A novel wave reflection model of the human arterial system.

Hongjun Zhang, John K-J Li
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引用次数: 15

Abstract

A frequency domain distributed 55 segment arterial model was constructed from the reflection perspective to predict pressure waveforms in the large systemic arteries. At any node, the predicted pressure waveform was the combination of a forward propagating waveform and a number of repeatedly reflected waveforms from any possible sites. This approach ensured that any single reflected waveform could be traced back to its origin, and thus the causal-effect relation would be precisely known. This model was evaluated in terms of branch reflection coefficient, terminal vascular bed behavior, and wall viscoelasticity. It was found that the model predicted pressure waveforms were most sensitive to the branch reflection coefficient, and this led to the adoption of the zero-forward reflection assumption at branches. The model-predicted pressure waveforms compared favorably with realistic blood pressure waveforms, especially in the upper limbs. For lower limbs, finer segmentation could further improve the predictions.

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一种新的人体动脉系统波反射模型。
从反射角度构建了55段动脉频域分布模型,预测了全身大动脉的压力波形。在任何节点,预测的压力波形都是正向传播波形和来自任何可能位置的多次反射波形的组合。这种方法确保了任何单一的反射波形都可以追溯到它的起源,从而可以精确地知道因果关系。从分支反射系数、末端维管床行为和管壁粘弹性三个方面对该模型进行了评价。结果表明,该模型预测的压力波形对支路反射系数最为敏感,因此采用支路零正向反射假设。该模型预测的血压波形与实际血压波形比较良好,特别是在上肢。对于下肢,更精细的分割可以进一步改善预测。
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