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基于 cMUT 探头的超声造影成像的经典脉冲序列研究。

Investigation of Classical Pulse Sequences for Contrast-Enhanced Ultrasound Imaging With a cMUT Probe.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2016 Oct;63(10):1496-1504. doi: 10.1109/TUFFC.2016.2567641. Epub 2016 May 12.

Abstract

Capacitive micromachined ultrasonic transducers (cMUTs) provide promising ultrasonic technology that could become an alternative to piezoelectric probes for medical applications. cMUTs could be very valuable for contrast-enhanced ultrasound imaging based on higher harmonics detection. However, their use is restricted by the intrinsic nonlinearity of the cMUT transmitters themselves, because it is difficult to distinguish between the nonlinearity of the microbubbles and the nonlinearity arising from the emitting transducer. A number of approaches have been proposed in recent years to cancel the nonlinearity of cMUTs. However, these techniques have limitations in terms of implementation with current ultrasound scanner electronics. The solution to be comparable with classical methods should not need precharacterization of the probe or changing the bias voltage (amplitude or polarity) but does need good sensitivity and a high frame rate to avoid motion artifacts. We propose here proof of a concept of an adapted amplitude modulation sequence with cMUT where transmit elements operate alternately. We show that this method, which is currently used with piezoelectric probes, is fully applicable to cMUT probes and the intrinsic nonlinearity of the transmitter is no longer an issue.

摘要

电容式微机械超声换能器(cMUT)提供了有前途的超声技术,有望成为医学应用中压电探头的替代品。cMUT 对于基于谐波检测的对比增强超声成像非常有价值。然而,由于很难区分微泡的非线性和发射换能器产生的非线性,它们的使用受到 cMUT 发射器本身固有非线性的限制。近年来,已经提出了许多方法来消除 cMUT 的非线性。然而,这些技术在与当前超声扫描仪电子设备的实现方面存在局限性。与传统方法相当的解决方案不应该需要对探头进行预特征化或改变偏置电压(幅度或极性),但需要良好的灵敏度和高帧率以避免运动伪影。我们在这里提出了一种概念验证,即使用 cMUT 进行自适应幅度调制序列,其中发射元件交替工作。我们表明,这种目前用于压电探头的方法完全适用于 cMUT 探头,并且发射器的固有非线性不再是问题。

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