracking the evolution of cancer cell populations through the mathematical lens of phenotype-structured equations.Spatial heterogeneity in drug concentrations can facilitate the emergence of resistance to cancer therapyCancer Therapy Due to Apoptosis: Galectin-9.Solid tumor models for the assessment of different treatment modalities: I. Radiation-induced changes in growth rate characteristics of a solid tumor model.Choroidal melanoma growth patterns.Progress report. Cytotoxic therapy for gastrointestinal carcinoma.The growth kinetics of xenografts of human colorectal tumours in immune deprived miceGrowth characteristics of human colorectal tumours during serial passage in immune-deprived miceFirst among equals: the cancer cell hierarchy.Advances in basic science: have they benefited patients with cancer?Using Fractal Geometry and Universal Growth Curves as Diagnostics for Comparing Tumor Vasculature and Metabolic Rate With Healthy Tissue and for Predicting Responses to Drug Therapies.Adjuvant chemotherapy in lung cancer: review and prospects.Bridging population and tissue scale tumor dynamics: a new paradigm for understanding differences in tumor growth and metastatic disease.Growing indication for FNA to study and analyze tumor heterogeneity at metastatic sites.Mathematical modeling of tumor-tumor distant interactions supports a systemic control of tumor growth.Modeling Spontaneous Metastasis following Surgery: An In Vivo-In Silico Approach.Mitotic control in adult mammalian tissues.Diagnostic techniques: their strengths and weaknesses.Can dose-survival parameters be deduced from in situ assays?On the growth rates of human malignant tumors: implications for medical decision making.Quantitation and gompertzian analysis of tumor growth.What does "response" in cancer chemotherapy really mean?Regulation of tumor growth as a 'total mass' in mice: apoptosis as a major mechanism in altering growth rates of single and multiple coexisting tumor nodules.The natural history of incidental meningiomas.Autocrine and paracrine growth factors in tumor growth: a mathematical model.Generalized Norton-Simon models of tumour growth.Application of a mathematical model to a clinical study of the local spread of endometrial cancer.The kinetics of cellular proliferation in normal and malignant tissues. 3. Cell proliferation in the larynx.Cell kinetics in reticulum cell sarcoma.
P2860
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P2860
description
1966 nî lūn-bûn
@nan
1966年の論文
@ja
1966年論文
@yue
1966年論文
@zh-hant
1966年論文
@zh-hk
1966年論文
@zh-mo
1966年論文
@zh-tw
1966年论文
@wuu
1966年论文
@zh
1966年论文
@zh-cn
name
The growth rate of human tumours.
@ast
The growth rate of human tumours.
@en
type
label
The growth rate of human tumours.
@ast
The growth rate of human tumours.
@en
prefLabel
The growth rate of human tumours.
@ast
The growth rate of human tumours.
@en
P2860
P356
P1476
The growth rate of human tumours.
@en
P2093
P2860
P2888
P356
10.1038/BJC.1966.9
P407
P577
1966-03-01T00:00:00Z