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Miniature polymer transducers for high-frequency medical imaging

机译:用于高频医学成像的微型聚合物换能器

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Abstract: High frequency polymer transducers have been used in a variety of medical imaging applications since they were first introduced by Sherar and Foster in the late 1980s. The transducers are intrinsically broadband and the flexibility of the polymer material makes fabrication relatively easy. Unfortunately, piezoelectric polymer materials have a low dielectric constant. Unless a large aperture is used, the electrical impedance of the transducer will be high, and the receiver sensitivity will be poor. This problem can be avoided by placing a high impedance pre-amplifier inside the transducer housing. Placing the pre-amplifier close to the transducer is important to avoid standing waves between the high output impedance of the transducer and the high input impedance of the pre-amplifier. We have recently developed a process for fabricating high frequency spherically shaped polymer transducers in which an integrated circuit die is mounted just beneath the surface of the transducer. In this paper we describe a theoretical and experimental analysis of the noise performance of these devices. The signal-to-noise ratio at the output of the pre-amplifier is estimated by combining a simple noise model for the amplifier with a KLM model of the transducer. This analysis provides a useful way of evaluating different transducer/pre-amplifier combinations. Excellent agreement between the model predictions and experimental results proves the validity of this approach. !14
机译:摘要:高频聚合物换能器自1980年代后期由Sherar和Foster首次提出以来,已用于各种医学成像应用中。换能器本质上是宽带的,聚合物材料的柔韧性使制造相对容易。不幸的是,压电聚合物材料具有低介电常数。除非使用大孔径,否则换能器的电阻抗会很高,并且接收器灵敏度会很差。通过在换能器外壳内放置高阻抗前置放大器,可以避免此问题。将前置放大器放置在靠近换能器的位置很重要,这样可以避免在换能器的高输出阻抗和前置放大器的高输入阻抗之间产生驻波。最近,我们已经开发出一种制造高频球形聚合物换能器的方法,其中将集成电路芯片安装在换能器的表面正下方。在本文中,我们描述了这些设备的噪声性能的理论和实验分析。通过将放大器的简单噪声模型与换能器的KLM模型相结合,可以估算前置放大器输出端的信噪比。该分析提供了一种评估不同换能器/前置放大器组合的有用方法。模型预测与实验结果之间的出色一致性证明了该方法的有效性。 !14

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