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17.6T下大鼠脊髓的体内分子间零量子相干磁共振波谱:一项可行性研究。

In vivo intermolecular zero-quantum coherence MR spectroscopy in the rat spinal cord at 17.6 T: a feasibility study.

作者信息

Balla David Z, Faber Cornelius

机构信息

Department of Experimental Physics 5, University of Würzburg, Am Hubland, 97074, Würzburg, Germany.

出版信息

MAGMA. 2007 Oct;20(4):183-91. doi: 10.1007/s10334-007-0081-3. Epub 2007 Sep 18.

Abstract

OBJECTIVE

The feasibility of in vivo magnetic resonance spectroscopy of the healthy rat spinal cord at 17.6 T using conventional methods and intermolecular zero-quantum coherence (iZQC) spectroscopy is explored and the performance of both approaches is compared.

METHODS

Localised spectra were acquired at 17.6 T from three healthy Fisher rats and phantoms with injected iron-oxide particles using the PRESS and a modified HOMOGENIZED sequence.

RESULTS

Well-resolved in vivo spectra showing the four singlet resonances of creatine, choline, and N-acetyl aspartate were obtained with both approaches. iZQC spectra were acquired from larger voxels, but did not provide higher sensitivity or resolution in the healthy spinal cord. In the presence of paramagnetic iron-oxide particles, the quality of in vitro spectra acquired with PRESS declined and was strongly dependent on the quality of the local shim. iZQC spectra were not affected by the presence of iron-oxide particles and provided narrow lines (9 Hz) independent of the shim.

CONCLUSION

In vivo iZQC spectroscopy of the rat spinal cord is possible. The robustness in presence of local field distortions makes iZQC methods a promising alternative for the investigation of tissue containing labelled cells, implants, or clotted blood. New application of MRS to tissue inaccessible using conventional methods may thus become possible.

摘要

目的

探索使用传统方法和分子间零量子相干(iZQC)光谱在17.6 T下对健康大鼠脊髓进行体内磁共振波谱分析的可行性,并比较两种方法的性能。

方法

使用PRESS序列和改良的HOMOGENIZED序列,在17.6 T下从三只健康的Fisher大鼠以及注射了氧化铁颗粒的体模中采集局部光谱。

结果

两种方法均获得了分辨良好的体内光谱,显示出肌酸、胆碱和N-乙酰天门冬氨酸的四个单重峰共振。iZQC光谱是从更大的体素中采集的,但在健康脊髓中并未提供更高的灵敏度或分辨率。在存在顺磁性氧化铁颗粒的情况下,用PRESS采集的体外光谱质量下降,并且强烈依赖于局部匀场的质量。iZQC光谱不受氧化铁颗粒存在的影响,并提供与匀场无关的窄线宽(9 Hz)。

结论

大鼠脊髓的体内iZQC光谱分析是可行的。在存在局部场畸变的情况下具有稳健性,使得iZQC方法成为研究含有标记细胞、植入物或凝血的组织的一种有前景的替代方法。因此,磁共振波谱在传统方法无法检测的组织中的新应用可能成为现实。

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