Hayman L A, Taber K H, Ford J J, Saleem A, Gurgun M, Mohamed S, Bryan R N
AJNR Am J Neuroradiol. 1989 Nov-Dec;10(6):1155-8.
Phantoms were constructed that contained red blood cell (RBC)-free clots in varying stages of clot retraction. MR images of these samples were compared with those of retracted whole venous blood clots and a fresh rat brain standard. Images were obtained at 0.3 T, 0.5 T, 1.0 T, 1.5 T, and 2.4 T with T1-, spin-density- and T2-weighted spin-echo pulse sequences. The presence or absence of venous blood cells in the clot caused only minor differences in T2- and spin-density-weighted images of the clots at or below 1.5 T. On T2-weighted scans, the retraction of the RBC-free clot resulted in a progressive decrease in signal intensity at 2.4 T. Fully retracted RBC-free clots were markedly hypointense relative to serum and ranged from slightly hyperintense to isointense with brain and venous clots at 0.5-1.5 T. There were no striking concomitant signal intensity changes on the spin-density- or T1-weighted scans, which could have caused the changes seen on the T2-weighted images of the clots. Our results indicate that the physical basis of these MR effects in the RBC-free clots is the concentration of plasma protein. The combined concentration of plasma protein and the tightly packed RBC proteins in the venous clots causes the strikingly similar MR appearance of venous and RBC-free clots on clinical images. These results do not demonstrate the presence of the previously postulated selective T2 relaxation of intracellular paramagnetic deoxyhemoglobin in these in vitro venous clots.
构建了含有处于不同凝块收缩阶段的无红细胞(RBC)凝块的模型。将这些样本的磁共振(MR)图像与收缩后的全静脉血凝块和新鲜大鼠脑标准物的图像进行比较。使用T1加权、自旋密度加权和T2加权自旋回波脉冲序列在0.3T、0.5T、1.0T、1.5T和2.4T下获取图像。凝块中是否存在静脉血细胞在1.5T及以下的凝块T2加权和自旋密度加权图像中仅引起微小差异。在T2加权扫描中,无红细胞凝块的收缩在2.4T时导致信号强度逐渐降低。完全收缩的无红细胞凝块相对于血清明显呈低信号,在0.5 - 1.5T时与脑和静脉凝块相比从略高信号到等信号不等。在自旋密度加权或T1加权扫描中没有明显的伴随信号强度变化,而这些变化可能导致凝块T2加权图像中出现的变化。我们的结果表明,这些无红细胞凝块中MR效应的物理基础是血浆蛋白的浓度。静脉凝块中血浆蛋白和紧密堆积的红细胞蛋白的联合浓度导致静脉凝块和无红细胞凝块在临床图像上具有惊人相似的MR表现。这些结果并未证明在这些体外静脉凝块中存在先前假设的细胞内顺磁性脱氧血红蛋白的选择性T2弛豫。