Lee Hwansung, Akagawa Eiki, Tatsumi Eisuke, Taenaka Yoshiyuki
Department of Artificial Organs, Research Institute, National Cardiovascular Center, 5-7-1 Fujishiro-dai, Suita, 565-8565, Japan.
J Artif Organs. 2008;11(2):60-6. doi: 10.1007/s10047-008-0408-5. Epub 2008 Jul 6.
To investigate the characteristics of cavitation intensity, we performed a synchronized analysis of the visual images of cavitation and the pressure signals using a pulsatile device. The pulsatile device employed was a pneumatic ventricular assist device (PVAD) that is currently being developed by our group. A 23-mm Medtronic Hall valve (M-H valve) and a 23-mm Sorin Bicarbon bileaflet valve (S-B valve) were mounted in the inlet port of the PVAD after the sewing ring had been removed. A function generator provided a square signal, which was used as the trigger signal, via Electrocardiogram R wave (ECG-R) mode, of the control - drive console for circulatory support. The square signal was also used, after a suitable delay, to synchronize operation of a pressure sensor and a high-speed video camera. The data were stored using a digital oscilloscope at a 1-MHz sampling rate, and then the pressure signal was band-pass filtered between 35 and 200 kHz using a digital filter. The valve-closing velocity, visual cavitation time, and root mean square (RMS) pressure of the M-H valve were greater than those of the S-B valve. Both the visual cavitation time and RMS pressure represent the cavitation intensity, and this is a very important factor when estimating mechanical heart valve cavitation intensity in an artificial heart.
为了研究空化强度的特征,我们使用脉动装置对空化的视觉图像和压力信号进行了同步分析。所使用的脉动装置是我们团队目前正在研发的一种气动心室辅助装置(PVAD)。在移除缝合环后,将一个23毫米的美敦力霍尔瓣膜(M-H瓣膜)和一个23毫米的索林碳酸氢盐双叶瓣膜(S-B瓣膜)安装在PVAD的入口端口。一个函数发生器通过循环支持控制驱动控制台的心电图R波(ECG-R)模式提供一个方波信号,该信号用作触发信号。经过适当延迟后,该方波信号还用于使压力传感器和高速摄像机的操作同步。数据使用数字示波器以1兆赫兹的采样率存储,然后使用数字滤波器对压力信号进行35至200千赫兹的带通滤波。M-H瓣膜的瓣膜关闭速度、视觉空化时间和均方根(RMS)压力均大于S-B瓣膜。视觉空化时间和RMS压力都代表空化强度,这在估计人工心脏中机械心脏瓣膜的空化强度时是一个非常重要的因素。