Geometry-based pressure drop prediction in mildly diseased human coronary arteries

被引:25
作者
Schrauwen, J. T. C. [1 ]
Wentzel, J. J. [1 ]
van der Steen, A. F. W. [1 ]
Gijsen, F. J. H. [1 ]
机构
[1] Erasmus MC, Dept Biomed Engn, NL-3000 CA Rotterdam, Netherlands
关键词
Coronary arteries; Pressure drop prediction; FFR; Atherosclerosis; CFD; FRACTIONAL FLOW RESERVE; WALL SHEAR-STRESS; BLOOD-FLOW; INTRAVASCULAR ULTRASOUND; COMPUTED-TOMOGRAPHY; FUNCTIONAL SEVERITY; PLAQUE BURDEN; STENOSES; ANGIOGRAPHY; VALIDATION;
D O I
10.1016/j.jbiomech.2014.03.028
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Pressure drop (Delta p) estimations in human coronary arteries have several important applications, including determination of appropriate boundary conditions for CFD and estimation of fractional flow reserve (FFR). In this study a Delta p prediction was made based on geometrical features derived from patient-specific imaging data. Twenty-two mildly diseased human coronary arteries were imaged with computed tomography and intravascular ultrasound. Each artery was modelled in three consecutive steps: from straight to tapered, to stenosed, to curved model. CFD was performed to compute the additional Delta p in each model under steady flow for a wide range of Reynolds numbers. The correlations between the added geometrical complexity and additional Delta p were used to compute a predicted Delta p. This predicted Delta p based on geometry was compared to CFD results. The mean Delta p calculated with CFD was 855 +/- 666 Pa. Tapering and curvature added significantly to the total Delta p, accounting for 31.4 +/- 19.0% and 18.0 +/- 10.9% respectively at Re = 250. Using tapering angle, maximum area stenosis and angularity of the centerline, we were able to generate a good estimate for the predicted Delta p with a low mean but high standard deviation, average error of 41.1 +/- 287.8 Pa at Re = 250. Furthermore, the predicted Delta p was used to accurately estimate FFR (r=0.93). The effect of the geometric features was determined and the pressure drop in mildly diseased human coronary arteries was predicted quickly based solely on geometry. This pressure drop estimation could serve as a boundary condition in CFD to model the impact of distal epicardial vessels. (C) 2014 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1810 / 1815
页数:6
相关论文
共 37 条
  • [1] Hemodynamic diagnostics of epicardial coronary stenoses:: in-vitro experimental and computational study
    Banerjee, Rupak K.
    Ashtekar, Koustubh D.
    Helmy, Tarek A.
    Effat, Mohamed A.
    Back, Lloyd H.
    Khoury, Saeb F.
    [J]. BIOMEDICAL ENGINEERING ONLINE, 2008, 7 (1)
  • [2] Improved prediction of disturbed flow via hemodynamically-inspired geometric variables
    Bijari, Payam B.
    Antiga, Luca
    Gallo, Diego
    Wasserman, Bruce A.
    Steinman, David A.
    [J]. JOURNAL OF BIOMECHANICS, 2012, 45 (09) : 1632 - 1637
  • [3] Combination of plaque burden, wall shear stress, and plaque phenotype has incremental value for prediction of coronary atherosclerotic plaque progression and vulnerability
    Corban, Michel T.
    Eshtehardi, Parham
    Suo, Jin
    McDaniel, Michael C.
    Timmins, Lucas H.
    Rassoul-Arzrumly, Emad
    Maynard, Charles
    Mekonnen, Girum
    King, Spencer, III
    Quyyumi, Arshed A.
    Giddens, Don P.
    Samady, Habib
    [J]. ATHEROSCLEROSIS, 2014, 232 (02) : 271 - 276
  • [4] Atherosclerotic Plaque Surface Morphology in the Carotid Bifurcation Assessed With Multidetector Computed Tomography Angiography
    de Weer, Thomas T.
    Cretier, Sander
    Groen, Harald C.
    Homburg, Philip
    Cakir, Hamit
    Wentzel, Jolanda J.
    Dippel, Diederik W. J.
    van der Lugt, Aad
    [J]. STROKE, 2009, 40 (04) : 1334 - 1340
  • [5] CORONARY PLAQUE DISRUPTION
    FALK, E
    SHAH, PK
    FUSTER, V
    [J]. CIRCULATION, 1995, 92 (03) : 657 - 671
  • [6] Determination of in vivo velocity and endothelial shear stress patterns with phasic flow in human coronary arteries: A methodology to predict progression of coronary atherosclerosis
    Feldman, CL
    Ilegbusi, OJ
    Hu, ZJ
    Nesto, R
    Waxman, S
    Stone, PH
    [J]. AMERICAN HEART JOURNAL, 2002, 143 (06) : 931 - 939
  • [7] Localized elevation of shear stress is related to coronary plaque rupture - A 3-dimensional intravascular ultrasound study with in-vivo color mapping of shear stress distribution
    Fukumoto, Yusaku
    Hiro, Takafumi
    Fujii, Takashi
    Hashimoto, Genta
    Fujimura, Tatsuhiro
    Yamada, Jutaro
    Okamura, Takayuki
    Matsuzaki, Masunori
    [J]. JOURNAL OF THE AMERICAN COLLEGE OF CARDIOLOGY, 2008, 51 (06) : 645 - 650
  • [8] Shear stress and advanced atherosclerosis in human coronary arteries
    Gijsen, Frank
    van der Giessen, Alina
    van der Steen, Anton
    Wentzel, Jolanda
    [J]. JOURNAL OF BIOMECHANICS, 2013, 46 (02) : 240 - 247
  • [9] Strain distribution over plaques in human coronary arteries relates to shear stress
    Gijsen, Frank J. H.
    Wentzel, Jolanda J.
    Thury, Attila
    Mastik, Frits
    Schaar, Johannes A.
    Schuurbiers, Johan C. H.
    Slager, Cornelis J.
    van der Giessen, Wim J.
    de Feyter, Pim J.
    van der Steen, Anton F. W.
    Serruys, Patrick W.
    [J]. AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2008, 295 (04): : H1608 - H1614
  • [10] High shear stress induces a strain increase in human coronary plaques over a 6-month period
    Gijsen, Frank J. H.
    Mastik, Frits
    Schaar, Johannes A.
    Schuurbiers, Johan C. H.
    van der Giessen, Wim J.
    de Feyter, Pim J.
    Serruys, Patrick W.
    van der Steen, Anton F. W.
    Wentzel, Jolanda J.
    [J]. EUROINTERVENTION, 2011, 7 (01) : 121 - 127