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September 12, 2025Malaysian Journal of Mathematical SciencesOpen Access

Analysis of Blood Flow With Nanoparticles Through A Porous Inclined Overlapping Stenosed Artery Under the Influence of External Magnetic Field

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Authors

NSNarender SatwaiKPK. Maruthi PrasadMKManoj Kumar

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Overview

Mathematical model examines blood flow dynamics in porous stenosed arteries, revealing effects on shear stress with varying magnetic field and permeability.

Key Points

  • Blood flow resistance increases with higher stenosis, impacting treatment potential and device design.
  • As the intensity of the magnetic field increases, blood shear stress decreases, suggesting a means to optimize flow.
  • Homotopy perturbation method provides closed-form expressions for blood velocity, temperature, and concentration.
  • Theoretical insights may improve biomedical device designs that interact with fluid flow in porous media.

Cite This Study

Satwai et al. (2025) studied this question.

synapsesocial.com/papers/68d44c4d31b076d99fa55f01https://doi.org/10.47836/mjms.19.3.01
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Modelling of MHD Micropolar Nano Fluid Flow in an Inclined Porous Stenosed Artery with Dilatation2025 · 1 citations
  2. 2Mathematical Modelling and Theoretical Exploration of Hybrid Blood-Nano-fluid Flow in a Stenosed Artery with Magnetization Effect2025
  3. 3Effect of magnetic field on the blood flow in artery having multiple stenosis: a numerical study2010 · 122 citations
  4. 4Mathematical analysis of blood flow in a stenotic artery under radiation and magnetic field effects2025
  5. 5Numerical Simulation of Mass Transport Phenomena on Non-newtonian Magnetohydrodynamics Flow of Blood through a Porous Stenosed Bifurcated Artery2024 · 4 citations