Venkat Keshav Chivukula, Jennifer Beckman, Song Li, Nazem Akoum, Alberto Aliseda, Claudius Mahr
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引用次数: 0
摘要
背景:本研究探讨了一个假设,即 LVAD 患者出现心房颤动(AF)会增加左心室血栓形成并加剧中风风险:本研究探讨的假设是,LVAD 患者出现心房颤动(AF)会增加左心室血栓形成并加剧中风风险:我们利用植入 LVAD 流入插管的解剖左心室模型,使用非稳定计算流体动力学(CFD)分析了房颤或窦性心律(SR)下的血栓形成风险和血流模式。为了分析左心室中的血小板活化和血栓形成,我们对数十万个血小板进行了单独跟踪,以量化血小板的停留时间(RT)和剪应力累积历史(SH):结果:与房颤相关的不规则和混乱的二尖瓣口血流导致心室内血流模式明显不同,对血小板穿越左心室时所经历的血流诱导刺激产生了深远的负面影响。与 LVAD + SR 病例相比,LVAD + 心房颤动病例中积累了极高 SH 值的血小板数量增加了一倍,导致血栓形成潜能值增加了 36%:这支持了以下假设:房颤导致左心室血流模式不利,增加了 LVAD + 房颤患者的中风风险。量化与 LVAD 患者房颤相关的血栓形成风险有助于指导临床干预决策,降低血栓栓塞事件的增加风险。
Atrial fibrillation increases thrombogenicity of LVAD therapy.
Background: This study investigates the hypothesis that presence of atrial fibrillation (AF) in LVAD patients increases thrombogenicity in the left ventricle (LV) and exacerbates stroke risk.
Methods: Using an anatomical LV model implanted with an LVAD inflow cannula, we analyze thrombogenic risk and blood flow patterns in either AF or sinus rhythm (SR) using unsteady computational fluid dynamics (CFD). To analyze platelet activation and thrombogenesis in the LV, hundreds of thousands of platelets are individually tracked to quantify platelet residence time (RT) and shear stress accumulation history (SH).
Results: The irregular and chaotic mitral inflow associated with AF results in markedly different intraventricular flow patterns, with profoundly negative impact on blood flow-induced stimuli experienced by platelets as they traverse the LV. Twice as many platelets accumulated very high SH in the LVAD + AF case, resulting in a 36% increase in thrombogenic potential score, relative to the LVAD + SR case.
Conclusions: This supports the hypothesis that AF results in unfavorable blood flow patterns in the LV adding to an increased stroke risk for LVAD + AF patients. Quantification of thrombogenic risk associated with AF for LVAD patients may help guide clinical decision-making on interventions to mitigate the increased risk of thromboembolic events.
期刊介绍:
The International Journal of Artificial Organs (IJAO) publishes peer-reviewed research and clinical, experimental and theoretical, contributions to the field of artificial, bioartificial and tissue-engineered organs. The mission of the IJAO is to foster the development and optimization of artificial, bioartificial and tissue-engineered organs, for implantation or use in procedures, to treat functional deficits of all human tissues and organs.