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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Phase and Amplitude Modulation Methods for Nonlinear Ultrasound Imaging With CMUTs
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Phase and Amplitude Modulation Methods for Nonlinear Ultrasound Imaging With CMUTs

机译:使用CMUT进行非线性超声成像的相位和幅度调制方法

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摘要

Conventional amplitude and phase modulated pulse sequences for selective imaging of nonlinear tissue and ultrasound contrast agents are designed for piezoelectric transducers that behave linearly. Inherent nonlinearity of capacitive micromachined ultrasonic transducers (CMUTs), especially during large-signal operation, renders these methods inapplicable. In this paper, we present different pulse sequences for nonlinear imaging that are valid for small- and large-signal CMUT operations. For small-signal operation, two-pulse amplitude and phase modulation methods for microbubble and tissue harmonic imaging are presented, where CMUT nonlinearity is compensated via subharmonic excitation. In the large-signal regime, using a nonlinear model, we first show that there is a simple linear relationship between the phases of each harmonic distortion component generated and the input drive signal. Based on this observation, we demonstrate a pulse sequence using consecutive phase modulated transmit events to extract harmonics of the nonlinear contrast agent echo content uncorrupted by CMUT nonlinearity. The proposed methods assume no information about the transducer and, therefore, are applicable to any CMUT. The phase modulation method is also valid for piezoelectric transducers and systems with nonlinearities described by Taylor series where the same phase relationship between the input signal and the harmonic content is valid. The proof of principle experiments using a commercial contrast agent validates the phase modulated pulse sequences for CMUTs, operating in a highly nonlinear collapse-snapback mode and for piezoelectric transducers.
机译:用于非线性组织和超声造影剂的选择性成像的常规幅度和相位调制脉冲序列是为线性行为的压电换能器设计的。电容式微加工超声换能器(CMUT)固有的非线性,特别是在大信号操作期间,使这些方法不适用。在本文中,我们提出了适用于小信号和大信号CMUT操作的不同的非线性成像脉冲序列。对于小信号操作,提出了用于微气泡和组织谐波成像的两脉冲幅度和相位调制方法,其中通过次谐波激励补偿了CMUT非线性。在大信号状态下,我们使用非线性模型首先表明,所产生的每个谐波失真分量的相位与输入驱动信号之间都存在简单的线性关系。基于此观察,我们演示了使用连续相位调制的发射事件提取不受CMUT非线性破坏的非线​​性造影剂回波含量的谐波的脉冲序列。所提出的方法假定没有关于换能器的信息,因此适用于任何CMUT。相位调制方法也适用于具有泰勒级数描述的非线性的压电传感器和系统,其中输入信号和谐波含量之间的相同相位关系有效。使用商用造影剂进行的原理验证实验可验证以高度非线性的塌陷-回弹模式操作的CMUT和压电换能器的相位调制脉冲序列。

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