Literature DB >> 27333887

Alterations of Blood Flow Through Arteries Following Atherectomy and the Impact on Pressure Variation and Velocity.

Brian D Plourde1, Lauren J Vallez1, Biyuan Sun1, Brittany B Nelson-Cheeseman1, John P Abraham2, Cezar S Staniloae3.   

Abstract

Simulations were made of the pressure and velocity fields throughout an artery before and after removal of plaque using orbital atherectomy plus adjunctive balloon angioplasty or stenting. The calculations were carried out with an unsteady computational fluid dynamic solver that allows the fluid to naturally transition to turbulence. The results of the atherectomy procedure leads to an increased flow through the stenotic zone with a coincident decrease in pressure drop across the stenosis. The measured effect of atherectomy and adjunctive treatment showed decrease the systolic pressure drop by a factor of 2.3. Waveforms obtained from a measurements were input into a numerical simulation of blood flow through geometry obtained from medical imaging. From the numerical simulations, a detailed investigation of the sources of pressure loss was obtained. It is found that the major sources of pressure drop are related to the acceleration of blood through heavily occluded cross sections and the imperfect flow recovery downstream. This finding suggests that targeting only the most occluded parts of a stenosis would benefit the hemodynamics. The calculated change in systolic pressure drop through the lesion was a factor of 2.4, in excellent agreement with the measured improvement. The systolic and cardiac-cycle-average pressure results were compared with measurements made in a multi-patient study treated with orbital atherectomy and adjunctive treatment. The agreements between the measured and calculated systolic pressure drop before and after the treatment were within 3%. This excellent agreement adds further confidence to the results. This research demonstrates the use of orbital atherectomy to facilitate balloon expansion to restore blood flow and how pressure measurements can be utilized to optimize revascularization of occluded peripheral vessels.

Entities:  

Keywords:  Blood flow; Cardiovascular disease; Computational fluid dynamics; Plaque; Stenosis

Mesh:

Year:  2016        PMID: 27333887     DOI: 10.1007/s13239-016-0269-7

Source DB:  PubMed          Journal:  Cardiovasc Eng Technol        ISSN: 1869-408X            Impact factor:   2.495


  1 in total

1.  A hemodynamic model with a seepage condition and fluid-structure interactions for blood flow in arteries with symmetric stenosis.

Authors:  Fan He; Lu Hua; Li-Jian Gao
Journal:  J Biol Phys       Date:  2019-05-06       Impact factor: 1.365

  1 in total

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