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前列腺癌的磁共振成像(MRI)与磁共振波谱(MRS)联合检查:通过磁化率匹配提高波谱质量

Combined MRI and MRS in prostate cancer: improvement of spectral quality by susceptibility matching.

作者信息

Scheidler J, Vogel M, Gross P, Heuck A

机构信息

Radiologie, Radiologisches Zentrum München-Pasing.

出版信息

Rofo. 2009 Jun;181(6):531-5. doi: 10.1055/s-0028-1109182. Epub 2009 Apr 7.

Abstract

PURPOSE

Local magnetic field inhomogeneity caused by susceptibility artifacts due to air in the endorectal coil substantially degrades the quality of 3D MR spectroscopic imaging (3D-MRSI). Perflubron (PFB) has magnetic susceptibility similar to that of human tissue. We prospectively assessed the effect of susceptibility matching using PFB on in vivo prostate (1)H-3D-MRSI.

MATERIALS AND METHODS

Ninety-one consecutive patients referred for 3D-MRSI were examined using air and PFB as the filling agent for endorectal coils at 1.5T with an identically placed PRESS box and sat bands. Solely auto-shim without additional manual shimming was used. The full width at half maximum (FWHM) of the water peak was statistically compared with a paired t-test. The spectral quality was visually evaluated for the definition of metabolite peaks and for the citrate peak split (duplet). The MR image quality was rated on a five-point scale.

RESULTS

FWHM was significantly less (p < 0.001) using PFB (mean 9.0 +/- 3.3, range 3 - 20) than air (mean 14.9 +/- 4.2, range 6 - 26) in 85/91 patients (93%). The spectral quality markedly improved using PFB and frequently the duplet of the citrate peak was able to be identified. Image quality ratings were similar (mean rating PFB 4.2, air 4.3 points). Omitting manual shimming led to a time savings of 4 min. per study.

CONCLUSION

3D-MRSI using PFB for susceptibility matching benefits from significantly better local field homogeneity, thus providing improved spectra quality. Combined with a substantial time savings in data acquisition, this may increase the clinical utilization of 3D-MRSI in patients with prostate cancer.

摘要

目的

直肠内线圈中的空气导致的磁化率伪影所引起的局部磁场不均匀性会显著降低三维磁共振波谱成像(3D-MRSI)的质量。全氟溴烷(PFB)的磁化率与人体组织相似。我们前瞻性地评估了使用PFB进行磁化率匹配对体内前列腺氢质子三维磁共振波谱成像(1H-3D-MRSI)的影响。

材料与方法

连续91例接受3D-MRSI检查的患者,在1.5T磁场下,使用空气和PFB作为直肠内线圈的填充剂,同时使用位置相同的点分辨表面线圈(PRESS)序列和饱和带。仅使用自动匀场,不进行额外的手动匀场。采用配对t检验对水峰的半高宽(FWHM)进行统计学比较。通过观察代谢物峰的清晰度和柠檬酸峰分裂(双峰)情况对波谱质量进行视觉评估。磁共振图像质量采用五分制评分。

结果

85/91例患者(93%)使用PFB时的FWHM(平均9.0±3.3,范围3 - 20)显著小于使用空气时(平均14.9±4.2,范围6 - 26)(p < 0.001)。使用PFB时波谱质量明显改善,柠檬酸峰的双峰常能被识别。图像质量评分相似(PFB平均评分为4.2分,空气平均评分为4.3分)。省略手动匀场可使每次检查节省4分钟时间。

结论

使用PFB进行磁化率匹配的3D-MRSI受益于显著更好的局部磁场均匀性,从而提供了更高质量的波谱。再加上数据采集中大量节省时间,这可能会增加3D-MRSI在前列腺癌患者中的临床应用。

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