健康儿童颈髓磁共振扩散张量成像
Magnetic resonance diffusion tensor imaging of cervical cord in healthy children
目的 应用扩散张量成像技术研究儿童颈髓发育规律。方法 使用单次激发自旋回波平面回波序列对90例健康儿童行颈髓扩散张量成像。在颈髓节段分别测量其表观扩散系数值(ADC)、各向异性分数值(FA)、纤维束平均长度(Ltract)以及纤维束体积(Vtract)。结果 各组的ADC值、FA值、Ltract及Vtract分别如下:0.9747±0.2777、0.8493±0.2236、0.8210±0.1432、0.9198±0.1444、0.9048±0.1676;0.4117±0.0391、0.4712±0.0199、0.4944±0.0439、0.5608±0.0443、0.6169±0.0551;25.61±8.63、24.66±7.14、27.03±7.23、34.93±10.99、37.63±10.22;3.07±1.49、3.00±1.52、3.81±1.33、5.41±2.35、6.64±2.84。各年龄组的FA值、Ltract和Vtract不完全相同(P<0.001),而ADC值各年龄组的均值差异无统计学意义(F=1.758, P=0.145)。在组间的两两比较中:1、2组间FA值差异具有统计学意义;3、4组间FA值、Ltract和Vtract差异均具有统计学意义;4、5组间FA值差异具有统计学意义。FA值、Ltract和Vtract与年龄呈正相关。
结论 儿童颈髓发育具有阶段性,且具有阶段性特征;磁共振扩散张量技术可用于观测儿童颈髓并评价其发育。
Objective To investigate the development of the cervical cord in children by using diffusion tensor imaging.Methods Ninety healthy children were undergone with diffusion tensor imaging of the cervical cord by using single-shot spin-echo echo planar image sequence. The values of apparent diffusion coefficients (ADC), fractional anisotropy (FA), average length(Ltract) and volume of tracts(Vtract) were measured in the cervical regions. Results The measurements of each group were as follow: ADC value: 0.9747±0.2777,0.8493±0.2236,0.8210±0.1432,0.9198±0.1444,0.9048±0.1676;FA value:0.4117±0.0391,0.4712±0.0199,0.4944±0.0439,0.5608±0.0443,0.6169±0.0551; Ltract:25.61±8.63,24.66±7.14,27.03±7.23,34.93±10.99,37.63±10.22;Vtract:3.07±1.49,3.00±1.52,3.81±1.33,5.41±2.35,6.64±2.84. FA value, Ltract and Vtract showed significance in different age groups, while ADC value was found no difference (P<0.001). PostHoc test revealed that FA value was significantly different between age group I and Ⅱ. FA value, Ltractand Vtract presented significantly different between group Ⅲ and Ⅳ. FA value difference was also found between group Ⅳ and V. FA value, Ltract and Vtract were all positively corelative with age (F=1.758,P=0.145). Conclusion Development of the cervical cord shows periodicity with periodic features. Diffusion Tensor Imaging can be used as a tool to observe and evaluate development of the cervical cord in children.
Spinal Cord / Magnetic resonance imaging / Diffusion tensor imaging / Child
[1]Kochunov P, Glahn DC, Lancaster J, et al. Fractional anisotropy of cerebral white matter and thickness of cortical gray matter across the lifespan[J]. Neuroimage,2011, 58(1): 41-49.
[2]Nielles-Vallespin S, Mekkaoui C, Gatehouse P, et al. In vivo diffusion tensor MRI of the human heart: reproducibility of breath-hold and navigator-based approaches[J].Magn Reson Med,2012,70(2):454-465.
[3]Taouli B, Chouli M, Martin AJ, et al. Chronic hepatitis: role of diffusion-weighted imaging and diffusion tensor imaging for the diagnosis of liver fibrosis and inflammation[J]. J Magn Reson Imaging,2008,28(1):89-95.
[4]Tagliafico A, Rescinito G, Monetti F, et al. Diffusion tensor magnetic resonance imaging of the normal breast: reproducibility of DTI-derived fractional anisotropy and apparent diffusion coefficient at 3.0 T[J]. Radiol Med, 2012,117(6):992-1003.
