Procoagulant properties of flow fields in stenotic and expansive orifices

被引:22
作者
Fallon, Anna M. [1 ]
Dasi, Lakshmi Prasad [1 ]
Marzec, Ulla M. [2 ]
Hanson, Stephen R. [2 ]
Yoganathan, Ajit P. [1 ]
机构
[1] Georgia Inst Technol, Wallac H Coulter Sch Biomed Engn, Atlanta, GA 30332 USA
[2] Oregon Hlth & Sci Univ, Dept Biomed Engn, Portland, OR 97239 USA
关键词
mechanical heart valves; shear-induced platelet activation; shear-induced platelet aggregation; thrombosis; blood; coagulation;
D O I
10.1007/s10439-007-9398-3
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
In the United States, over 125,000 mechanical heart valves (MHVs) are implanted each year. Flow through the MHV hinge can cause thromboemboli formation. The purpose of this study was to examine various orifice geometries representing the MHV hinge region and how these geometries may contribute to platelet activation and thrombin generation. We also characterized these flow fields with digital particle image velocimetry (DPIV). Citrated human blood at room temperature was forced through the orifices (400 and 800 mu m ID) with a centrifugal bypass pump, continuously infusing calcium chloride to partially reverse the citrate anticoagulant. Blood samples were tested for the presence of thrombin-antithrombin complex (TAT) and platelet factor 4 (PF4). Velocity and shear stress were measured with DPIV using a blood analog fluid seeded with fluorescent microbeads. The results indicate that small changes in geometry, although they do not affect the bulk flow, change the coagulation propensity as blood flows through the orifices. A more abrupt geometry allows more stagnation to occur resulting in more thrombin generation. PF4 measurements indicated similar levels of platelet activation for all orifices. DPIV showed differences in the jets with respect to entrainment of stagnant fluid. These results help to pinpoint the important parameters that lead to flow stasis and subsequent thrombus formation.
引用
收藏
页码:1 / 13
页数:13
相关论文
共 28 条
  • [1] Affeld K, 1986, ASAIO Trans, V32, P269
  • [2] ALEVRIADOU BR, 1993, BLOOD, V81, P1263
  • [3] ALKHAMIS TM, 1990, BLOOD, V75, P1568
  • [4] BUTCHART EG, 1992, THROMBOSIS EMBOLISM, P172
  • [5] Chang BC, 2001, J HEART VALVE DIS, V10, P185
  • [6] Hybrid LMS-MMSE inverse halftoning technique
    Chang, PC
    Yu, CS
    Lee, TH
    [J]. IEEE TRANSACTIONS ON IMAGE PROCESSING, 2001, 10 (01) : 95 - 103
  • [7] The entrainment behavior of a turbulent axisymmetric jet in a viscous host fluid
    Chhabra, S
    Shipman, TN
    Prasad, AK
    [J]. EXPERIMENTS IN FLUIDS, 2005, 38 (01) : 70 - 79
  • [8] THE ROLE OF STASIS IN THE CLOTTING OF BLOOD AND MILK FLOWS AROUND SOLID OBJECTS
    CHRISTY, JRE
    MACLEOD, N
    [J]. CARDIOVASCULAR RESEARCH, 1989, 23 (11) : 949 - 959
  • [9] Flow and thrombosis at orifices simulating mechanical heart valve leakage regions
    Fallon, AM
    Shah, N
    Marzec, UM
    Warnock, JN
    Yoganathan, AP
    Hanson, SR
    [J]. JOURNAL OF BIOMECHANICAL ENGINEERING-TRANSACTIONS OF THE ASME, 2006, 128 (01): : 30 - 39
  • [10] FALLON AM, 2007, THROMB RES 0525