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Fitting the frequency response in acoustic reflectometry for an in vitro model of a human upper airway

机译:拟合声反射测量中的频率响应,用于人类上气道体外模型

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Acoustic reflectometry has been used earlier to estimate the bore profile of a human upper airway and endotracheal tubes using thousands of acoustic pulses. The axial resolution of the profile computed depends on generating a broad frequency response, filtering undesired frequencies and compensating for wave propagation losses. The work presented here shows that acoustic reflectometry may be performed by using few Gaussian-sinusoidal acoustic waves, equally spaced along the bandwidth, and the Ware-Aki algorithm. In this way, the frequency content is controlled, the computational cost is reduced, and the axial resolution is improved. This entails fitting the frequency impulse response, compensating for propagation losses in the amplitude response, and analyzing the phase response. The methodology was validated in the laboratory with an in vitro model of a human upper airway, coupled to an acoustic reflectometer. Only one hundred acoustic waves, with a frequency step of 100 Hz, were needed to reconstruct a profile with an axial resolution within an acceptable margin of error.
机译:声反射仪已被用来较早估计使用上千声脉冲的人上呼吸道和气管内导管的孔轮廓。计算轮廓的轴向分辨率取决于产生宽广的频率响应,过滤不希望的频率并补偿波的传播损耗。工作这里提出表明,声波反射可以通过使用一些高斯正弦声波,沿带宽等距和洁具,亚希算法来执行。以这种方式,频率含量控制,计算成本降低,并且在轴向分辨率提高。这需要拟合的频率脉冲响应,补偿所述幅度响应的传播损耗,以及分析所述相位响应。该方法在实验室中进行了验证与人类上气道的体外模型,其耦合到声反射仪。只有百声波,以100赫兹的频率的步骤,还需要重构的轮廓与在可接受的误差容限内的轴向分辨率。

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