[5]Finley DS, Ellingson BM, Natarajan S, et al. Diffusion tensor magnetic resonance tractography of the prostate: feasibility for mapping periprostatic fibers[J].Urology, 2012,80(1):219-223.
[6]Xiao JX,Guo XM,Xie Sh,et al.Primary study of the white matter in normal children with color tensor map[J].Journal of Practical Radiology, 2003,19(12):1057-1060. (in Chinese)
肖江喜,郭雪梅,谢晟,等. 扩散张量成像对正常儿童脑白质结构的初步探讨——彩色张量图的应用[ J ].实用放射学杂志, 2003, 19(12) : 1057-1060.
[7]Wang MT, Liu WJ. Pediatrics[M]. 5th ed. Beijing: People’s Medical Publishing House, 2000:3-15.(in Chinese)
王慕逖,刘皖君. 儿科学[M].第5版.北京:人民卫生出版社,2000:3-15.
[8]Mamata H, Mamata Y, Westin CF, et al. High-resolution line scan diffusion tensor MR imaging of white matter fiber tract anatomy[J].Am J Neuroradiol, 2002, 23(1):67-75.
[9]Mori S, Crain BJ, Chacko VP, et al. Three-dimensional tracking of axonal projections in the brain by magnetic resonance imaging [J]. Ann Neurol, 1999, 45(2):265-269.
[10]Xue R, van Zijl PCM, Crain BJ, et al. In vivo three-dimensional reconstruction of rat brain axonal projections by diffusion tensor imaging [J]. Magn Reson Med, 1999,42(6):1123-1127.
[11]Gi JF, Feng ShQ. Progress in research on animal models of spinal cord injury [J]. Chinese Journal of Experimental Surgery, 2006, 23(9): 1151-1152. (in Chinese)
纪江峰,冯世庆. 脊髓损伤动物模型研究进展[J]. 中华实验外科杂志,2006,23(9):1151-1152.
[12]Wheeler-Kingshott CA, Hickman SJ, Parker GJ, et al. Investigating cervical spinal cord structure using axial diffusion tensor imaging[J].Neuroimage, 2002, 16(1): 93-102.
[13]Ries M, Jones RA, Dousset V, et al. Diffusion tensor MRI of the spinal cord[J]. Magn Reson Med, 2000,44(16): 884-892.
[14]Xiao JX, Guo XM, Xie Sh, et al.Preliminary study of normal changes in brain white matter during childhood with diffusion tensor imaging[J]. Chinese Journal of Radiology, 2005, 39 (12) : 1252-1255. (in Chinese)
肖江喜,郭雪梅,谢晟,等. 应用扩散张量成像对正常儿童脑白质发育的初步研究[ J ]. 中华放射学杂志, 2005, 39 (12) : 1252 -1255.
[15]Chen Y,Wu MX,Xu JM,et al.White matter fiber tracking method for the study of aging-quantitative diffusion tensor imaging analysis of ninety healthy adult Chinese [J].Chinese Journal of Medical Imaging Technology, 2009, 25 (3) : 369-372. (in Chinese)
陈宇, 吴明祥, 徐坚民, 等. DTI纤维追踪法定量分析90名正常国人脑白质老化[ J ]. 中国医学影像技术, 2009, 25 (3) : 369 -372.
[16]L?bel U, Sedlacik J, Güllmar D, et al. Diffusion tensor imaging: the normal evolution ofADC, RA, FA, and eigenvalues studied in multiple anatomical regions of the brain [ J ]. Neuroradiology, 2009, 51 (4 ) :253-263.
[17]Zou S, Shen DH, Luo XJ. Reconstruction of fibers of splenium corporis callosi in children by diffusion tensor tractography[J]. Acta Anatomica Sinica,2011,42(5):653-656. (in Chinese)
邹松,沈东挥, 罗晓捷. 应用弥散张量纤维束成像技术重建儿童胼胝体压部纤维束 [J].解剖学报, 2011,42(5):653-656.
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