首页> 外文期刊>Neuroradiology >Transparent color-coded three-dimensional diffusion-weighted magnetic resonance imaging for the numerical analysis of reversible and irreversible hyperacute ischemic stroke--case report.
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Transparent color-coded three-dimensional diffusion-weighted magnetic resonance imaging for the numerical analysis of reversible and irreversible hyperacute ischemic stroke--case report.

机译:透明色码三维扩散加权磁共振成像,用于可逆和不可逆超急性缺血性卒中的数值分析-病例报告。

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摘要

Although diffusion-weighted (DW) magnetic resonance (MR) imaging can detect hyperacute ischemic parenchyma with high sensitivity, the ability of DW images to reveal subtle change in abnormal diffusion may be limited by the conventional visual evaluation. To overcome the limitation, we have developed a method of transparent color-coded three-dimensional (3D) DW MR imaging for the computer-aided numerical analysis of hyperacute ischemic stroke. The 3D images were reconstructed from volume data of source DW images by using a parallel volume-rendering algorithm with transluminal imaging technique. By selecting a threshold range from a signal intensity opacity chart of volume-rendering data set, several high signal intensity areas were depicted and assigned to different colors, transparently through contours of the brain. This imaging was applied in a case of a recanalized middle cerebral artery (M2) occlusion with partially reversible ischemic parenchyma accompanied by partial recovery from ischemic neurological deficit. Complex and dynamic change in hyperacute ischemic parenchyma, with regression of subtle high signal intensity areas and progression of ischemic parenchyma, was depicted three-dimensionally. Transparent color-coded 3D DW MR imaging may provide computer-aided numerical analysis of hyperacute ischemic stroke appearing as a high signal intensity area on the source DW images.
机译:尽管扩散加权(DW)磁共振(MR)成像可以高灵敏度检测超急性缺血性实质,但常规的视觉评估可能会限制DW图像揭示异常扩散的细微变化的能力。为了克服这一局限性,我们开发了一种透明的彩色编码三维(3D)DW MR成像方法,用于计算机辅助的超急性缺血性卒中的数值分析。通过使用具有腔内成像技术的并行体绘制算法,从源DW图像的体数据重建3D图像。通过从体绘制数据集的信号强度不透明度图表中选择一个阈值范围,可以绘制多个高信号强度区域,并通过大脑轮廓将其分配给不同的颜色。此影像学适用于脑小动脉再通(M2)闭塞,局部可逆性缺血性实质伴有缺血性神经功能缺损部分恢复的情况。三维地描绘了超急性缺血性实质的复杂而动态的变化,包括微弱的高信号强度区域的退化和缺血性实质的进展。透明的彩色编码3D DW MR成像可以提供计算机辅助的超急性缺血性卒中的数值分析,这些缺血性卒中在源DW图像上显示为高信号强度区域。

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