Abstract In this article, a fractional order breast cancer competition model (F-BCCM) under the Caputo fractional derivative is analyzed. A new set of basis functions, namely the generalized shifted Legendre polynomials, is proposed to deal with the solutions of F-BCCM. The F-BCCM describes the dynamics involving a variety of cancer factors, such as the stem, tumor and healthy cells, as well as the effects of excess estrogen and the body’s natural immune response on the cell populations. After combining the operational matrices with the Lagrange multipliers technique we obtain an optimization method for solving the F-BCCM whose convergence is investigated. Several examples show that a few number of basis functions lead to the satisfactory r...
Abstract The current study provides the numerical performances of the fractional kind of breast canc...
This paper generalizes the integer-order model of the tumour growth into the fractional-order domain...
In this paper, tumor-immune system interaction has been considered by two fractional order models. T...
Abstract Background Cancer, a complex and deadly heal...
This paper proposes an optimization method for solving a general form of nonlinear fractional optima...
A generalized mathematical model of the breast and ovarian cancer is developed by considering the fr...
In this paper, we study the mathematical model of interaction cancer cells and immune system cells p...
In this paper, we study the mathematical model of interaction cancer cells and immune system cells p...
Breast cancer ranks among the most prevalent malignancies affecting the female population and is a p...
© 2020 Elsevier LtdIn this paper, a fractional-order model of tumor-immune system interaction has be...
© 2020 Elsevier LtdIn this paper, a fractional-order model of tumor-immune system interaction has be...
In this study, we investigate a new fractional-order mathematical model which considers population d...
The aim of this work is to design a stochastic framework to solve the fractional-order differential ...
This article presents a fractional-order mathematical model of the biological phenomena that occur i...
Background: Cancer is the biggest cause of mortality globally, with approximately 10 million fatalit...
Abstract The current study provides the numerical performances of the fractional kind of breast canc...
This paper generalizes the integer-order model of the tumour growth into the fractional-order domain...
In this paper, tumor-immune system interaction has been considered by two fractional order models. T...
Abstract Background Cancer, a complex and deadly heal...
This paper proposes an optimization method for solving a general form of nonlinear fractional optima...
A generalized mathematical model of the breast and ovarian cancer is developed by considering the fr...
In this paper, we study the mathematical model of interaction cancer cells and immune system cells p...
In this paper, we study the mathematical model of interaction cancer cells and immune system cells p...
Breast cancer ranks among the most prevalent malignancies affecting the female population and is a p...
© 2020 Elsevier LtdIn this paper, a fractional-order model of tumor-immune system interaction has be...
© 2020 Elsevier LtdIn this paper, a fractional-order model of tumor-immune system interaction has be...
In this study, we investigate a new fractional-order mathematical model which considers population d...
The aim of this work is to design a stochastic framework to solve the fractional-order differential ...
This article presents a fractional-order mathematical model of the biological phenomena that occur i...
Background: Cancer is the biggest cause of mortality globally, with approximately 10 million fatalit...
Abstract The current study provides the numerical performances of the fractional kind of breast canc...
This paper generalizes the integer-order model of the tumour growth into the fractional-order domain...
In this paper, tumor-immune system interaction has been considered by two fractional order models. T...