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使用高极化天然丰度氙气和优化的三维稳态自由进动进行人体肺通气成像的可行性。

Feasibility of human lung ventilation imaging using highly polarized naturally abundant xenon and optimized three-dimensional steady-state free precession.

作者信息

Stewart Neil J, Norquay Graham, Griffiths Paul D, Wild Jim M

机构信息

Academic Unit of Radiology, University of Sheffield, Royal Hallamshire Hospital, Sheffield, United Kingdom.

出版信息

Magn Reson Med. 2015 Aug;74(2):346-52. doi: 10.1002/mrm.25732. Epub 2015 Apr 27.

Abstract

PURPOSE

To demonstrate the potential for high quality MRI of pulmonary ventilation using naturally abundant xenon (NAXe) gas.

METHODS

MRI was performed at 1.5 Tesla (T) and 3 T on one healthy smoker and two healthy never-smokers. 129Xe gas was polarized to ∼25% using an in-house spin-exchange optical pumping polarizer fitted with a laser diode array with integrated volume holographic grating and optical train system. Volunteers inhaled 1 L of NAXe for an 8 to 15 s breathhold while MR images were acquired with full-lung coverage using a three-dimensional steady-state free precession sequence, optimized for maximum signal-to-noise ratio (SNR) at a given spatial resolution. For the purpose of image quality comparison, the MR acquisition was repeated at 1.5 T with 400 mL enriched xenon and 200 mL 3He.

RESULTS

All NAXe lung images were of high quality, with mean SNRs of 25-40 (voxel 4.2 × 4.2 × 8/10 mm3) and ∼30% improvement at 3 T versus 1.5 T. The high SNR permitted identification of minor ventilation defects in the healthy smoker's lungs. NAXe images were of comparable SNR to those obtained with enriched xenon and 3He.

CONCLUSION

Optimization of MR pulse sequences and advances in polarization technology have facilitated high quality pulmonary ventilation imaging with inexpensive NAXe gas.

摘要

目的

证明使用天然丰度氙气(NAXe)进行肺部通气高质量磁共振成像(MRI)的潜力。

方法

对一名健康吸烟者和两名健康非吸烟者在1.5特斯拉(T)和3T场强下进行MRI检查。使用配备有激光二极管阵列、集成体全息光栅和光学系统的自制自旋交换光泵极化器,将129Xe气体极化至约25%。志愿者吸入1L NAXe并屏气8至15秒,同时使用三维稳态自由进动序列采集全肺覆盖的MR图像,该序列在给定空间分辨率下针对最大信噪比(SNR)进行了优化。为了比较图像质量,在1.5T场强下使用400mL富集氙气和200mL 3He重复进行MR采集。

结果

所有NAXe肺部图像质量均很高,平均SNR为25 - 40(体素4.2×4.2×8/10mm3),与1.5T相比,3T时SNR提高约30%。高SNR使得能够识别健康吸烟者肺部的轻微通气缺陷。NAXe图像的SNR与富集氙气和3He获得的图像相当。

结论

MR脉冲序列的优化和极化技术的进步有助于使用廉价的NAXe气体进行高质量的肺部通气成像。

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