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Three-dimensional diffusion weighted imaging of the acute cerebral ischemia rat using 3D MP-RAGE MRI

机译:使用3D MP-RAGE MRI对急性脑缺血大鼠进行三维扩散加权成像

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The purpose of this study was to examine the potential of diffusion-weighted (DW) three-dimensional (3D) MP-RAGE sequence for cerebral ischemia of a rat brain in vivo. The prototype of a DW-3D-MP-RAGE (3D-DWI) sequence was implemented at 2.0T animal experiment MR imager. The advantage of 3D imaging are that you obtain thinner and more slices with better profiles, and better signal-to-noise ratio for an equivalent slice thickness. Since 3D imaging is preferable for obtaining contiguous thin-slice MR images, image data with 3D imaging are expected to volume estimate of imaging area. Three-dimensional calculated absolute apparent diffusion coefficient (ADC) maps were compared with coronal stained (triphenyltetrazolium chloride: TTC) brain sections. From rat experimental results, the region of cerebral ischemia with 3D-DWI and the region of stained brain sections were well in agreement. This technique enables three-dimensional image display of a cerebral ischemia area, and makes it possible to measure the volume of a precise cerebral ischemia area in vivo.
机译:这项研究的目的是检查扩散加权(DW)三维(3D)MP-RAGE序列在体内对大鼠脑缺血的潜力。 DW-3D-MP-RAGE(3D-DWI)序列的原型是在2.0T动物实验MR成像仪上实现的。 3D成像的优势在于,对于相同的切片厚度,您可以获得更薄,更多的切片,并具有更好的轮廓和更好的信噪比。由于3D成像对于获得连续的薄层MR图像是优选的,因此期望具有3D成像的图像数据来估计成像区域。将三维计算的绝对表观扩散系数(ADC)图与冠状染色(三苯四唑氯化物:TTC)脑切片进行了比较。从大鼠实验结果来看,3D-DWI引起的脑缺血区域与脑部染色区域非常吻合。该技术使得能够对脑缺血区域进行三维图像显示,并且使得有可能在体内测量精确的脑缺血区域的体积。

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