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手运动组块设计与事件相关设计的fMRI比较研究 被引量:4

A Control Study of Hand Motor fMRI Experiment with Blocked Design and Event Related Design
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摘要 目的:探讨组块和事件相关两种fMRI实验设计在方法学上的差异及其适用范围。方法:对13例健康志愿者进行组块和事件相关两种不同任务模式下右手简单对指运动脑fMRI实验。采用GE 1.5T磁共振全身扫描仪,所获数据应用SPM 99软件进行预处理和统计分析,获取两种实验设计下的脑激活图及各激活区的范围和最大激活强度,对比两种实验设计方法之间的异同。结果:组块设计实验中可见对侧初级运动区(M1)、双侧辅助运动区(SMA)及同侧小脑半球 (CER)明显激活。事件相关设计实验可见对侧M1区及双侧SMA明显激活,小脑未见激活;SMA激活区包括前后两部分,即位于前方的辅助运动前区(Pre-SMA)和后方固有区(SMA Proper);M1区和SMA激活强度较弱、范围较小;事件相关设计可反映各激活区的血流动力学反应过程。结论:两种实验设计均可激活对侧M1区及双侧SMA,以组块设计激活作用更强、范围更大,因此有利于功能区的检出和定位;事件相关设计激活作用较弱,但可以反映功能区的活动细节,有利于研究各功能区之间的相互联系。 Objective:To compare the difference and similarities of the block design and event related (ER) design for hand motor fMRI, to analyze their pros and cons. Methods: Thirteen subjects were collected in this experiment, fMRI were acquired by using GE 1.5T MR scanner. The data were analyzed with SPM 99 software. Coverage functional mapping were acquired and activated voxels and maximum intensity were counted. Results: Using block design, the activated areas were found in contra-lateral primary motor area (M1), bilateral supplementary motor areas (SMA) and ipsi-lateral cerebellum. With ER design, The activated areas were found in M1, SMA, including Pre-SMA and SMA Proper. The cerebellum had no activation,and the activated intensity in the M1 and SMA were stronger in block design than those in ER design. The course of hemodynamic response could be reflected by ER design fMRI. Conclusion: Both the two patterns of design could activate the contra-lateral M1 and bilateral SMA. The activated extent and intensity in the M1 and SMA were stronger in the Block design, providing benefit for the detection and location of the functional areas. The details of the functional activation could be reflected by ER design and was more helpful in the study of relationship among the function areas.
出处 《放射学实践》 2006年第1期5-8,共4页 Radiologic Practice
基金 四川省科技厅科技项目(02SY029-152)
关键词 磁共振成像 诱发电位 Magnetic resonance imaging Brain Event related potentials
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参考文献9

  • 1Hao J, Li KC. Progress of Functional Magnetic Resonance Imaging[J]. Chin J Med Imaging Technol,2002,18(11): 1195-1197.
  • 2李心天.中国人的左右利手分布[J].心理学报,1983,15(3):268-276. 被引量:199
  • 3Friston KJ, Zarahn E, Josephs O, et al. Stochastic Designs in Event Related fMRI[J]. Neuroimage, 1999,10(5):607-619.
  • 4Allison JD, Meador KI, Loring DW, et al. Functional MRI Cerebral Activation and Deactivation During Finger Movement[J].Neurology 2000,54(1):135-142.
  • 5李恩中,韩璎,翁旭初,吴承良,赵长坡,田捷,戴汝为.事件相关功能MRI在随意运动脑功能活动区协同作用研究中的应用[J].中华放射学杂志,2002,36(5):397-401. 被引量:14
  • 6Donaldson DI, Buckner RL. Effective Paradigm Design in Functional Magnetic Resonance Imaging of the Brain: Methods for Neuroscience [M]. Oxford : Oxford University Press, 2000. 221-224.
  • 7Bower JM.Parsons LM. Rethinking the "Lesser Brain"[J]. Sci Am,2003,289(2):50-57.
  • 8Cui SZ, Li EZ, Zang YF, et al. Both Sides of Human Cerebellum Involved in Preparation and Execution of Sequential Movements[J]. Neuro Report, 2000,11(17):3849-3853.
  • 9王美豪,祝一虹,李建策,黎金林,吴恩福,漆剑频.运动相关大脑皮层的功能磁共振成像[J].放射学实践,2005,20(1):15-17. 被引量:6

二级参考文献15

  • 1李恩中,马林,翁旭初.磁共振脑功能成像方法的初步研究[J].中国医学影像学杂志,1996,4(4):209-211. 被引量:18
  • 2Catalan MJ, Honda M, Weeks RA, et al. The Functional Neuroanatomy of Simple and Complex Sequential Finger Movements: a PET Study[J]. Brain,1998,121 ( Pt 2):253-264.
  • 3Grafton ST,Mazziotta JC,Presty S,et al. Functional Anatomy of Human Procedural Learning Determined with Regional Cerebral Blood Flow and PET[J]. J Neurosci, 1992,12(7): 2542-2548.
  • 4Deiber MP,Passingham RE,Colebatch JG,et al. Cortical Areas and the Selection of Movement: a Study with Positron Emission Tomography[J]. Exp Brain Res,1991,84(2) :393-402.
  • 5Orgogozo JM,Larsen B. Activation of the Supplementary Motor Area During Voluntary Movement in Man Suggests it Works as a Supramotor Area[J]. Science, 1979,206 (4420) : 847-850.
  • 6Kandel ER, Squire LR. Neuroscience: Breaking down Scientific Barriers to the Study of Brain and Mind[J]. Science, 2000, 10,290(5494): 1113-1120.
  • 7Alexander GE, Crutcher MD. Preparation for Movement:Neural Representations of Intended Direction in Three Motor Areas of the Monkey[J]. J Neurophysiol, 1990,64(1): 133-150.
  • 8Buckner RL,Bandettini PA,OCraven KM,et al. Detection of Cortical Activation During Averaged Single Trials of a Cognitive TaskUsing Functional Magnetic Resonance Imaging[J]. Proc Natl Acad Sci USA,1996,93(25) :14878-1483.
  • 9Zang Y,Jia F,Weng X, et al. Functional Organization of the Primary Motor Cortex Characterized by Event-related fMRI during Movement Preparation and Execution[J]. Neurosci Lett, 2003,337(2) :69-72.
  • 10Lee KM,Chang KH,Roh JK. Subregions within the Supplementary Motor Area Activated at Different Stages of Movement Preparation and Execution[J]. Neuroimage, 1999,9 ( 1 ): 117-123.

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