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Acoustic Analysis of a Mechanical Circulatory Support

机译:机械循环支架的声学分析

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摘要

Mechanical circulatory support technology is continually improving. However, adverse complications do occur with devastating consequences, for example, pump thrombosis that may develop in several parts of the pump system. The aim of this study was to design an experimental clot/thrombosis model to register and analyze acoustic signals from the left ventricular assist device (LVAD) HeartMate II (HMII) (Thoratec Corporation, Inc., Pleasanton, CA, USA) and detect changes in sound signals correlating to clots in the inflow, outflow, and pump housing. Using modern telecom techniques, it was possible to register and analyze the HMII pump-specific acoustic fingerprint in an experimental model of LVAD support using a mock loop. Increase in pump speed significantly (P<0.005) changed the acoustic fingerprint at certain frequency (0-23000Hz) intervals (regions: R1-3 and peaks: P1,3-4). When the ball valves connected to the tubing were narrowed sequentially by ~50% of the inner diameter (to mimic clot in the out- and inflow tubing), the frequency spectrum changed significantly (P<0.005) in P1 and P2 and R1 when the outflow tubing was narrowed. This change was not seen to the same extent when the lumen of the ball valve connected to the inflow tube was narrowed by ~50%. More significant (P<0.005) acoustic changes were detected in P1 and P2 and R1 and R3, with the largest dB figs. in the lower frequency ranges in R1 and P2, when artificial clots and blood clots passed through the pump system. At higher frequencies, a significant change in dB figs. in R3 and P4 was detected when clots passed through the pump system. Acoustic monitoring of pump sounds may become a valuable tool in LVAD surveillance.
机译:机械循环支持技术正在不断提高。但是,确实会发生不利的并发症,并带来毁灭性后果,例如,泵血栓形成可能会在泵系统的多个部分中发展。这项研究的目的是设计一个实验性血凝块/血栓形成模型,以记录和分析来自左心室辅助设备(LVAD)HeartMate II(HMII)(Thoratec Corporation,Inc.,Pleasanton,CA,美国)的声音信号并检测变化声音信号与流入,流出和泵壳中的凝块有关。使用现代电信技术,可以使用模拟循环在LVAD支持的实验模型中注册和分析HMII泵特定的声学指纹。泵速的显着提高(P <0.005)在特定频率(0-23000Hz)的时间间隔(区域:R1-3和峰值:P1,3-4)上改变了声学指纹。当连接到管道的球阀依次缩小内径的50%(以模仿流出和流入管道中的凝块)时,当P1和P2和R1的频谱显着变化时(P <0.005),流出管变窄。当连接到流入管的球阀的内腔变窄〜50%时,这种变化的程度不同。在P1和P2以及R1和R3中检测到更显着的(P <0.005)声学变化,具有最大的dB图。当人工血块和血块通过泵系统时,在R1和P2的较低频率范围内。在更高的频率下,dB无花果的变化很大。当凝块通过泵系统时,在R3和P4中检测到“ R”。泵声音的声音监视可能成为LVAD监视中的重要工具。

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