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3T 场不均匀性校正螺旋快速小角度激发(FLASH)更快的语音动态成像。

Faster dynamic imaging of speech with field inhomogeneity corrected spiral fast low angle shot (FLASH) at 3 T.

机构信息

Bioengineering Department, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA.

出版信息

J Magn Reson Imaging. 2010 Nov;32(5):1228-37. doi: 10.1002/jmri.22369.

Abstract

PURPOSE

To evaluate the impact of magnetic field inhomogeneity correction on achievable imaging speeds for magnetic resonance imaging (MRI) of articulating oropharyngeal structures during speech and to determine if sufficient acquisition speed is available for visualizing speech structures with real-time MRI.

MATERIALS AND METHODS

We designed a spiral fast low angle shot (FLASH) sequence that combines several acquisition techniques with an advanced image reconstruction approach that includes magnetic field inhomogeneity correction. A simulation study was performed to examine the interaction between imaging speed, image quality, number of spiral shots, and field inhomogeneity correction. Six volunteer subjects were scanned to demonstrate adequate visualization of articulating structures during simple speech samples.

RESULTS

The simulation study confirmed that magnetic field inhomogeneity correction improves the available tradeoff between image quality and speed. Our optimized sequence co-acquires magnetic field maps for image correction and achieves a dynamic imaging rate of 21.4 frames per second, significantly faster than previous studies. Improved visualization of anatomical structures, such as the soft palate, was also seen from the field-corrected reconstructions in data acquired on volunteer subjects producing simple speech samples.

CONCLUSION

Adequate temporal resolution of articulating oropharyngeal structures during speech can be obtained by combining outer volume suppression, multishot spiral imaging, and magnetic field corrected image reconstruction. Correcting for the large, dynamic magnetic field variation in the oropharyngeal cavity improves image quality and allows for higher temporal resolution.

摘要

目的

评估磁场不均匀性校正对磁共振成像(MRI)在语音期间对关节口咽结构成像速度的影响,并确定是否有足够的采集速度可用于实时 MRI 可视化语音结构。

材料和方法

我们设计了一种螺旋快速低角度拍摄(FLASH)序列,该序列将几种采集技术与先进的图像重建方法相结合,该方法包括磁场不均匀性校正。进行了一项模拟研究,以检查成像速度、图像质量、螺旋拍摄次数和磁场不均匀性校正之间的相互作用。对六名志愿者进行了扫描,以演示在简单语音样本期间对关节结构的充分可视化。

结果

模拟研究证实,磁场不均匀性校正可改善图像质量和速度之间的可用权衡。我们的优化序列共同采集用于图像校正的磁场图,并实现了 21.4 帧/秒的动态成像率,明显快于先前的研究。从对产生简单语音样本的志愿者进行数据采集的场校正重建中也可以看到解剖结构(如软腭)的可视化得到了改善。

结论

通过结合外部体积抑制、多拍螺旋成像和磁场校正图像重建,可以获得在语音期间关节口咽结构的足够时间分辨率。校正口咽腔中的大动态磁场变化可提高图像质量并允许更高的时间分辨率。

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