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1.5T 场强下清醒兔脑的卡波金氏气激发弥散加权磁共振成像

Dynamic magnetic resonance imaging of carbogen challenge on awake rabbit brain at 1.5T.

机构信息

Department of Biomedical Engineering, I-Shou University, Kaohsiung City, Taiwan, ROC.

Department of Radiology, Jhong Jheng Orthopedic Hospital, Kaohsiung City, Taiwan, ROC.

出版信息

J Xray Sci Technol. 2018;26(6):997-1009. doi: 10.3233/XST-180395.

Abstract

BACKGROUND

Anesthesia may alter the cellular components contributing to the magnetic resonance imaging (MRI) signal intensities. Developing awake animal models to evaluate cerebral function has grown in importance.

OBJECTIVE

To investigate a noninvasive strategy for dynamic MRI (dMRI) of awake rabbits during carbogen challenge.

METHODS

A nonmetallic assistive device with a self-adhering wrap secure procedure was developed for the head fixation of awake rabbits. Multi-shot gradient echo echo-planar imaging sequence was applied for the dMRI on a 1.5 T clinical MRI scanner with a quadrature head coil. The carbogen challenge pattern was applied in a sequence of air - carbogen - air - carbogen - air. Twelve scans were performed for each block of carbogen challenge. T2-weighted fast-spin echo and T1-weighted gradient echo sequences were performed before and after dMRI to evaluate the head position shifts. The whole dMRI scan time was about 30 minutes.

RESULTS

The position shift of 8 rabbits in the x-and y-direction was less than 3%. The average MRI signal intensities (SI) from the 8 rabbits during carbogen challenge was fitted well using exponential growth and decay functions. The average MRI SI increase due to carbogen inhaling was 1.51%.

CONCLUSIONS

The proposed strategy for head dMRI on an awake rabbit during carbogen challenge is feasible.

摘要

背景

麻醉可能会改变对磁共振成像(MRI)信号强度有贡献的细胞成分。开发用于评估大脑功能的清醒动物模型变得越来越重要。

目的

研究一种用于清醒兔在碳氧合挑战期间进行动态 MRI(dMRI)的非侵入性策略。

方法

开发了一种非金属辅助装置,带有自粘包裹固定程序,用于固定清醒兔的头部。在 1.5 T 临床 MRI 扫描仪上使用正交头部线圈应用多 shot 梯度回波回波平面成像序列进行 dMRI。碳氧合挑战模式以空气-碳氧合-空气-碳氧合-空气的顺序进行。每个碳氧合挑战块进行 12 次扫描。在 dMRI 前后进行 T2 加权快速自旋回波和 T1 加权梯度回波序列以评估头部位置变化。整个 dMRI 扫描时间约为 30 分钟。

结果

8 只兔子在 x 和 y 方向上的位置偏移小于 3%。8 只兔子在碳氧合挑战期间的平均 MRI 信号强度(SI)使用指数增长和衰减函数拟合良好。由于吸入碳氧合,MRI SI 平均增加 1.51%。

结论

提出的在碳氧合挑战期间对清醒兔头部进行 dMRI 的策略是可行的。

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