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7T 的 PMRSI 能够实现人体小腿肌肉细胞内镁离子含量的高分辨率容积成像。

P MRSI at 7 T enables high-resolution volumetric mapping of the intracellular magnesium ion content in human lower leg muscles.

机构信息

Division of Medical Physics in Radiology, German Cancer Research Center (DKFZ), Heidelberg, Germany.

Faculty of Physics and Astronomy, University of Heidelberg, Heidelberg, Germany.

出版信息

Magn Reson Med. 2022 Aug;88(2):511-523. doi: 10.1002/mrm.29231. Epub 2022 Apr 5.

DOI:10.1002/mrm.29231
PMID:35381111
Abstract

PURPOSE

The non-invasive determination of the free magnesium ion concentration ([Mg ]) using P MRSI in vivo is of interest in research on various pathologies, e.g. diabetes. The purpose of this study was to demonstrate the potential of P MRSI at 7 T to enable volumetric, high-resolution mapping of [Mg ].

METHODS

3D P MRSI datasets from the lower leg of three healthy volunteers were acquired at B  = 7 T with a nominal spatial resolution of (8 × 8 × 16) mm in 56 min. Volumetric [Mg ] maps were calculated based on the quantified local chemical shift difference between the α- and β-resonance of adenosine triphosphate (ATP) considering also local pH values. Mean [Mg ] values from three different muscle groups were compared. To demonstrate the potential of reducing the measurement time, the analysis was repeated on the acquired MRSI data retrospectively reconstructed with fewer averages.

RESULTS

The generated [Mg ] maps revealed local differences, and mean [Mg ] values of (1.08 ± 0.03) mM were found in the tibialis anterior, (0.91 ± 0.04) mM in the soleus and (0.98 ± 0.03) mM in the gastrocnemius medialis. The time-reduced 28-min scan resulted in comparable [Mg ] maps, and mean values being in agreement with the values from the 56-min scan.

CONCLUSION

P MRSI at 7 T enables volumetric, high-resolution mapping of free magnesium ion content in human lower leg muscles. The measurement time of the P MRSI acquisition can be reduced to 28 min, opening the potential to apply volumetric [Mg ] mapping for the investigation of pathologies with altered magnesium homeostasis.

摘要

目的

利用 P MRSI 在体无创测定游离镁离子浓度([Mg2+])在各种病理学研究中具有重要意义,例如糖尿病。本研究旨在证明 7 T 下的 31P MRSI 具有潜在能力,实现[Mg2+]的容积、高分辨率映射。

方法

在 B = 7 T 下,对 3 名健康志愿者的小腿采集 3D 31P MRSI 数据集,空间分辨率为(8×8×16)mm,总采集时间为 56 分钟。基于腺苷三磷酸(ATP)的α-和β-共振之间量化的局部化学位移差,并考虑局部 pH 值,计算容积[Mg2+]图。比较了来自三个不同肌肉群的平均[Mg2+]值。为了证明缩短测量时间的潜力,回顾性地用更少的平均次数重建采集的 MRSI 数据,并对其进行分析。

结果

生成的[Mg2+]图显示了局部差异,在前胫骨(1.08±0.03)mM、比目鱼肌(0.91±0.04)mM 和腓肠肌内侧(0.98±0.03)mM 处发现了平均[Mg2+]值。减少测量时间的 28 分钟扫描产生了类似的[Mg2+]图,平均值与 56 分钟扫描的结果一致。

结论

7 T 下的 31P MRSI 能够实现人体小腿肌肉中游离镁离子含量的容积、高分辨率映射。31P MRSI 采集的测量时间可以缩短至 28 分钟,为应用容积[Mg2+]映射研究镁稳态改变的病理学打开了潜在的可能性。

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