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Information Journal Paper

Title

Numerical Analysis of Hyperthermia on the Damage of cancerous Tissue by injection of Magnetic nanoparticles under the Influence of External Magnetic Field

Pages

  213-221

Abstract

 The purpose of this study is the numerical analysis of Hyperthermia on the damage of cancerous tissue in the presence of Magnetic nanoparticles under the influence of external Magnetic field. For this purpose the governing equations continuity, momentum, energy and Arrhenius damage equation are coupled and solved by COMSOL, a finite element based code. The blood flow in capillary is assumed as non-newtonian fluid with the Carreau viscosity model. A three dimensional geometric model includes the capillary and surrounding tissue. The results indicated that the temperature of the blood stream increases with the application of the Magnetic field, and the surrounding tissue is damaged over time as a result of this heat. The effect of field strength and concentration was also investigated, which was found to correlate with the amount of damaged tissue. In general, this method can be used to degrade the tissues by placing the nearby Magnetic field and injecting nanoparticles at low scales.

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  • Cite

    APA: Copy

    Keyhanpour, M., & GHASEMI, M.. (2020). Numerical Analysis of Hyperthermia on the Damage of cancerous Tissue by injection of Magnetic nanoparticles under the Influence of External Magnetic Field. JOURNAL OF MECHANICAL ENGINEERING, 49(4 (89) ), 213-221. SID. https://sid.ir/paper/269895/en

    Vancouver: Copy

    Keyhanpour M., GHASEMI M.. Numerical Analysis of Hyperthermia on the Damage of cancerous Tissue by injection of Magnetic nanoparticles under the Influence of External Magnetic Field. JOURNAL OF MECHANICAL ENGINEERING[Internet]. 2020;49(4 (89) ):213-221. Available from: https://sid.ir/paper/269895/en

    IEEE: Copy

    M. Keyhanpour, and M. GHASEMI, “Numerical Analysis of Hyperthermia on the Damage of cancerous Tissue by injection of Magnetic nanoparticles under the Influence of External Magnetic Field,” JOURNAL OF MECHANICAL ENGINEERING, vol. 49, no. 4 (89) , pp. 213–221, 2020, [Online]. Available: https://sid.ir/paper/269895/en

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