Tikhvinskii Denis Vyacheslavovich
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1
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Tikhvinskii D.
, Chupakhin A.
, Parshin D.
Modeling of an Intravascular Stent Using the Navier Boundary Condition with Variable Slip Length: 2D Analysis of Hemodynamic Characteristics
Fluid Dynamics. 2026.
V.61. N3. P.1-18. DOI: 10.1134/s0015462826605504
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2
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Tikhvinsky D.
, Maus M.
, Lipovka A.
, Nikitin N.
, Epifanov R.
, Volkova I.
, Mullyadzhanov R.
, Chupakhin A.
, Parshin D.
, Karpenko A.
The role of asymmetry and volume of thrombotic masses in the formation of local deformation of the aneurysmal-altered vascular wall: An in vivo study and mathematical modeling
PLoS ONE. 2024.
V.19. N6. e0301047
:1-14. DOI: 10.1371/journal.pone.0301047
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3
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Larichkin A.Y.
, Tikhvinskii D.V.
, Parshin D.V.
DESIGN OF A NEW LABORATORY DEVICE FOR STUDYING SLIDING ON SNOW
Journal of Applied Mechanics and Technical Physics. 2024.
P.554–562. DOI: 10.1134/S0021894424030179
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4
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Tikhvinskii D.V.
, Merzhoeva L.R.
, Chupakhin A.P.
, Karpenko A.A.
, Parshin D.V.
Computational analysis of the impact of aortic bifurcation geometry to AAA haemodynamics
Russian Journal of Numerical Analysis and Mathematical Modelling. 2022.
V.37. N5. P.311-329. DOI: 10.1515/rnam-2022-0026
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РИНЦ
OpenAlex
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5
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Tikhvinskii D.
, Kuianova J.
, Kislitsin D.
, Orlov K.
, Gorbatykh A.
, Parshin D.
Numerical Assessment of the Risk of Abnormal Endothelialization for Diverter Devices: Clinical Data Driven Numerical Study
Journal of Personalized Medicine. 2022.
V.12. N4. 652
:1-25. DOI: 10.3390/jpm12040652
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Scopus
РИНЦ
OpenAlex
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