Kobayashi S, Owada N, Yambe T, Nitta S, Fukuju T, Hongoh T, Hashimoto H
Miyagi Syakai-Hoken Hospital, Sendai, Japan.
Artif Organs. 1999 Aug;23(8):732-5. doi: 10.1046/j.1525-1594.1999.06412.x.
A vibrating flow pump (VFP) can generate high frequency oscillated blood flow within 10-30 Hz by the oscillation of its central tube. A totally implantable artificial heart using a VFP is being developed as a unique type of blood pump. In this study, left ventricular (LV) assist circulation was performed using a VFP. The total vascular resistance and driving frequency of the VFP were estimated from their relationship. The effect of oscillation on the vascular system was studied by the frequency analysis method and vascular impedance. Adult goats were anesthetized by halothane using an inhaler and a left fourth thoracotomy was performed. The inflow cannula was inserted into the left ventricle, and the outflow cannula was sutured to the descending aorta. The VFP and a centrifugal pump were set in parallel for alternation and comparison. The driving frequency of the VFP was changed and included 15, 20, 25, and 30 Hz. The hemodynamic parameters were continuously recorded during experiments by a digital audio tape (DAT) data recorder. The internal pressure of the left ventricular cavity and aortic pressure were monitored by the pressure manometers continuously. One hundred percent LV assistance was judged by the separation of LV and aortic pressure. The total vascular resistance was decreased by the start of operation of each pump. The decrease during flow using the VFP was not as large as that using a centrifugal pump (CP). The arterial input impedance during oscillated blood flow by the VFP showed a slow curve appearance. It was similar to the frequency characteristics curve of natural heart beats within the lower frequencies. The study of arterial impedance may be important for the estimation of the reflection of the pulsatile wave from the arterial branch, among other things.
振动流泵(VFP)可通过其中心管的振荡产生10 - 30赫兹的高频振荡血流。一种使用VFP的完全植入式人工心脏正在作为一种独特类型的血泵进行研发。在本研究中,使用VFP进行了左心室(LV)辅助循环。根据VFP的总血管阻力与其驱动频率的关系对其进行了估算。通过频率分析方法和血管阻抗研究了振荡对血管系统的影响。成年山羊使用吸入器通过氟烷麻醉,并进行左第四肋间开胸手术。将流入插管插入左心室,流出插管缝合至降主动脉。将VFP和离心泵并联设置以便交替和比较。改变VFP的驱动频率,包括15、20、25和30赫兹。在实验过程中,通过数字音频磁带(DAT)数据记录器连续记录血流动力学参数。通过压力计持续监测左心室腔的内压和主动脉压力。通过左心室和主动脉压力的分离判断为100%左心室辅助。每个泵开始运行时总血管阻力均降低。使用VFP时在血流过程中的降低幅度不如使用离心泵(CP)时大。VFP产生振荡血流期间的动脉输入阻抗呈现出一条缓慢的曲线形态。在较低频率范围内,它类似于自然心跳的频率特性曲线。动脉阻抗的研究对于估计动脉分支处脉搏波的反射等可能很重要。