心输出量的连续登记与一个新的计算机系统设计的热膜风速测定:一项体外研究。

J M Hasenkam, J H Ostergaard, E M Pedersen, P K Paulsen, T Nissen
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引用次数: 0

摘要

我们开发并改进了一种连续在线登记心输出量的方法。通过在肺动脉中使用热膜风速计探头测量血流速度,可以通过速度信号的门控收缩期积分来估计心输出量。一段时间内的积分值可转换为心输出量的比例值。放置在速度探头旁边的热敏电阻可以对心输出量进行热稀释测量,作为体内和原位校准。本文对该方法在脉动流中的应用进行了体外研究。实际流量与速度法和热稀释法均有较好的相关性。流体温度和改变冲程体积和/或脉冲频率对精度的影响最小,而改变探针位置需要重新校准速度法,而不需要重新校准热稀释法。速度法测量心输出量的优点是:连续在线监测心输出量。由于减少了热稀释测量的频率,只需要注射非常小体积的冷盐水。
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Continuous registration of cardiac output with a new computer system designed for hot-film anemometry: an in vitro study.

We have developed and improved a method for the continuous on-line registration of cardiac output. By measuring blood velocity with a hot-film anemometer probe in the pulmonary artery, cardiac output can be estimated by gated systolic integration of the velocity signals. The integrated value for a certain period can be converted to a cardiac output proportional value. A thermistor placed next to the velocity probe enables thermodilution measurement of cardiac output, which serves as in vivo and in situ calibration. In this paper an in vitro study of the method applied to pulsatile flow is presented. A good correlation was found between real flow and both the velocity method and the thermodilution method. Fluid temperature and changing stroke volume and/or pulse frequency had minimal influence on accuracy, whereas altered probe position required recalibration for the velocity method but not for the thermodilution method. The advantages of the velocity method for the measurement of cardiac output are: The continuous on-line monitoring of cardiac output. The need for the injection of only very small volumes of cold saline, as the frequency of thermodilution measurements is reduced.

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