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减压后脑肿大早期弥散加权和T_2加权MRI的实验研究 被引量:2

Experimental study of diffussion weighted and T_2-weighted MRI in the early stage of postdecompressive brain bulk enlargement
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摘要 目的 :观察减压后脑肿大早期弥散加权和T2 加权MRI的变化过程 ,探讨减压后脑肿大早期是否发生脑水肿。方法 :应用弥散加权和T2 加权MRI对 6只猫作实验前和减压后 2h、4h、6h动态观察。结果 :MRI均显示减压后肿大的脑组织明显向对侧移位 ,且随时间推移 ,移位程度加重 ;减压后 2h ,肿大的脑组织在弥散加权MRI上就呈现为低强度信号区 ;减压后 4h ,肿大的脑组织在T2 加权MRI上才呈现为高信号区。结论 :减压后脑肿大早期 (<2h) Objective:With observation about the change process of DWI and T 2 WI in the early stage of postdecompressive brain bulk enlargement, it is proved whether brain edema occurs Methods:DWI and T 2 WI were performed in 6 cats at four time points (before compression and 2?4?6 hours after decompression) to examine the postdecompressive brain bulk enlargement Results:DWI and T 2 WIshowed that the postdecompressive swollen cerebral tissue shifted increasingly to the contralateral side Within 2 hours after decompression, the hypointensity signal of DWI was observed in the swollen hemisphere Within 4 hours after decompression, the high signal of T 2 WI was observed in the swollen hemisphere Conclusions:The vasogenic edema occured in the early stage (<2 h) of the postdecompressive brain bulk enlargement
出处 《军医进修学院学报》 CAS 2001年第4期284-286,共3页 Academic Journal of Pla Postgraduate Medical School
关键词 脑水肿 磁共振成像 MRI 弥散加权 T2加权 动物实验 brain edema magnetic resorance imaging
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  • 1[1]Hanstoch CC, Faden AI, Bendall MR, et al. Diffusion-weighted imaging differentiates ischemic tissue from traumatized tissue[J]. Stroke, 1994, 25..843-848.
  • 2[2]Ide H, Kobayaski H, Handa Y, et al. Correlation between somatosensory-evoked potential and magnetic resonance imaging of focal cerebral ischemia in cats [J]. Surg Neurol, 1993,40:216-223.
  • 3[3]Schaefer PW,Buonanno FS, Schwamm LH. Diffusion-weighted imaging discriminates between cytotoxic and vasogenic edema in a patient with eclampsia [J]. Stroke, 1997,28(5) :1082-1085.
  • 4[4]Go KG. The normal and pathological physiology of brain water [J]. Adv-Tech-Stand-Neurosurg, 1997,23:47-142.
  • 5[5]Le bihan D, Breton E,Grenier P,et al. Mr imaging of intravoxel incoherent motion: Application to diffusion and perfsion in neurologic disorders [J]. Radillogy , 1986,161: 401-407.
  • 6[6]Moseley ME, Cohen Y, Mintorovitch J, et al. Early detection ofregional cerebral ischemia in cats: Comparison of diffusionand-T2-weighted MRI and spectroscopy [ J]. Magn Reson Med, 1990,14:330-346.
  • 7[7]Mintorovitch J, Moseley ME, Chileuitt L, et al. Comparison of diffusion-and -T2-weighted MRI for the early detection of cerebral ischemia and reperfusion in rats [J]. Magn Reson Med, 1991,18:39-50.
  • 8[8]Van Lookeren Campagne M, Verheul JB, Nicolay K, et al. Early evolution and recovery from excitotoxic injury in the neonatal rat brains A study combining magnetic resonance imaging, electrical impedance, and histology [J]. J Cereb Blood Flow Metab, 1994, 14:1011-1023.
  • 9[9]Ebisu T, Naruse S, Horikawa Y, et al. Discrimination between different types of white matter edema with diffusionweighted MR imaging [J]. J Magn Reson Imaging, 1993, 3:863-868.
  • 10[10]Schuier FJ, Hossman KA. Experimental brain infarcts in cats.Ⅱ: Ischemic brain edema[J]. Stroke, 1980,11:593-601.

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