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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Design of a Multilayer Transducer for Acoustic Bladder Volume Assessment
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Design of a Multilayer Transducer for Acoustic Bladder Volume Assessment

机译:多层膀胱声量传感器设计

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摘要

Catheterization remains the "gold standard" for bladder volume assessment, but it is invasive and introduces the risk of infections and traumas. Therefore, noninvasive bladder volume measurement methods have gained interest. In a preceding study a new technique to measure the bladder volume on the basis of nonlinear ultrasound wave propagation was validated. This paper describes a first prototype of a dedicated multilayer transducer to implement this approach. It is composed of a PZT transducer for transmission and a PVDF layer for reception. Acoustical measurements in a water tank and phantom measurements showed that there is a relation between bladder volume and the harmonic contents of the echo obtained from a region of interest behind the bladder. Simulations with an equivalent transducer model on the basis of KLM-circuit modeling closely matched with the results from the acoustical measurements. The results demonstrated the feasibility of the multilayer transducer design for bladder volume assessment on the basis of nonlinear wave propagation
机译:导管插入术仍然是评估膀胱容量的“金标准”,但它是侵入性的,会带来感染和创伤的风险。因此,无创膀胱体积测量方法引起了人们的兴趣。在先前的研究中,验证了一种基于非线性超声波传播测量膀胱体积的新技术。本文介绍了实现此方法的专用多层换能器的第一个原型。它由用于传输的PZT传感器和用于接收的PVDF层组成。在水箱中的声学测量和幻像测量表明,在膀胱容积与从膀胱后面的感兴趣区域获得的回声的谐波含量之间存在关系。基于KLM电路模型的等效换能器模型的仿真与声学测量的结果非常匹配。结果证明了基于非线性波传播的多层换能器设计用于膀胱容量评估的可行性

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