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Localizing systolic ejection within a trans-esophageal CW doppler ultrasound aortovelographic waveform

机译:在经食道连续波多普勒超声主动脉造影波形内定位收缩期射血

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Localizing systolic ejection within trans-esophageal Doppler (TED) ultrasound aortograms is crucial for clinical application, but can be difficult to achieve especially during low flow states commonly encountered in critical care medicine. Termination of ventricular systole within the thoracic aorta is marked by the incisura, a transient, easily recognized on an intra-aortic pressure waveform but not on the non-invasive TED derived flow waveform. We have attempted to develop a new digital signal processing (DSP) strategy with the aim of recognizing physiologically relevant transients within quadrature demodulated Doppler ultrasound signals. We have applied our strategy to real aortic blood flow signals recorded during hypovolemia. Our new approach to TED quadrature demodulated signals shows how systole can be identified non-invasively and offers the real potential for refinement of the device.
机译:对于临床应用而言,在食道多普勒(TED)超声主动脉造影图中定位收缩期射血至关重要,但可能难以实现,尤其是在危重病治疗药物中通常遇到的低流量状态下。胸主动脉内心室收缩的终止是切牙,这是一种短暂的现象,在主动脉内压力波形上很容易识别,但在非侵入性TED血流波形上则不容易识别。我们已尝试开发一种新的数字信号处理(DSP)策略,以识别正交解调的多普勒超声信号内的生理相关瞬变。我们已将我们的策略应用于血容量不足期间记录的真实主动脉血流信号。我们针对TED正交解调信号的新方法展示了如何以无创方式识别心脏收缩,并为设备的完善提供了真正的潜力。

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