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基于概率密度函数的通道组合布洛赫-西格特方法实现了3T下的介电常数成像。

Using the Probability Density Function-Based Channel-Combination Bloch-Siegert Method Realizes Permittivity Imaging at 3T.

作者信息

Wang Jiajia, Gao Yunyu, Xin Sherman Xuegang

机构信息

School of Biomedical Engineering, Southern Medical University, Guangzhou 510515, China.

出版信息

Bioengineering (Basel). 2024 Jul 10;11(7):699. doi: 10.3390/bioengineering11070699.

Abstract

Magnetic resonance electrical properties tomography (MR EPT) can retrieve permittivity from the B1+ magnitude. However, the accuracy of the permittivity measurement using MR EPT is still not ideal due to the low signal-to-noise ratio (SNR) of B1+ magnitude. In this study, the probability density function (PDF)-based channel-combination Bloch-Siegert (BSS) method was firstly introduced to MR EPT for improving the accuracy of the permittivity measurement. MRI experiments were performed using a 3T scanner with an eight-channel receiver coil. The homogeneous water phantom was scanned for assessing the spatial distribution of B1+ magnitude obtained from the PDF-based channel-combination BSS method. Gadolinium (Gd) phantom and rats were scanned for assessing the feasibility of the PDF-based channel-combination BSS method in MR EPT. The Helmholtz-based EPT reconstruction algorithm was selected. For quantitative comparison, the permittivity measured by the open-ended coaxial probe method was considered as the ground-truth value. The accuracy of the permittivity measurement was estimated by the relative error between the reconstructed value and the ground-truth value. The reconstructed relative permittivity of Gd phantom was 52.413, while that of rat leg muscle was 54.053. The ground-truth values of relative permittivity of Gd phantom and rat leg muscle were 78.86 and 49.04, respectively. The relative error of average permittivity was 33.53% for Gd and 10.22% for rat leg muscle. The results indicated the high accuracy of the permittivity measurement using the PDF-based channel-combination BSS method in MR EPT. This improvement may promote the clinical application of MR EPT technology, such as in the early diagnosis of cancers.

摘要

磁共振电特性断层成像(MR EPT)可从B1 + 幅度中获取介电常数。然而,由于B1 + 幅度的信噪比(SNR)较低,使用MR EPT进行介电常数测量的准确性仍不理想。在本研究中,基于概率密度函数(PDF)的通道组合布洛赫 - 西格特(BSS)方法首次被引入到MR EPT中,以提高介电常数测量的准确性。使用配备八通道接收线圈的3T扫描仪进行MRI实验。对均匀水模进行扫描,以评估从基于PDF的通道组合BSS方法获得的B1 + 幅度的空间分布。对钆(Gd)模体和大鼠进行扫描,以评估基于PDF的通道组合BSS方法在MR EPT中的可行性。选择基于亥姆霍兹的EPT重建算法。为了进行定量比较,将通过开口同轴探头法测量的介电常数视为真实值。通过重建值与真实值之间的相对误差来估计介电常数测量的准确性。Gd模体的重建相对介电常数为52.413,而大鼠腿部肌肉的重建相对介电常数为54.053。Gd模体和大鼠腿部肌肉的相对介电常数的真实值分别为78.86和49.04。Gd的平均介电常数相对误差为33.53%,大鼠腿部肌肉为10.22%。结果表明,基于PDF的通道组合BSS方法在MR EPT中进行介电常数测量具有很高的准确性。这一改进可能会促进MR EPT技术的临床应用,例如在癌症的早期诊断中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4990/11274052/eb6bfb0a3ee1/bioengineering-11-00699-g001.jpg

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