We designed a mathematical model to describe and quantify the mechanisms and dynamics of tumor growth, cell-kill and resistance as they affect durations of benefit after cancer treatment. Our aim was to explore how treatment efficacy may be related to primary tumor characteristics, with the potential to guide future trial design and appropriate selection of therapy. Assuming a log-normal distribution of both resistant disease and tumor doubling times generates disease-free survival (DFS) or invasive DFS curves with specific shapes. Using a multivariate mathematical model, both treatment and tumor characteristics are related to quantified resistant disease and tumor regrowth rates by allowing different mean values for the influence of differ...
Mathematical modelling and simulation tools are an attractive and time- and cost- effective approach...
Information on individual lesion dynamics and organ location are often ignored in pharmacometric mod...
<div><p>Despite internal complexity, tumor growth kinetics follow relatively simple laws that can be...
We designed a mathematical model to describe and quantify the mechanisms and dynamics of tumor growt...
Abstract We designed a mathematical model to describe and quantify the mechanisms and dynamics of tu...
Breast cancer treatment response varies by subtype, treatment regiment, and additionally by vasculat...
The current methodology for scientific progress in clinical medicine is reviewed. Special attention ...
Using mathematical models to simulate dynamic biological processes has a long history. Over the past...
Drug delivery schedules are key factors in the efficacy of cancer therapies, and mathematical modeli...
Oncology research has focused extensively on estrogen hormones and their function in breast cancer p...
In this paper, we construct a mathematical model describing immune response to the growth of breast ...
Classical mathematical models of tumor growth have shaped our understanding of cancer and have broad...
Background: Checkpoint inhibitor therapy of cancer has led to markedly improved survival of a subset...
This study addresses a modified mathematical model of tumor growth with targeted chemotherapy consis...
Modeling the natural growth of tumors is of value for evaluation of tumor progression and optimizati...
Mathematical modelling and simulation tools are an attractive and time- and cost- effective approach...
Information on individual lesion dynamics and organ location are often ignored in pharmacometric mod...
<div><p>Despite internal complexity, tumor growth kinetics follow relatively simple laws that can be...
We designed a mathematical model to describe and quantify the mechanisms and dynamics of tumor growt...
Abstract We designed a mathematical model to describe and quantify the mechanisms and dynamics of tu...
Breast cancer treatment response varies by subtype, treatment regiment, and additionally by vasculat...
The current methodology for scientific progress in clinical medicine is reviewed. Special attention ...
Using mathematical models to simulate dynamic biological processes has a long history. Over the past...
Drug delivery schedules are key factors in the efficacy of cancer therapies, and mathematical modeli...
Oncology research has focused extensively on estrogen hormones and their function in breast cancer p...
In this paper, we construct a mathematical model describing immune response to the growth of breast ...
Classical mathematical models of tumor growth have shaped our understanding of cancer and have broad...
Background: Checkpoint inhibitor therapy of cancer has led to markedly improved survival of a subset...
This study addresses a modified mathematical model of tumor growth with targeted chemotherapy consis...
Modeling the natural growth of tumors is of value for evaluation of tumor progression and optimizati...
Mathematical modelling and simulation tools are an attractive and time- and cost- effective approach...
Information on individual lesion dynamics and organ location are often ignored in pharmacometric mod...
<div><p>Despite internal complexity, tumor growth kinetics follow relatively simple laws that can be...