Mathematical Model of Building a Neural Network for Diagnosing Circulatory Disorders

Author:

Bunicheva A. Ya.,Kochetov E. V.,Mukhin S. I.

Publisher

Allerton Press

Subject

Computational Mathematics,Control and Optimization,Human-Computer Interaction

Reference15 articles.

1. E. J. Topol, ‘‘High-performance medicine: the convergence of human and artificial intelligence,’’ Nat. Med. 25, 44–56 (2019). https://doi.org/10.1038/s41591-018-0300-7

2. Mathematical modeling of blood circulation based on the CVSS software package;I. V. Ashmetkov,2001

3. M. V. Abakumov, N. B. Esikova, S. I. Mukhin, N. V. Sosnin, V. F. Tishkin, and A. P. Favorskii, ‘‘Difference scheme for solving hemodynamic problems on a graph,’’ Preprint (Dialog-MGU, Moscow, 1998).

4. V. B. Koshelev, S. I. Mukhin, N. V. Sosnin, and A. P. Favorskii, Mathematical Models of Quasi-One-Dimensional Hemodynamics: Textbook (MAKS Press, Moscow, 2010) [in Russian].

5. A. Ya. Bunicheva, M. A. Menyailova, S. I. Mukhin, N. V. Sosnin, and A. P. Favorskii, ‘‘Studying the influence of gravitational overloads on the parameters of blood flow in vessels of greater circulation,’’ Math. Models Comput. Simul. 5 (1), 81–91 (2013). https://doi.org/10.1134/S207004821301002X

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