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正常成人大脑白质纤维磁共振弥散张量成像的定量研究 被引量:11

Quantitative Analysis of Normal Adult Cerebral White Matter Fibers by Magnetic Resonance Diffusion Tensor Imaging
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摘要 目的:运用弥散张量成像(DTI)定量研究正常成人脑白质不同解剖部位的各向异性特点。方法:对60名正常成人按年龄分成四组,均行DTI检查,分析其表面弥散系数(ADC)图及各向异性分数(FA)图的特点,并对不同解剖部位的脑白质进行ADC值及FA值的定量分析,通过统计学分析得出其弥散系数和各向异性特点。结果:不同年龄组间相同解剖部位脑白质ADC值及FA值的差异无统计学意义;不同解剖部位间FA值及ADC值的差异具有显著性。结论:DTI可清晰显示脑内白质的走行及方向,FA能准确定量分析正常成人不同部位脑白质纤维的各向异性程度。 Purpose: To quantitative analyze the diffusion anisotropic features of normal adults cerebral white matter fibers by magnetic resonance diffusion tensor imaging. Methods: Sixty normal adults were divided into four groups according to their ages and were examined by magnetic resonance diffusion tensor imaging(DTI). The apparent diffusion coefficient (ADC) maps and fractional anisotropy (FA) maps were analyzed. The ADC values and FA values were measured. And the statistical results were analyzed. Results: There was no significant difference between the ADC values and FA values of the same anatomical site of cerebral white matter in different age groups. There were statistical differences among FA values and ADC values of different anatomical parts. Conclusion: DTI could display the cerebral white matter fibers well. FA values can be used to analyze the anisotropy of different cerebral white matter fibers of normal adults quantitatively.
出处 《中国医学计算机成像杂志》 CSCD 北大核心 2012年第1期6-8,共3页 Chinese Computed Medical Imaging
基金 上海市青浦区科委科研基金(N0.2009-34)~~
关键词 磁共振成像 弥散张量成像 白质纤维 成人 Magnetic resonance imaging Diffusion tensor imaging White matter, fiber Adult
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  • 1陈增爱,冯晓源,耿道颖,汤伟军.磁共振弥散张量成像及脑功能成像在涉及运动通路脑肿瘤中的初步联合应用[J].中国医学计算机成像杂志,2004,10(6):404-408. 被引量:7
  • 2张春燕,张云亭,张敬,李威.正常成人脑结构年龄相关性变化的扩散张量成像研究[J].中华放射学杂志,2006,40(1):22-28. 被引量:15
  • 3Tanner JE,Christian B.The Basis of Anisotropic Water Diffusion in the Nervous System-a Technical Review[J].NMR Biomed,2002,15(7-8):435-455. 被引量:1
  • 4Le Bihan D,Mangin JF,Poupon C,et al.Diffusion Tensor Imaging:Concepts and Applications[J].J Magn Reson Imaging,2001,13(4):534-546. 被引量:1
  • 5Jones DK,Horsfield MA,Simmons A.Optimal Strategies for Measuring Diffusion in Anisotropic Systems by Magnetic Resonance Imaging[J].Magn Reson Med,1999,42(3):515-525. 被引量:1
  • 6Hasan KM,Parker DL,Alexander AL.Comparison of Gradient Encoding Schemes for Diffusion-tenor MRI[J].J Magn Reson Imaging,2001,13(5):769-780. 被引量:1
  • 7Pierpaoli C,Jezzard P,Basser PJ,et al.Diffusion Tensor MR Imaging of the Human Brain[J].Radiology,1996,201(3):637-648. 被引量:1
  • 8Chepuri NB,Yen YF,Burdette JH,et al.Diffusion Anisotropy in the Corpus Callosum[J].AJNR,2002,23(5):803-808. 被引量:1
  • 9Shimony JS,Mckinstry RC,Akubudak E,et al.Quantitative Diffusion-tensor Anisotropy Brian MR Imaging:a Normative Human Data and Anatomic Analysis[J].Radiology,1999,212(3):770. 被引量:1
  • 10Hajnal JV,Doran M,Hall AS.MR Imaging of Anisotropically Restricted Diffusion of Water in the Nervous System Technical,Anatomic,and Pathologic Consideration[J].JCAT,1991,15(1):1. 被引量:1

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