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A Mathematical Model for Reverberations in Biomedical Ultrasound Transducers: a case study

机译:生物医学超声传感器混响的数学模型 - 以案例研究

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Ultrasonography is a non-invasive diagnostic technique using ultrasound to produce images of internal body structures in real-time. It is a reliable, robust and reproducible diagnostic imaging modality commonly used in the clinical practice. Nevertheless, artifacts may occur in images, leading to misdiagnosis. This paper aims to characterize the reverberation artifacts that cause multiple copies of anatomic structures interfaces, degrading image quality and accuracy. Analyzing and optimizing the mechanical properties of the ultrasound probe play a crucial role in the reduction of reverberations. A simplified two-dimensional mathematical model was developed to simulate the response of an ultrasound transducer to a phantom specially designed to generate reverberations. Such model was verified by experiments using a dedicated water-tank set-up. The investigation of a linear array transducer showed that the model yields good results: R~2=0.987 for the correlation between the arrival time of the echoes of simulated and experimental signals, and R~2=0.945 for the correlation of their intensity, at the central frequency. These preliminary results show that the developed model allows for investigating whether changes in the constitutive characteristics of the individual transducer layers reduce reverberations and helps to predict transducer performance in terms of image quality.
机译:超声检查是一种使用超声波的非侵入性诊断技术,实时地产生内部体结构的图像。它是临床实践中常用的可靠,稳健和可重复的诊断成像模型。尽管如此,伪影可能发生在图像中,导致误诊。本文旨在表征引起多个解剖结构界面拷贝的混响工件,降低图像质量和准确性。分析和优化超声波探头的机械性能在减少混响的减少中起着至关重要的作用。开发了一种简化的二维数学模型来模拟超声换能器对专门设计以产生混响的幻象的响应。通过使用专用水箱设定的实验验证了这种模型。线性阵列换能器的研究表明,该模型产生了良好的结果:R〜2 = 0.987用于模拟和实验信号回波的到达时间之间的相关性,以及其强度相关的R〜2 = 0.945中心频率。这些初步结果表明,开发的模型允许研究各个换能器层的本构体特性的变化是否会减少混响并有助于在图像质量方面预测传感器性能。

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