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自我节奏运动任务期间代谢与电磁激活信号的解剖学一致性:一项PET-MEG联合研究

Anatomical congruence of metabolic and electromagnetic activation signals during a self-paced motor task: a combined PET-MEG study.

作者信息

Joliot M, Crivello F, Badier J M, Diallo B, Tzourio N, Mazoyer B

机构信息

Service Hospitalier Frédéric Joliot, CEA, DSV, DRM, Orsay, France.

出版信息

Neuroimage. 1998 May;7(4 Pt 1):337-51. doi: 10.1006/nimg.1998.0333.

DOI:10.1006/nimg.1998.0333
PMID:9626674
Abstract

We have investigated the degree of spatial correlation between the cerebral blood flow variations measured by positron emission tomography (PET) and the electromagnetic sources as measured by magnetoencephalography (MEG) in five subjects while performing a self-paced right index finger tapping task. Data were processed independently for each technique using both single-case and intersubject analysis. PET and MEG were coregistered with anatomical magnetic resonance images for each subject. Both extension and flexion motor-related fields were extracted from the MEG signal. Using the single dipole model we identified the motor evoked field 1 (MEF1) in all subjects and the motor field (MF) in three subjects. Individual and intersubject averaged PET data showed consistent contralateral primary sensorimotor (PSM) hand area and bilateral supplementary motor area activation. MEG individual and intersubject averaged results demonstrated that both MEF1 and MF dipoles were localized within the PSM PET activated area. Individual PSM mass center to dipole distance was 12 and 15.3 mm on average for the MEF1 and the MF component, respectively. For the same components, the intersubject averaged analysis shows distances between the PET Z-score maximum and the dipole locations of 6.3 and 15.0 mm, respectively. These results show that PET and MEG MEF1 activation signals spatially coincide within instrumental, registration, and modeling errors.

摘要

我们研究了5名受试者在进行自定节奏的右手食指敲击任务时,通过正电子发射断层扫描(PET)测量的脑血流变化与通过脑磁图(MEG)测量的电磁源之间的空间相关程度。使用单病例分析和受试者间分析,对每种技术的数据进行独立处理。PET和MEG与每个受试者的解剖磁共振图像进行配准。从MEG信号中提取伸展和屈曲运动相关区域。使用单偶极子模型,我们在所有受试者中识别出运动诱发电场1(MEF1),在三名受试者中识别出运动场(MF)。个体和受试者间平均PET数据显示,对侧初级感觉运动(PSM)手部区域和双侧辅助运动区域激活一致。MEG个体和受试者间平均结果表明,MEF1和MF偶极子均位于PSM PET激活区域内。MEF1和MF成分的个体PSM质心到偶极子的平均距离分别为12和15.3毫米。对于相同成分,受试者间平均分析显示PET Z分数最大值与偶极子位置之间的距离分别为6.3和15.0毫米。这些结果表明,在仪器、配准和建模误差范围内,PET和MEG的MEF1激活信号在空间上是重合的。

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