![Extended Generalized Riccati Equation Mapping for Thermal Traveling-Wave Distribution in Biological Tissues through a Bio-Heat Transfer Model with Linear/Quadratic Temperature-Dependent Blood Perfusion Extended Generalized Riccati Equation Mapping for Thermal Traveling-Wave Distribution in Biological Tissues through a Bio-Heat Transfer Model with Linear/Quadratic Temperature-Dependent Blood Perfusion](https://www.scirp.org/html/16-7401838/0f4902c3-6fde-45b9-ae88-4e98d55aefc5.jpg)
Extended Generalized Riccati Equation Mapping for Thermal Traveling-Wave Distribution in Biological Tissues through a Bio-Heat Transfer Model with Linear/Quadratic Temperature-Dependent Blood Perfusion
![Frontiers | Bio-Heat Models Revisited: Concepts, Derivations, Nondimensalization and Fractionalization Approaches Frontiers | Bio-Heat Models Revisited: Concepts, Derivations, Nondimensalization and Fractionalization Approaches](https://www.frontiersin.org/files/Articles/486122/fphy-07-00189-HTML/image_m/fphy-07-00189-g005.jpg)
Frontiers | Bio-Heat Models Revisited: Concepts, Derivations, Nondimensalization and Fractionalization Approaches
![Penne's bioheat equation. í µí¼Œí µí¼Œ í µí±¡í µí±¡ í µí° ¶í µí° ¶ í... | Download Scientific Diagram Penne's bioheat equation. í µí¼Œí µí¼Œ í µí±¡í µí±¡ í µí° ¶í µí° ¶ í... | Download Scientific Diagram](https://www.researchgate.net/profile/Kyle-Walker-2/publication/264640323/figure/fig4/AS:670354863296537@1536836462674/Generic-3-dimensional-expansion-of-Pennes-bioheat-equation-The-equations-3-dimensional_Q320.jpg)
Penne's bioheat equation. í µí¼Œí µí¼Œ í µí±¡í µí±¡ í µí° ¶í µí° ¶ í... | Download Scientific Diagram
![Pennes' bioheat equation vs. porous media approach in computer modeling of radiofrequency tumor ablation | Scientific Reports Pennes' bioheat equation vs. porous media approach in computer modeling of radiofrequency tumor ablation | Scientific Reports](https://media.springernature.com/lw685/springer-static/image/art%3A10.1038%2Fs41598-021-84546-6/MediaObjects/41598_2021_84546_Fig3_HTML.png)
Pennes' bioheat equation vs. porous media approach in computer modeling of radiofrequency tumor ablation | Scientific Reports
RESEARCH PAPER FRACTIONAL PENNES' BIOHEAT EQUATION: THEORETICAL AND NUMERICAL STUDIES Luis L. Ferrás , Neville J. Ford , Mari
![PDF] One-dimensional Steady-state Analysis of Bioheat Transfer Equation : Tumour Parameters Assessment for Medical Diagnosis Application | Semantic Scholar PDF] One-dimensional Steady-state Analysis of Bioheat Transfer Equation : Tumour Parameters Assessment for Medical Diagnosis Application | Semantic Scholar](https://d3i71xaburhd42.cloudfront.net/52260c5e2d03bc79ce2f33afd571fe9560341466/2-Table1-1.png)
PDF] One-dimensional Steady-state Analysis of Bioheat Transfer Equation : Tumour Parameters Assessment for Medical Diagnosis Application | Semantic Scholar
![PDF) Numerical Solution of Fractional Bioheat Equation with Constant and Sinusoidal Heat Flux Condition on Skin Tissue | Sushil Kumar - Academia.edu PDF) Numerical Solution of Fractional Bioheat Equation with Constant and Sinusoidal Heat Flux Condition on Skin Tissue | Sushil Kumar - Academia.edu](https://0.academia-photos.com/attachment_thumbnails/32904705/mini_magick20190408-24674-o0d905.png?1554732359)
PDF) Numerical Solution of Fractional Bioheat Equation with Constant and Sinusoidal Heat Flux Condition on Skin Tissue | Sushil Kumar - Academia.edu
![SOLVED: The plot to the right shows the 1-D steady-state solution to the Pennes bioheat equation with T = 37P€ at x 0 (body core) and T= 438C at x = 0.01 ( SOLVED: The plot to the right shows the 1-D steady-state solution to the Pennes bioheat equation with T = 37P€ at x 0 (body core) and T= 438C at x = 0.01 (](https://cdn.numerade.com/ask_images/e2f6bfc1806e48f58b47f2491b4bbb78.jpg)
SOLVED: The plot to the right shows the 1-D steady-state solution to the Pennes bioheat equation with T = 37P€ at x 0 (body core) and T= 438C at x = 0.01 (
![Numerical Solution of Fractional Bioheat Equation with Constant and Sinusoidal Heat Flux Condition on Skin Tissue Numerical Solution of Fractional Bioheat Equation with Constant and Sinusoidal Heat Flux Condition on Skin Tissue](http://pubs.sciepub.com/ajma/1/2/1/image/fig28.gif)
Numerical Solution of Fractional Bioheat Equation with Constant and Sinusoidal Heat Flux Condition on Skin Tissue
![A Mathematical Model to Solve Bio-Heat Transfer Problems through a Bio-Heat Transfer Equation with Quadratic Temperature-Dependent Blood Perfusion under a Constant Spatial Heating on Skin Surface A Mathematical Model to Solve Bio-Heat Transfer Problems through a Bio-Heat Transfer Equation with Quadratic Temperature-Dependent Blood Perfusion under a Constant Spatial Heating on Skin Surface](https://www.scirp.org/html/htmlimages/10-9102026x/f0b551a7-a6a2-4795-875b-179da7aea74d.png)
A Mathematical Model to Solve Bio-Heat Transfer Problems through a Bio-Heat Transfer Equation with Quadratic Temperature-Dependent Blood Perfusion under a Constant Spatial Heating on Skin Surface
![INVESTIGATION OF BIOHEAT TRANSFER EQUATION OF PENNES VIA A NEW METHOD BASED ON WRM & HOMOTOPY PERTURBATION | Semantic Scholar INVESTIGATION OF BIOHEAT TRANSFER EQUATION OF PENNES VIA A NEW METHOD BASED ON WRM & HOMOTOPY PERTURBATION | Semantic Scholar](https://d3i71xaburhd42.cloudfront.net/0bf3c2739c773eca697a0c7bf0144221254497d5/5-Table1-1.png)