Thrombotic Risk of Rotor Speed Modulation Regimes of Contemporary Centrifugal Continuous-flow Left Ventricular Assist Devices

被引:32
作者
Boraschi, Andrea [1 ,2 ]
Bozzi, Silvia [1 ]
Thamsen, Bente [3 ]
Granegger, Marcus [3 ]
Wiegmann, Lena [2 ]
Pappalardo, Federico [4 ,5 ]
Slepian, Marvin J. [6 ,7 ]
Kurtcuoglu, Vartan [2 ]
Redaelli, Alberto [1 ]
De Zelicourt, Diane [2 ]
Consolo, Filippo [4 ]
机构
[1] Politecn Milan, Dept Elect Informat & Bioengn, Milan, Italy
[2] Univ Zurich, Inst Physiol, Interface Grp, Winterthurerstr 190, CH-8057 Zurich, Switzerland
[3] Charite Univ Med Berlin, Inst Imaging Sci & Computat Modelling Cardiovasc, Biofluid Mech Lab, Berlin, Germany
[4] Univ Vita Salute San Raffaele, Via Olgettina 58, I-20132 Milan, Italy
[5] UPMC Italy, IRCCS ISMETT, Dept Anesthesia & Intens Care, Palermo, Italy
[6] Univ Arizona, Sarver Heart Ctr, Tucson, AZ 85721 USA
[7] Univ Arizona, Dept Biomed Engn, Tucson, AZ 85721 USA
关键词
left ventricular assist device; HVAD Lavare Cycle; HeartMate3 artificial pulse; thrombosis; LEFT ATRIAL APPENDAGE; WILLEBRAND-FACTOR DEGRADATION; PLATELET ACTIVATION; SHEAR-STRESS; FIBRILLATION; THROMBOEMBOLISM; DETERMINANTS; VELOCITY; OUTCOMES; STROKE;
D O I
10.1097/MAT.0000000000001297
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Contemporary centrifugal continuous-flow left ventricular assist devices (LVADs) incorporate dynamic speed modulation algorithms. Hemocompatibility of these periodic unsteady pump operating conditions has been only partially explored. We evaluated whether speed modulation induces flow alterations associated with detrimental prothrombotic effects. For this aim, we evaluated the thrombogenic profile of the HeartWare ventricular assist device (HVAD) Lavare Cycle (LC) and HeartMate3 (HM3) artificial pulse (AP) via comprehensive numerical evaluation of (i) pump washout, (ii) stagnation zones, (iii) shear stress regimens, and (iv) modeling of platelet activation status via the platelet activity state (PAS) model. Data were compared between different simulated operating scenarios, including: (i) constant rotational speed and pump pressure head, used as reference; (ii) unsteady pump pressure head as induced by cardiac pulsatility; and (iii) unsteady rotor speed modulation of the LC (HVAD) and AP (HM3). Our results show that pump washout did not improve across the different simulated scenarios in neither the HVAD nor the HM3. The LC reduced but did not eliminate flow stagnation (-57%) and did not impact metrics of HVAD platelet activation (median PAS: +0.4%). The AP reduced HM3 flow stagnation by up to 91% but increased prothrombotic shear stress and simulated platelet activation (median PAS: +124%). Our study advances understanding of the pathogenesis of LVAD thrombosis, suggesting mechanistic implications of rotor speed modulation. Our data provide rationale criteria for the future design optimization of next generation LVADs to further reduce hemocompatibility-related adverse events.
引用
收藏
页码:737 / 745
页数:9
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