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3D noninvasive ultrasound Joule heat tomography based on acousto-electric effect using unipolar pulses: a simulation study

机译:基于单极脉冲的声电效应的3D非侵入超声焦耳术:仿真研究

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摘要

Electrical properties of biological tissues are highly sensitive to their physiological and pathological status. Thus it is of importance to image electrical properties of biological tissues. However, spatial resolution of conventional electrical impedance tomography (EIT) is generally poor. Recently, hybrid imaging modalities combining electric conductivity contrast and ultrasonic resolution based on acouto-electric effect has attracted considerable attention. In this study, we propose a novel three-dimensional (3D) noninvasive ultrasound Joule heat tomography (UJHT) approach based on acouto-electric effect using unipolar ultrasound pulses. As the Joule heat density distribution is highly dependent on the conductivity distribution, an accurate and high resolution mapping of the Joule heat density distribution is expected to give important information that is closely related to the conductivity contrast. The advantages of the proposed ultrasound Joule heat tomography using unipolar pulses include its simple inverse solution, better performance than UJHT using common bipolar pulses and its independence of any priori knowledge of the conductivity distribution of the imaging object. Computer simulation results show that using the proposed method, it is feasible to perform a high spatial resolution Joule heat imaging in an inhomogeneous conductive media. Application of this technique on tumor scanning is also investigated by a series of computer simulations.
机译:生物组织的电学性质对其生理和病理状态高度敏感。因此,重要的是对生物组织的电特性进行成像。但是,常规电阻抗层析成像(EIT)的空间分辨率通常很差。近来,基于声电效应的将电导率对比度和超声分辨率相结合的混合成像形式已经引起了相当大的关注。在这项研究中,我们提出了一种新颖的三维(3D)无创超声焦耳热断层扫描(UJHT)方法,该方法基于使用单极超声脉冲的声电效应。由于焦耳热密度分布高度依赖于电导率分布,因此焦耳热密度分布的精确且高分辨率的映射有望提供与电导率对比度密切相关的重要信息。所提出的使用单极脉冲的超声焦耳热层析成像的优点包括其简单的逆解,比使用普通的双极脉冲的UJHT更好的性能以及其与成像对象的电导率分布的任何先验知识无关。计算机仿真结果表明,使用该方法可以在非均匀的导电介质中进行高空间分辨率的焦耳热成像。还通过一系列计算机模拟研究了该技术在肿瘤扫描中的应用。

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