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使用不同翻转角演变的三维采样完美与应用优化对比度的T2图像对比度评估(3D-SPACE)

[T2 image contrast evaluation using three dimension sampling perfection with application optimized contrasts using different flip angle evolution (3D-SPACE)].

作者信息

Yamazaki Ryo, Uchikoshi Masato, Hiura Yukikazu, Tsuji Akio, Nishiki Shigeo

机构信息

Department of Radiology, Tenri Yorozu Soudansho Hospital.

出版信息

Nihon Hoshasen Gijutsu Gakkai Zasshi. 2011;67(12):1515-22. doi: 10.6009/jjrt.67.1515.

Abstract

PURPOSE

Sampling perfection with application optimized contrasts using different flip angle evolution (3D-SPACE) sequence enables one to decrease specific absorption rate (SAR) by using variable flip angle refocusing pulse. Therefore, it is expected that the contrast obtained with 3D-SPACE sequences is different from that of spin echo (SE) images and turbo spin echo (TSE) images. The purpose of this study was to evaluate the characteristics of the signal intensity and central nervous system (CNS) image contrast in T(2) weighted 3D-SPACE.

METHOD

Using 3 different sequences (SE, 3D-TSE and 3D-SPACE) with TR/TE=3500/70, 90 and 115 ms, we obtained T(2) weighted magnetic resonance (MR) images of inhouse phantom and five healthy volunteers' brain. Signal intensity of the phantom which contains various T(1) and T(2) value was evaluated. Tissue contrasts of white/gray matter, cerebrospinal fluid (CSF)/subcutaneous fat and gray matter/subcutaneous fat were evaluated for a clinical image study.

RESULTS

The phantom study showed that signal intensity in 3D-SPACE significantly decreased under a T(1) value of 250 ms. It was markedly decreased in comparison to other sequences, as effective echo time (TE) was extended. White/gray matter contrast of 3D-SPACE was the highest in all sequences. On the other hand, CSF/fat and gray matter/fat contrast of 3D-SPACE was higher than TSE but lower than SE.

CONCLUSION

CNS image contrasts of 3D-SPACE were comparable to that of SE. Signal intensity had decreased in the range where T(1) and T(2) values were extremely short.

摘要

目的

通过使用不同翻转角演变(3D-SPACE)序列并应用优化的对比度进行采样优化,能够利用可变翻转角重聚焦脉冲降低比吸收率(SAR)。因此,预计3D-SPACE序列获得的对比度与自旋回波(SE)图像和快速自旋回波(TSE)图像不同。本研究的目的是评估T(2)加权3D-SPACE中信号强度和中枢神经系统(CNS)图像对比度的特征。

方法

使用TR/TE = 3500/70、90和115 ms的3种不同序列(SE、3D-TSE和3D-SPACE),我们获得了内部体模和5名健康志愿者大脑的T(2)加权磁共振(MR)图像。评估了包含各种T(1)和T(2)值的体模的信号强度。为进行临床图像研究,评估了白质/灰质、脑脊液(CSF)/皮下脂肪和灰质/皮下脂肪的组织对比度。

结果

体模研究表明,在T(1)值为250 ms时,3D-SPACE中的信号强度显著降低。与其他序列相比,随着有效回波时间(TE)延长,信号强度明显降低。3D-SPACE的白质/灰质对比度在所有序列中最高。另一方面,3D-SPACE的CSF/脂肪和灰质/脂肪对比度高于TSE,但低于SE。

结论

3D-SPACE的CNS图像对比度与SE相当。在T(1)和T(2)值极短的范围内,信号强度有所降低。

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