首页> 美国卫生研究院文献>Journal of Tissue Engineering >A 3D-printed passive ultrasound phase-interference compensator for reduced wave degradation in cancellous bone – an experimental study in replica models
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A 3D-printed passive ultrasound phase-interference compensator for reduced wave degradation in cancellous bone – an experimental study in replica models

机译:一种3D打印的被动超声相位干扰补偿器用于减少松质骨中的波降解-复制模型中的实验研究

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摘要

The current ‘active’ solution to overcome the impediment of ultrasound wave degradation associated with transit-time variation in complex tissue structures, such as the skull, is to vary the transmission delay of ultrasound pulses from individual transducer elements. This article considers a novel ‘passive’ solution in which constant transit time is achieved by propagating through an additional material layer positioned between the ultrasound transducer and the test sample. To test the concept, replica models based on four cancellous bone natural tissue samples and their corresponding passive ultrasound phase-interference compensator were 3D-printed. Normalised broadband ultrasound attenuation was used as a quantitative measure of wave degradation, performed in transmission mode at a frequency of 1 MHz and yielding a reduction ranging from 57% to 74% when the ultrasound phase-interference compensator was incorporated. It is suggested that the passive compensator offers a broad utility and, hence, it may be applied to any ultrasound transducer, of any complexity (single element or array), frequency and dimension.
机译:克服与复杂组织结构(如头骨)中的传播时间变化相关的超声波降解的障碍的当前“主动”解决方案是改变来自单个换能器元件的超声波脉冲的传输延迟。本文考虑了一种新颖的“被动”解决方案,其中,通过传播通过位于超声换能器和测试样品之间的附加材料层来实现恒定的传输时间。为了验证这一概念,对基于四个松质骨天然组织样本及其相应的被动超声相位干扰补偿器的复制模型进行了3D打印。归一化的宽带超声衰减被用作波衰减的定量度量,它在传输模式下以1 MHz的频率执行,并且当结合了超声相位干扰补偿器时,衰减范围为57%到74%。建议无源补偿器提供广泛的用途,因此,它可以应用于任何复杂度(单个元件或阵列),频率和尺寸的超声换能器。

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