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1.5和3.0T下T2加权快速自旋回波序列对正常脑内生理性铁沉积的敏感性

Sensitivity of T2-weighted FSE sequences towards physiological iron depositions in normal brains at 1.5 and 3.0 T.

作者信息

Allkemper T, Schwindt W, Maintz D, Heindel W, Tombach B

机构信息

Department of Clinical Radiology, University of Muenster, Albert-Schweitzer-Strasse 33, 48149 Münster, Germany.

出版信息

Eur Radiol. 2004 Jun;14(6):1000-4. doi: 10.1007/s00330-004-2241-4. Epub 2004 Mar 19.

Abstract

To evaluate the sensitivity of T2-weighted fast spin-echo (FSE) sequences to physiological iron depositions in normal brains at MR imaging field strengths of 1.5 and 3.0 T. T2-weighted FSE sequences acquired at 1.5 and 3.0 T clinical imaging systems (Gyroscan Intera, Philips Medical Systems, Best, The Netherlands) were compared by means of MRI in phantoms ( n=6) and healthy volunteers ( n=10). Contrast-to-noise ratios (CNRs) of tubes doped with iron oxides at different concentrations and of brain areas with physiological iron depositions (nucleus ruber, substantia nigra, globus pallidus) were calculated for either field strength. Apparent susceptibility effects of iron-containing brain structures were qualitatively analyzed by comparing the degree of visible hypointensity by a score system at either field strength. The mean CNR of iron oxide tubes and iron-containing brain areas was significantly decreased at 3.0 T. Qualitative analysis confirmed these measurements. Detection and diagnosis of brain disorders with altered iron content such as neurodegenerative parkinsonian disorders (NPD) or intracerebral hemorrhage should benefit from the increased sensitivity of T2-weighted FSE sequences to susceptibility effects at 3.0 T.

摘要

评估在1.5 T和3.0 T的磁共振成像场强下,T2加权快速自旋回波(FSE)序列对正常大脑中生理性铁沉积的敏感性。通过在体模(n = 6)和健康志愿者(n = 10)中进行磁共振成像,比较在1.5 T和3.0 T临床成像系统(荷兰贝斯特飞利浦医疗系统公司的Gyroscan Intera)上采集的T2加权FSE序列。计算两种场强下不同浓度氧化铁掺杂管以及具有生理性铁沉积的脑区(红核、黑质、苍白球)的对比噪声比(CNR)。通过在两种场强下用评分系统比较可见低信号强度的程度,对含铁脑结构的表观磁化率效应进行定性分析。在3.0 T时,氧化铁管和含铁脑区的平均CNR显著降低。定性分析证实了这些测量结果。对于铁含量改变的脑部疾病,如神经退行性帕金森病(NPD)或脑出血的检测和诊断,应受益于T2加权FSE序列在3.0 T时对磁化率效应增加的敏感性。

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