Plewes D B, Urchuk S N, Kim S, Soutar I
Department of Medical Biophysics, Sunnybrook Health Science Centre, University of Toronto, Ontario, Canada.
Med Phys. 1995 Jul;22(7):1111-5. doi: 10.1118/1.597504.
An MR compatible flow simulator is described which generates physiologically realistic pressure and flow waveforms. The simulator is based on a servomotor-driven gear pump which produces pulsatile flow by modulation of the servomotor rotation rate. Operation of the simulator is under the control of a personal computer, which executes an iterative feedback loop to minimize errors between measured and desired pressure waveforms. The simulator is totally automatic, requiring only a few minutes of iteration to generate the desired pressure waveform. Accurate sinusoidal waveforms with frequencies up to 10 Hz have been generated using the simulator, with high-frequency contamination of the measured waveform at least 80 dB below the fundamental frequency. Aortic waveforms have been produced with realistic flow rates and pressure variations. The pump assembly is mechanically straightforward and can operate at an 8-m distance from the flow phantom to allow the device to be isolated from the MR magnet room.
描述了一种与磁共振兼容的血流模拟器,它能生成生理上逼真的压力和血流波形。该模拟器基于一个由伺服电机驱动的齿轮泵,通过调节伺服电机的转速来产生脉动血流。模拟器的操作由个人计算机控制,该计算机执行迭代反馈回路以最小化测量的和期望的压力波形之间的误差。该模拟器完全自动化,仅需几分钟的迭代就能生成期望的压力波形。使用该模拟器已生成频率高达10Hz的精确正弦波形,测量波形的高频污染至少比基频低80dB。已产生具有逼真流速和压力变化的主动脉波形。泵组件在机械结构上很简单,并且可以在距血流模型8米的距离处运行,以使该设备与磁共振磁体室隔离。