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Data-driven modeling of arterial wave propagation using non-invasive arterial pulse waveforms

机译:使用非侵入性动脉脉冲波形的数据驱动的动脉波传播建模

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This study investigates the validity of two non-invasive arterial pulse waveforms as viable indirect surrogates of arterial blood pressure waveforms, by conducting a data-driven modeling analysis of arterial wave propagation. Using the so-called “tube-load” model, we examined how well the relation between carotid versus femoral tonometry waveforms as well as carotid tonometry versus ankle pulse volume recording waveforms can be fitted to the model. Since the tube-load model describes the relationship between proximal versus distal blood pressures, we hypothesized that viable surrogates of blood pressure waveforms must be fitted well by the tube-load model. Preliminary results derived from 4 subjects with cardiovascular diseases indicated that carotid and femoral tonometry waveforms may serve as viable surrogate of arterial BP waveforms while PVR may need additional treatment, which was attributed to the nature of PVR waveforms: they are volume waveforms but not pressure waveforms.
机译:本研究通过对动脉波传播进行数据驱动的建模分析,研究了两种非侵入性动脉脉搏波形作为可行的动脉血压波形替代指标的有效性。使用所谓的“管载荷”模型,我们检查了颈动脉血压与股骨眼压波形之间的关系以及颈动脉血压与脚踝脉搏量记录波形之间的关系。由于试管负荷模型描述了近端血压与远端血压之间的关系,因此我们假设,试管负荷模型必须很好地拟合可行的血压波形替代指标。从4名患有心血管疾病的受试者得出的初步结果表明,颈动脉和股动脉压测量波形可以作为可行的动脉BP波形替代,而PVR可能需要进一步治疗,这归因于PVR波形的性质:它们是体积波形,而不是压力波形。

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