Wilson Shannon I, Ingram Katelyn E, Oh Albert, Moreno Michael R, Kassi Mahwash
Department of Biomedical Engineering, Texas A&M University, College Station, TX, United States.
DeBakey Heart and Vascular- Heart Center Research, Houston Methodist Research Institute, Houston, TX, United States.
Front Cardiovasc Med. 2023 Aug 24;10:1248300. doi: 10.3389/fcvm.2023.1248300. eCollection 2023.
Heart failure remains a significant cause of mortality in the United States and around the world. While organ transplantation is acknowledged as the gold standard treatment for end stage heart failure, supply is limited, and many patients are treated with left ventricular assist devices (LVADs). LVADs extend and improve patients' lives, but they are not without their own complications, particularly the hemocompatibility related adverse events (HRAE) including stroke, bleeding and pump thrombosis. Mainstream imaging techniques currently in use to assess appropriate device function and troubleshoot complications, such as echocardiography and cardiac computed tomography, provide some insight but do not provide a holistic understanding of pump induced flow alterations that leads to HRAEs. In contrast, there are technologies restricted to the benchtop-such as computational fluid dynamics and mock circulatory loops paired with methods like particle image velocimetry-that can assess flow metrics but have not been optimized for clinical care. In this review, we outline the potential role and current limitations of converging available technologies to produce novel imaging techniques, and the potential utility in evaluating hemodynamic flow to determine whether LVAD patients may be at higher risk of HRAEs. This addition to diagnostic and monitoring capabilities could improve prevention and treatment of LVAD-induced complications in heart failure patients.
在美国及全球范围内,心力衰竭仍是导致死亡的重要原因。虽然器官移植被公认为终末期心力衰竭的金标准治疗方法,但供体有限,许多患者接受左心室辅助装置(LVAD)治疗。LVAD延长并改善了患者的生命,但它们也有自身的并发症,特别是与血液相容性相关的不良事件(HRAE),包括中风、出血和泵血栓形成。目前用于评估装置功能是否正常及排查并发症的主流成像技术,如超声心动图和心脏计算机断层扫描,能提供一些信息,但无法全面了解导致HRAE的泵引起的血流改变。相比之下,有些技术仅限于在实验台上使用,如计算流体动力学和与粒子图像测速等方法相结合的模拟循环回路,它们可以评估血流指标,但尚未针对临床护理进行优化。在本综述中,我们概述了融合现有技术以产生新型成像技术的潜在作用和当前局限性,以及在评估血流动力学以确定LVAD患者是否有更高HRAE风险方面的潜在效用。这种对诊断和监测能力的补充可以改善心力衰竭患者LVAD引起并发症的预防和治疗。