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首页> 外文期刊>Lupus >In vivo evaluation of brain damage in the course of systemic lupus erythematosus using magnetic resonance spectroscopy, perfusion-weighted and diffusion-tensor imaging
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In vivo evaluation of brain damage in the course of systemic lupus erythematosus using magnetic resonance spectroscopy, perfusion-weighted and diffusion-tensor imaging

机译:使用磁共振波谱,灌注加权和弥散张量成像在体内评估系统性红斑狼疮过程中的脑损伤

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摘要

Twenty-two neuropsychiatric (NPSLE) and 13 systemic lupus erythematosus (SLE) patients with a normal appearing brain on plain magnetic resonance (MR) as well as 20 age-matched healthy controls underwent MR spectroscopy (MRS), perfusion-weighted (PWI) and diffusion-tensor imaging (DTI). In MRS NAA/Cr, Cho/Cr and mI/Cr ratios were calculated from the posterior cingulate cortex and left parietal white matter. In PWI, values of cerebral blood volume (CBV) were assessed from 14 regions, including gray and white matter. In DTI fractional anisotropy (FA) values were obtained from 14 white matter tracts including projection, commissural and association fibers. All MR measurements were correlated with clinical data. SLE and NPSLE patients showed significantly (p < 0.05) lower NAA/Cr ratios within both evaluated regions and FA values within the cingulum, as well as a tendency to cortical hypoperfusion. Compared to SLE, NPSLE subjects revealed lower FA values within a wide range of association fibers and corpus callosum. Advanced MR techniques are capable of in vivo detection of complex microstructural brain damage in SLE and NPSLE subjects regarding neuronal loss, mild hypoperfusion and white matter disintegrity. MRS and DTI seem to show the highest usefulness in depicting early changes in normal appearing gray and white matter in SLE patients.
机译:22名神经精神正常(NPSLE)和13例系统正常的大脑在普通磁共振(MR)下出现系统性红斑狼疮(SLE)的患者以及20名年龄匹配的健康对照者接受了MR光谱(MRS)和灌注加权(PWI)和扩散张量成像(DTI)。在MRS NAA / Cr中,从后扣带回皮层和左顶叶白质计算出Cho / Cr和mI / Cr比率。在PWI中,从包括灰质和白质在内的14个区域评估了脑血容量(CBV)值。在DTI中,分数各向异性(FA)值从包括投影纤维,连合纤维和缔合纤维在内的14个白质束中获得。所有MR测量值均与临床数据相关。 SLE和NPSLE患者在评估区域和扣带内的FA值均显着(p <0.05)降低了NAA / Cr比值,并出现了皮质灌注不足的趋势。与SLE相比,NPSLE受试者在广泛的缔合纤维和体中显示出较低的FA值。先进的MR技术能够体内检测SLE和NPSLE受试者中有关神经元丢失,轻度灌注不足和白质不完整性的复杂微结构脑损伤。在描述SLE患者正常出现的灰色和白色物质的早期变化方面,MRS和DTI似乎显示出最高的实用性。

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