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首页> 外文期刊>IEEE Transactions on Instrumentation and Measurement >Noninvasive Acoustoelectric Imaging of Resistivity Distribution Based on Lead Field Theory
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Noninvasive Acoustoelectric Imaging of Resistivity Distribution Based on Lead Field Theory

机译:基于引线场理论的电阻率分布的无创声电成像

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摘要

Acoustoelectric (AE) effect is a basic physical interaction that focused ultrasound that alters the resistivity at the focal spot. Exploiting the AE effect, noninvasive AE imaging (nAEI) of resistivity distribution is investigated based on lead field theory. According to lead field theory, measured AE signal is of good spatial position property, which is sifted by focused ultrasound. Therefore, nAEI can form images directly without resorting to the inverse algorithm. A uniform phantom, 15 NaCl solution, and a nonuniform phantom, composed of 15 NaCl solution and fat, are imaged and discussed. In the experiment, both stimulating and recording electrodes are noninvasive, fixed on the boundary of the imaging chamber. A 1-MHz focused ultrasound transducer scans across the imaging chamber to make spatial sifting. For the uniform phantom with the fixed focal spot, the linear relationship between measured AE signal envelope and injected current signal is tested. In addition, taking resistivity distribution into consideration, the $yz$ -section images of uniform and nonuniform phantoms are presented. Compared to that of the uniform phantom, the resistivity distribution interface of nonuniform phantom can be obviously imaged and distinguished, which is verified by ultrasound pulse-echo imaging. Also, the 3-D slice images confirm that, even taking injected current into consideration, nAEI is potential for resistivity distribution. Finally, the experiment results are discussed and the reason is analyzed from the aspect of enhanced ultrasound pressure and current density induced by resistivity distribution. Both experimental and simulation results validate the feasibility of nAEI of resistivity distribution, and this paper potentially enhances the application of nAEI for cancer detection.
机译:声电(AE)效应是一种基本的物理相互作用,可以使超声聚焦,从而改变焦点处的电阻率。利用AE效应,基于铅场理论研究了电阻率分布的无创AE成像(nAEI)。根据超前场理论,测得的声发射信号具有良好的空间位置特性,这是通过聚焦超声进行筛选的。因此,nAEI无需借助逆算法即可直接形成图像。对均匀的体模15 NaCl溶液和由15 NaCl溶液和脂肪组成的非均匀体模进行成像和讨论。在实验中,刺激电极和记录电极都是无创的,固定在成像室的边界上。 1 MHz聚焦超声换能器在成像室中扫描以进行空间筛选。对于具有固定焦点的均匀幻像,测试了测得的AE信号包络和注入的电流信号之间的线性关系。另外,考虑到电阻率分布,给出了均匀和不均匀模型的$ yz $截面图像。与均匀模型相比,非均匀模型的电阻率分布界面可以清晰地成像和区分,这已通过超声脉冲回波成像得到验证。同样,3-D切片图像证实,即使考虑注入电流,nAEI仍可用于电阻率分布。最后,从电阻率分布引起的超声压力和电流密度升高的角度对实验结果进行了讨论,并分析了原因。实验和仿真结果均证明了nAEI电阻率分布的可行性,并且本文潜在地增强了nAEI在癌症检测中的应用。

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