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基于 B 扫描的磁感应磁共振声成像(MAT-MI)声源远重构。

B-scan based acoustic source reconstruction for magnetoacoustic tomography with magnetic induction (MAT-MI).

机构信息

Department of Biomedical Engineering, University of Minnesota, Minneapolis, MN 55455, USA.

出版信息

IEEE Trans Biomed Eng. 2011 Mar;58(3):713-20. doi: 10.1109/TBME.2010.2094618. Epub 2010 Nov 22.

Abstract

We present in this study, an acoustic source reconstruction method using focused transducer with B-mode imaging for magnetoacoustic tomography with magnetic induction (MAT-MI). MAT-MI is an imaging modality proposed for noninvasive conductivity imaging with high spatial resolution. In MAT-MI, acoustic sources are generated in a conductive object by placing it in a static and a time-varying magnetic field. The acoustic waves from these sources propagate in all directions and are collected with transducers placed around the object. The collected signal is then used to reconstruct the acoustic source distribution and to further estimate the electrical conductivity distribution of the object. A flat piston transducer acting as a point receiver has been used in earlier MAT-MI systems to collect acoustic signals. In this study, we propose to use B-mode scan scheme with a focused transducer that gives a signal gain in its focus region and improves the MAT-MI signal quality. A simulation protocol that can take into account different transducer designs and scan schemes for MAT-MI imaging is developed and used in our evaluation of different MAT-MI system designs. It is shown in our computer simulations that as compared to the earlier approach, the MAT-MI system using B-scan with a focused transducer allows MAT-MI imaging at a closer distance and has improved system sensitivity. In addition, the B-scan imaging technique allows reconstruction of the MAT-MI acoustic sources with a discrete number of scanning locations, which greatly increases the applicability of the MAT-MI approach, especially when a continuous acoustic window is not available in real clinical applications. We have also conducted phantom experiments to evaluate the proposed method, and the reconstructed image shows a good agreement with the target phantom.

摘要

我们在这项研究中提出了一种使用聚焦换能器进行磁声断层成像(MAT-MI)的声源重建方法,该方法结合了 B 模式成像。MAT-MI 是一种提出用于非侵入式电导率成像的成像方式,具有较高的空间分辨率。在 MAT-MI 中,通过将导电物体置于静态和时变磁场中,在导电物体中产生声源。这些声源产生的声波向各个方向传播,并通过放置在物体周围的换能器进行收集。然后,使用收集到的信号来重建声源分布,并进一步估计物体的电导率分布。早期的 MAT-MI 系统使用平面活塞换能器作为点接收器来收集声信号。在这项研究中,我们提出使用 B 模式扫描方案和聚焦换能器,该换能器在其焦点区域提供信号增益,并提高 MAT-MI 信号质量。开发了一种可以考虑不同换能器设计和扫描方案的仿真协议,并将其用于评估不同的 MAT-MI 系统设计。计算机模拟结果表明,与早期方法相比,使用 B 扫描和聚焦换能器的 MAT-MI 系统允许在更近的距离进行 MAT-MI 成像,并且具有更高的系统灵敏度。此外,B 扫描成像技术允许使用离散数量的扫描位置重建 MAT-MI 声源,这极大地增加了 MAT-MI 方法的适用性,特别是在实际临床应用中没有连续声窗的情况下。我们还进行了体模实验来评估所提出的方法,重建图像与目标体模吻合良好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d79/3044776/1f422083354d/nihms266505f1.jpg

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