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使用增强梯度系统进行扩散磁共振成像并减少运动伪影。

Use of an enhanced gradient system for diffusion MR imaging with motion-artifact reduction.

作者信息

Brockstedt S, Thomsen C, Wirestam R, De Poorter J, De Wagter C, Salford L G, Holtås S, Ståhlberg F

机构信息

Department of Radiation Physics, University Hospital, Lund, Sweden.

出版信息

Acta Radiol. 1995 Nov;36(6):662-70.

PMID:8519581
Abstract

PURPOSE

A spin-echo diffusion-sensitized pulse sequence using high gradients (23 mT/m) is introduced.

MATERIAL AND METHODS

In order to minimize motion artefacts, velocity-compensating gradients, ECG-triggering and post-processing with phase correction and raw data averaging using navigator echoes was performed. The in vitro ratio of diffusion coefficients for water and acetone was determined and the water self-diffusion coefficient at different temperatures was evaluated. The pulse sequence was tested in 7 healthy volunteers and in 2 tumour patients with astrocytomas of grades I-II and III-IV. Both single-slice and multi-slice techniques were used.

RESULTS

The incorporation of phase correction clearly improved the quality of both diffusion-encoded images and the calculated diffusion maps. Mean values of the diffusion coefficients in vivo were for CSF 2.66 x 10(-9) m2/s and for white and grey matter 0.69 x 10(-9) m2/s and 0.87 x 10(-9) m2/s, respectively.

CONCLUSION

Velocity-compensating gradients in combination with a high gradient strength were shown to be useful for in vivo diffusion MR imaging.

摘要

目的

介绍一种使用高梯度(23 mT/m)的自旋回波扩散敏感脉冲序列。

材料与方法

为了将运动伪影降至最低,采用了速度补偿梯度、心电图触发以及使用导航回波进行相位校正和原始数据平均的后处理。测定了水和丙酮扩散系数的体外比率,并评估了不同温度下水的自扩散系数。该脉冲序列在7名健康志愿者以及2例患有I-II级和III-IV级星形细胞瘤的肿瘤患者中进行了测试。同时使用了单层和多层技术。

结果

相位校正的加入明显提高了扩散编码图像和计算出的扩散图的质量。体内扩散系数的平均值,脑脊液为2.66×10⁻⁹ m²/s,白质和灰质分别为0.69×10⁻⁹ m²/s和0.87×10⁻⁹ m²/s。

结论

速度补偿梯度与高梯度强度相结合被证明对体内扩散磁共振成像有用。

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