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Research Article | Open Access

Pathless directed topology in connection to the circulation of blood in the heart of human body

Hakeem A. Othman1,2( )Mohammed M. Al-Shamiri3,4( )Amin Saif5Santanu Acharjee6Tarik Lamoudan3Rashad Ismail3
Department of Mathematics, AL-Qunfudhah University college, Umm Al-Qura University, KSA
Department of Mathematics, Rada'a College of Education and Science, Albaydha University, Yemen
Department of Mathematics, Faculty of Sciences and Arts, Mahayl Assir, King Khalid University, KSA
Department of Mathematics, Faculty of Sciences, Ibb University, Ibb, Yemen
Department of Mathematics, Faculty of Applied Sciences, Taiz University, Taiz, Yemen
Department of Mathematics, Gauhati University, Guwahati-781014, Assam, India
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Abstract

We introduce a topology on the set of vertices of a directed graph and we call the topological space as pathless directed topological space. We study relation between the relative topologies and pathless directed topological spaces of E-generated subdirected graphs. Then, we study connectedness, isomorphic and homeomorphic properties in digraphs and pathless directed topological spaces. Moreover, we apply our results to blood circulation process in human heart and disprove Shokry and Aly [M. Shokry and R. E. Aly, Topological properties on graph vs medical application in human heart, Int. J. Appl. Math., 15 (2013), 1103-1109], Nada et al. [S. Nada, A. E. F. El Atik and M. Atef, New types of topological structures via graphs, Math. Method. Appl. Sci., 41 (2018), 5801-5810] and Nawar et al. [A. S. Nawar and A. E. F. A. El-Atik, A model of a human heart via graph nano topological spaces, Int. J. Biomath., 12 (2019), p.1950006]. We show that pathless directed topology is accurately describing the circulation of blood in the heart of human body.

CLC number: 05C20, 05C99, 54A05, 92B05, 92C42

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AIMS Mathematics
Pages 18158-18172

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Cite this article:
Othman HA, Al-Shamiri MM, Saif A, et al. Pathless directed topology in connection to the circulation of blood in the heart of human body. AIMS Mathematics, 2022, 7(10): 18158-18172. https://doi.org/10.3934/math.2022999

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Received: 19 April 2022
Revised: 02 August 2022
Accepted: 03 August 2022
Published: 15 October 2022
©2022 the Author(s), licensee AIMS Press.

This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0)