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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >A robust method for estimating respiratory flow using tracheal sounds entropy
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A robust method for estimating respiratory flow using tracheal sounds entropy

机译:使用气管声音熵估计呼吸流量的可靠方法

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摘要

The relationship between respiratory sounds and flow is of great interest for researchers and physicians due to its diagnostic potentials. Due to difficulties and inaccuracy of most of the flow measurement techniques, several researchers have attempted to estimate flow from respiratory sounds. However, all of the proposed methods heavily depend on the availability of different rates of flow for calibrating the model, which makes their use limited by a large degree. In this paper, a robust and novel method for estimating flow using entropy of the band pass filtered tracheal sounds is proposed. The proposed method is novel in terms of being independent of the flow rate chosen for calibration; it requires only one breath for calibration and can estimate any flow rate even out of the range of calibration flow. After removing the effects of heart sounds (which distort the low-frequency components of tracheal sounds) on the calculated entropy of the tracheal sounds, the performance of the method at different frequency ranges were investigated. Also, the performance of the proposed method was tested using 6 different segment sizes for entropy calculation and the best segment sizes during inspiration and expiration were found. The method was tested on data of 10 healthy subjects at five different flow rates. The overall estimation error was found to be 8.3 /spl plusmn/ 2.8% and 9.6 /spl plusmn/ 2.8% for inspiration and expiration phases, respectively.
机译:呼吸声和血流之间的关系由于其诊断潜力而引起研究人员和医生的极大兴趣。由于大多数流量测量技术的困难和不精确性,一些研究人员试图从呼吸声估计流量。然而,所有提出的方法在很大程度上取决于用于校准模型的不同流速的可用性,这使得它们的使用受到很大程度的限制。在本文中,提出了一种鲁棒且新颖的,使用带通滤波后的气管声音的熵来估计流量的方法。所提出的方法是新颖的,因为它与选择用于校准的流速无关。它仅需呼吸一次即可进行校准,甚至可以估算出超出校准流量范围的任何流量。在消除了心音(使气管声音的低频分量失真)对计算出的气管声音熵的影响之后,研究了该方法在不同频率范围内的性能。此外,使用6种不同的片段大小进行熵计算,测试了所提出方法的性能,发现了吸气和呼气期间的最佳片段大小。该方法在10种健康受试者的5种不同流速的数据上进行了测试。发现吸气和呼气阶段的总体估计误差分别为8.3 / spl plusmn / 2.8%和9.6 / spl plusmn / 2.8%。

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