Quantitative Evaluation of Disorders of the Swirled Blood Flow Structure in the Aorta with Pathological Alteration of Its Channel Geometry Using Numerical Simulation of the Aorta

Author:

Talygin E. A.,Zhorzholiani Sh. T.,Agafonov A. V.,Kiknadze G. I.,Gorodkov A. Yu.,Bokeriya L. A.

Publisher

Pleiades Publishing Ltd

Subject

Physiology (medical),Physiology

Reference14 articles.

1. Bokeria, L.A., Gorodkov, A.Yu., Kiknadze, G.I., et al., An analysis of the velocity field of a swirled blood flow in the aorta on the basis of three-dimensional mapping by MP velosymmetry, Byull. Nauchn. Tsentrs Serdechno-Sosudistoi Khir. im. A.N. Bakuleva, Ross. Akad. Med. Nauk, 2003, vol. 4, no. 9, p. 70.

2. Talygin, E.A., Gorodkov, A.Yu., Kiknadze, G.I., et al., Quantitative assessment of the state of intracardiac blood flow by the anatomy of the left ventricle based on exact solutions of unsteady hydrodynamic equations for a class of tornado-like viscous fluid flows, Usp. Fiziol. Nauk, 2016, vol. 47, no. 1, p. 48.

3. Zhorzholiani, Sh.T., Talygin, E.A., Krasheninnikov, S.V., et al., Elasticity change along the aorta is a mechanism for supporting the physiological self-organization of tornado-like blood flow, Hum. Physiol., 2018, vol. 44, no. 5, p. 532.

4. Bremer, J., Presence and influence of spiral streams in the heart of the chick embryo, Am. J. Anat., 1932, vol. 49, p. 409.

5. Gatehouse, P.D., Keegan, J., Crowe, L.A., et al., Applications of phase-contrast flow and velocity imaging in cardiovascular MRI, Eur. Radiol., 2005, vol. 15, no. 10, p. 2172.

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