Geometry of the general motion of blood in the circulatory system
Itogi nauki i tehniki. Sovremennaâ matematika i eë priloženiâ. Tematičeskie obzory, Proceedings of the International Conference "Classical and Modern Geometry" Dedicated to the 100th Anniversary of the Birth of Professor Vyacheslav Timofeevich Bazylev. Moscow, April 22-25, 2019. Part 4, Tome 182 (2020), pp. 51-54
Voir la notice du chapitre de livre
This work is devoted to the study of geometric characteristics of the motion of blood in the circulatory system. We consider the case where the geometry of motion of blood particles is modeled as the geometry of motion in the subprojective space referred to a nonholonomic frame.
Mots-clés :
turbulent motion
Keywords: nonholonomic frame, differential form.
Keywords: nonholonomic frame, differential form.
@article{INTO_2020_182_a8,
author = {G. V. Kuznetsov},
title = {Geometry of the general motion of blood in the circulatory system},
journal = {Itogi nauki i tehniki. Sovremenna\^a matematika i e\"e prilo\v{z}eni\^a. Temati\v{c}eskie obzory},
pages = {51--54},
year = {2020},
volume = {182},
language = {ru},
url = {http://geodesic.mathdoc.fr/item/INTO_2020_182_a8/}
}
TY - JOUR AU - G. V. Kuznetsov TI - Geometry of the general motion of blood in the circulatory system JO - Itogi nauki i tehniki. Sovremennaâ matematika i eë priloženiâ. Tematičeskie obzory PY - 2020 SP - 51 EP - 54 VL - 182 UR - http://geodesic.mathdoc.fr/item/INTO_2020_182_a8/ LA - ru ID - INTO_2020_182_a8 ER -
G. V. Kuznetsov. Geometry of the general motion of blood in the circulatory system. Itogi nauki i tehniki. Sovremennaâ matematika i eë priloženiâ. Tematičeskie obzory, Proceedings of the International Conference "Classical and Modern Geometry" Dedicated to the 100th Anniversary of the Birth of Professor Vyacheslav Timofeevich Bazylev. Moscow, April 22-25, 2019. Part 4, Tome 182 (2020), pp. 51-54. http://geodesic.mathdoc.fr/item/INTO_2020_182_a8/
[1] Kuznetsov G. V., Geometricheskie ob'ekty i parametry serdechno-sosudistoi sistemy, Prompilot, Tula, 2017