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鉴定单体素 H 磁共振波谱中由于 B 不均匀性引起的伪信号源。

Identifying the source of spurious signals caused by B inhomogeneities in single-voxel H MRS.

机构信息

Center for Image Sciences, University Medical Center Utrecht, Utrecht, The Netherlands.

Danish Research Centre for Magnetic Resonance, Centre for Functional and Diagnostic Imaging and Research, Copenhagen University Hospital Hvidovre, Hvidovre, Denmark.

出版信息

Magn Reson Med. 2022 Jul;88(1):71-82. doi: 10.1002/mrm.29222. Epub 2022 Mar 28.

Abstract

PURPOSE

Single-voxel MRS (SV MRS) requires robust volume localization as well as optimized crusher and phase-cycling schemes to reduce artifacts arising from signal outside the volume of interest. However, due to local magnetic field gradients (B inhomogeneities), signal that was dephased by the crusher gradients during acquisition might rephase, leading to artifacts in the spectrum. Here, we analyzed this mechanism, aiming to identify the source of signals arising from unwanted coherence pathways (spurious signals) in SV MRS from a B map.

METHODS

We investigated all possible coherence pathways associated with imperfect localization in a semi-localized by adiabatic selective refocusing (semi-LASER) sequence for potential rephasing of signals arising from unwanted coherence pathways by a local magnetic field gradient. We searched for locations in the B map where the signal dephasing due to external (crusher) and internal (B ) field gradients canceled out. To confirm the mechanism, SV-MR spectra (TE = 31 ms) and 3D-CSI data with the same volume localization as the SV experiments were acquired from a phantom and 2 healthy volunteers.

RESULTS

Our analysis revealed that potential sources of spurious signals were scattered over multiple locations throughout the brain. This was confirmed by 3D-CSI data. Moreover, we showed that the number of potential locations where spurious signals could originate from monotonically decreases with crusher strength.

CONCLUSION

We proposed a method to identify the source of spurious signals in SV H MRS using a B map. This can facilitate MRS sequence design to be less sensitive to experimental artifacts.

摘要

目的

单体素磁共振波谱(SV MRS)需要稳健的体积定位,以及优化的匀场和相位循环方案,以减少来自感兴趣体积外的信号伪影。然而,由于局部磁场梯度(B 不均匀性),在采集过程中被匀场梯度去相位的信号可能会重新相位,导致谱中的伪影。在这里,我们分析了这种机制,旨在从 B 图中识别 SV MRS 中来自不需要的相干路径(杂散信号)的信号的来源。

方法

我们研究了在半局部化绝热选择性重聚焦(半 LASER)序列中与不完全定位相关的所有可能的相干路径,以寻找由于外部(匀场)和内部(B)磁场梯度导致信号去相位的位置,从而导致来自不需要的相干路径的信号重新相位。为了证实这一机制,我们从一个体模和 2 名健康志愿者中获取了具有与 SV 实验相同体积定位的 SV-MR 谱(TE=31ms)和 3D-CSI 数据。

结果

我们的分析表明,杂散信号的潜在来源分散在大脑的多个位置。这通过 3D-CSI 数据得到了证实。此外,我们还表明,杂散信号可能源自的潜在位置数量随匀场强度单调减少。

结论

我们提出了一种使用 B 图识别 SV H MRS 中杂散信号来源的方法。这可以促进 MRS 序列设计,使其对实验伪影不那么敏感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcf4/9311141/ff87904889c0/MRM-88-71-g001.jpg

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