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使用合成磁共振成像对用于脑区尸检成像的液体衰减反转恢复(FLAIR)成像进行优化。

Optimization of the fluid-attenuated inversion recovery (FLAIR) imaging for use in autopsy imaging of the brain region using synthetic MRI.

作者信息

Okawa Ryuya, Yasui Go, Mihara Ban, Hayashi Norio

机构信息

Department of Diagnostic Imaging, Institute of Brain and Blood Vessels, Mihara Memorial Hospital, Isesaki, Japan.

Graduate School of Radiological Technology, Gunma Prefectural College of Health Sciences, Maebashi, Japan.

出版信息

Technol Health Care. 2023;31(2):661-674. doi: 10.3233/THC-220230.

Abstract

BACKGROUND

The failure of cerebrospinal fluid (CSF) signal suppression in postmortem fluid-attenuated inversion recovery (FLAIR) of the brain is a problem.

OBJECTIVE

The present study was to clarify the relationship between the temperature of deceased persons and CSF T1, and to optimize the postmortem brain FLAIR imaging method using synthetic MRI.

METHODS

Forehead temperature was measured in 15 deceased persons. Next, synthetic MRI of the brain was performed, the CSF T1 was measured, and the optimal TI was calculated. Two types of FLAIR images were obtained with the clinical and optimal TI. The relationship between forehead temperature and the CSF T1 and optimal TI was evaluated. The optimized FLAIR images were physically and visually evaluated.

RESULTS

The CSF T1 and optimal TI were strongly correlated with forehead temperature. Comparing the average SNR and CNR ratios and visual evaluation scores of the two FLAIR images, those captured with the optimal TI showed statistically lower SNR, higher CNR, and higher visual evaluation scores (p< 0.01).

CONCLUSIONS

Synthetic MRI enables the quantification of the CSF T1 resulting from postmortem temperature decreases and calculation of the optimal TI, which could aid in improving the failure of CSF signal suppression and in optimizing postmortem brain FLAIR imaging.

摘要

背景

在死后大脑液体衰减反转恢复(FLAIR)序列中脑脊液(CSF)信号抑制失败是一个问题。

目的

本研究旨在阐明死者体温与脑脊液T1之间的关系,并使用合成磁共振成像(MRI)优化死后大脑FLAIR成像方法。

方法

测量15名死者的前额温度。接下来,对大脑进行合成MRI检查,测量脑脊液T1,并计算最佳反转时间(TI)。使用临床TI和最佳TI获得两种类型的FLAIR图像。评估前额温度与脑脊液T1及最佳TI之间的关系。对优化后的FLAIR图像进行物理和视觉评估。

结果

脑脊液T1和最佳TI与前额温度密切相关。比较两种FLAIR图像的平均信噪比(SNR)和对比噪声比(CNR)以及视觉评估分数,使用最佳TI采集的图像在统计学上显示出较低的SNR、较高的CNR和较高的视觉评估分数(p<0.01)。

结论

合成MRI能够量化死后体温下降导致的脑脊液T1,并计算最佳TI,这有助于改善脑脊液信号抑制失败的情况,并优化死后大脑FLAIR成像。

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