Analysis and diagnostics of the human cardiovascular system using the principles of nonlinear wave mechanics


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Abstract

A comprehensive approach to studying nonlinear wave processes in the human cardiovascular system is overviewed based on the combination of high-precision methods for pulse wave measurements, mathematical analysis methods for empirical data, and direct numerical simulation of hemodynamic processes in the arterial tree. Combined application of high-precision recording devices and the developed mathematical apparatus is the basis for creating effective a new generation functional diagnostic base.

About the authors

R. F. Ganiev

Research Center for Nonlinear Wave Mechanics and Technology, Blagonravov Research Institute for Machine Science

Email: slastushenskiy@mosinter.net
Russian Federation, per. Malyi Khariton’evskii 4, Moscow, 101990

D. L. Reviznikov

Research Center for Nonlinear Wave Mechanics and Technology, Blagonravov Research Institute for Machine Science

Email: slastushenskiy@mosinter.net
Russian Federation, per. Malyi Khariton’evskii 4, Moscow, 101990

A. N. Rogoza

Research Center for Nonlinear Wave Mechanics and Technology, Blagonravov Research Institute for Machine Science

Email: slastushenskiy@mosinter.net
Russian Federation, per. Malyi Khariton’evskii 4, Moscow, 101990

Yu. V. Slastushenskii

Research Center for Nonlinear Wave Mechanics and Technology, Blagonravov Research Institute for Machine Science

Author for correspondence.
Email: slastushenskiy@mosinter.net
Russian Federation, per. Malyi Khariton’evskii 4, Moscow, 101990

L. E. Ukrainskii

Research Center for Nonlinear Wave Mechanics and Technology, Blagonravov Research Institute for Machine Science

Email: slastushenskiy@mosinter.net
Russian Federation, per. Malyi Khariton’evskii 4, Moscow, 101990

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