首页> 外文会议>Engineering in Medicine and Biology Society, 2001. Proceedings of the 23rd Annual International Conference of the IEEE >Identifying physiologically significant pumping state transitions in implantable rotary blood pumps used as left ventricular assist devices: an in-vivo study
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Identifying physiologically significant pumping state transitions in implantable rotary blood pumps used as left ventricular assist devices: an in-vivo study

机译:识别用作左心室辅助设备的可植入旋转式血泵中具有生理学意义的泵送状态转变:一项体内研究

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The VentrAssist implantable rotary blood pump (IRBP) is a centrifugal pump that uses a hydrodynamic bearing to support its impeller. The pump, is to be used as a left ventricular assist device (LVAD). Varying pump speed can control the degree of left ventricular assistance. By increasing impeller speed, it is possible to transition from the normal physiological state of ventricular ejection (VE) to a state where the aortic valve remains closed (AC) throughout the cardiac cycle. Using the non-invasive parameter of instantaneous impeller speed in an ovine experimental model (N=3), we investigated state transitions. The cardiovascular system of the animal was perturbed by pharmacological intervention or by exsanguination. A total of six pump speed set point changes that caused physiological state transitions (VE to AC) were examined. A state transition index (STI) derived originally from data obtained in an in-vitro mock loop setup was found to be directly applicable in the in-vivo studies and showed statistically significant (p>0.0605) reliability in differentiating between no change in state and change in state. These data indicate that the STI may be a valuable mechanism to in optimal LVAD control.
机译:VentrAssist植入式旋转血泵(IRBP)是一种离心泵,它使用流体动力轴承来支撑其叶轮。该泵将用作左心室辅助设备(LVAD)。改变泵速可以控制左心室辅助程度。通过提高叶轮速度,可以从心室​​射血的正常生理状态(VE)过渡到整个心动周期中主动脉瓣保持关闭(AC)的状态。在绵羊实验模型(N = 3)中使用瞬时叶轮速度的非侵入性参数,我们研究了状态转换。动物的心血管系统受到药物干预或放血的干扰。总共检查了导致生理状态转变(VE到AC)的六个泵速设定值变化。发现最初从体外模拟循环设置中获得的数据得出的状态转换指数(STI)可直接用于体内研究,并且在区分状态无变化和状态无变化时显示出统计学上显着的(p> 0.0605)可靠性。状态改变。这些数据表明,STI可能是实现最佳LVAD控制的有价值的机制。

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