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A non-invasive system for assessment of left ventricular systolic mechanical performance

机译:评估左心室收缩力学性能的非侵入性系统

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Previously developed systems of echocardiography with automatic border detection (Echo-ABD) to generate left ventricular (LV) pressure-area loops were not truly non-invasive: (i) pressures used were either invasive aortic/LV or raw peripheral arterial pressure waveforms uncorrected for wave propagation/reflection effects; (ii) preload reduction was achieved with vasodilator agents perhaps influencing ventricular performance indices. To overcome these problems, the authors combined Echo-ABD area measurement with (i) ascending aortic pressure waveforms derived from non-invasive finger pressure waveforms (FINAPRES) with a mathematical model of the upper limb that was tailored against each individual's carotid tonometric pressure waveform to accurately match the aortic waveform, and (ii) preload reduction achieved with phase I of Valsalva manoeuvre (VM). This totally non-invasive method should be useful in assessing left ventricular systolic function in clinical settings.
机译:以前开发了具有自动边界检测的超声心动图(Echo-ABD)以产生左心室(LV)压力区域环路的系统不是真正的非侵入性:(i)所使用的压力是侵入性主动脉/ LV或未校正的原始外周动脉压力波形对于波传播/反射效应; (ii)使用血管扩张剂进行预加载减少,也许可能影响心室性能指数。为了克服这些问题,作者将回声ABD区域的测量与(i)升高来自非侵入式手指压力波形(Finapres)的主动脉压力波形,与针对每个单独的颈动脉的颈动脉压力波形定制的上肢数学模型为了准确匹配主动脉波形,并通过Valsalva机动(VM)的I阶段实现预先加载减少。这种完全非侵入性方法应该有助于评估临床环境中的左心室收缩功能。

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