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新鲜及固定猫脊髓的高分辨率扩散加权磁共振成像:扩散系数及各向异性的评估

High-resolution diffusion-weighted MR of fresh and fixed cat spinal cords: evaluation of diffusion coefficients and anisotropy.

作者信息

Pattany P M, Puckett W R, Klose K J, Quencer R M, Bunge R P, Kasuboski L, Weaver R G

机构信息

Department of Radiology, University of Miami School of Medicine, FL 33136, USA.

出版信息

AJNR Am J Neuroradiol. 1997 Jun-Jul;18(6):1049-56.

PMID:9194432
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8337317/
Abstract

PURPOSE

To use high-resolution diffusion-weighted and calculated apparent diffusion coefficient (ADC) MR imaging to determine whether fixation and storage influence diffusion anisotropy in white matter tracts of cat spinal cord specimens.

METHODS

Four cat cord specimens were imaged using a diffusion-weighted spin-echo sequence. Diffusion encoding was applied in the section-select axis (parallel to white matter tracts) and in the read axis (perpendicular to white matter tracts). Five sets of axial diffusion-weighted images were acquired with b values ranging from 0 to 800 s/mm2 and used to obtain calculated ADC images and to determine diffusion coefficients in different regions of the white matter tracts.

RESULTS

After cord fixation, a decrease in T2 relaxation and spin density in the white matter caused the signal intensity to appear similar on diffusion-weighted images when the diffusion-probing gradient was applied along both the section-select and read axes. On the calculated ADC images, however, distinct differences in signal intensities were seen in the section-select and read axes.

CONCLUSION

Although there is little difference in signal intensity in the white matter tracts on diffusion-weighted images when diffusion encoding is applied in the section-select or read axis in the fixed specimens, calculated ADC images confirm that diffusion anisotropy is maintained. Therefore, calculated ADC images may be helpful in the evaluation of fixed spinal cord specimens.

摘要

目的

使用高分辨率扩散加权成像和计算表观扩散系数(ADC)的磁共振成像,以确定固定和储存是否会影响猫脊髓标本白质束中的扩散各向异性。

方法

使用扩散加权自旋回波序列对四个猫脊髓标本进行成像。在层面选择轴(平行于白质束)和读出轴(垂直于白质束)上施加扩散编码。采集五组轴向扩散加权图像,b值范围为0至800 s/mm²,并用于获取计算出的ADC图像,以及确定白质束不同区域的扩散系数。

结果

脊髓固定后,白质中T2弛豫和自旋密度降低,当在层面选择轴和读出轴上均施加扩散探测梯度时,扩散加权图像上的信号强度看起来相似。然而,在计算出的ADC图像上,层面选择轴和读出轴上的信号强度存在明显差异。

结论

虽然在固定标本的层面选择轴或读出轴上施加扩散编码时,白质束在扩散加权图像上的信号强度差异不大,但计算出的ADC图像证实扩散各向异性得以保留。因此,计算出的ADC图像可能有助于评估固定的脊髓标本。