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Estimation of diffraction effect in ultrasonic attenuation by through-transmission substitution technique

机译:通过透射替代技术估算超声衰减中的衍射效应

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Measurement of ultrasonic attenuation is important in clinical and industrial applications. The overall goal of this research was to characterize the diffraction effect in ultrasonic attenuation. We have followed a systematic approach, beginning with the theoretical analysis of the calculation method using the transfer function of the signal spectrum, moving on to numerical computations and experimental confirmation. The relation of sample thickness to pulse duration is presented and the transmission coefficient of the sample for different propagation modes is discussed. Particular attention is paid to the diffraction effect which is easy to be neglected but a potential source of artifacts. Numerical computations demonstrated that lower frequencies, shorter transducer distances and larger velocity difference can result in significant diffraction effect. Due to the complexity of determining interface loss in Single Sample Substitution Method (SSM), Two Samples Substitution Method (TSM) was proposed to avoid this drawback. Comparison experiment with SSM illustrates that the proposed diffraction correction model is sound in theory and feasible in practice.
机译:超声衰减的测量在临床和工业应用中很重要。这项研究的总体目标是表征超声衰减中的衍射效应。我们采用了系统的方法,首先是使用信号频谱的传递函数对计算方法进行理论分析,然后进行数值计算和实验确认。给出了样品厚度与脉冲持续时间的关系,并讨论了样品在不同传播模式下的透射系数。特别要注意的是衍射效应,该效应易于忽略,但可能是伪影的来源。数值计算表明,较低的频率,较短的换能器距离和较大的速度差会导致明显的衍射效应。由于在单样本替代方法(SSM)中确定接口损耗的复杂性,提出了两种样本替代方法(TSM)来避免此缺点。与SSM的对比实验表明,所提出的衍射校正模型在理论上是合理的,在实践中是可行的。

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