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单手法感运动学习——一项基于 EEG-fMRI 的衰老同步研究。

Unimanual sensorimotor learning-A simultaneous EEG-fMRI aging study.

机构信息

Berlin Institute of Health at Charité, Universitätsmedizin Berlin, Charitéplatz 1, Berlin, Germany.

Department of Neurology with Experimental Neurology, Charité, Universitätsmedizin Berlin, Corporate member of Freie Universität Berlin and Humboldt Universität zu Berlin, Charitéplatz 1, Berlin, Germany.

出版信息

Hum Brain Mapp. 2022 May;43(7):2348-2364. doi: 10.1002/hbm.25791. Epub 2022 Feb 8.

Abstract

Sensorimotor coordination requires orchestrated network activity in the brain, mediated by inter- and intra-hemispheric interactions that may be affected by aging-related changes. We adopted a theoretical model, according to which intra-hemispheric inhibition from premotor to primary motor cortex is mandatory to compensate for inter-hemispheric excitation through the corpus callosum. To test this as a function of age we acquired electroencephalography (EEG) simultaneously with functional magnetic resonance imaging (fMRI) in two groups of healthy adults (younger N = 13: 20-25 year and older N = 14: 59-70 year) while learning a unimanual motor task. On average, quality of performance of older participants stayed significantly below that of the younger ones. Accompanying decreases in motor-event-related EEG β-activity were lateralized toward contralateral motor regions, albeit more so in younger participants. In this younger group, the mean β-power during motor task execution was significantly higher in bilateral premotor areas compared to the older adults. In both groups, fMRI blood oxygen level dependent (BOLD) signals were positively correlated with source-reconstructed β-amplitudes: positive in primary motor and negative in premotor cortex. This suggests that β-amplitude modulation is associated with primary motor cortex "activation" (positive BOLD response) and premotor "deactivation" (negative BOLD response). Although the latter results did not discriminate between age groups, they underscore that enhanced modulation in primary motor cortex may be explained by a β-associated excitatory crosstalk between hemispheres.

摘要

感觉运动协调需要大脑中协调的网络活动,由半球间和半球内的相互作用介导,这些相互作用可能会受到与年龄相关的变化的影响。我们采用了一种理论模型,根据该模型,来自运动前区到初级运动皮层的半球内抑制对于通过胼胝体补偿半球间兴奋是强制性的。为了测试这一功能是否随年龄而变化,我们在两组健康成年人(年轻组 N=13:20-25 岁和年长组 N=14:59-70 岁)中同时进行了脑电图(EEG)和功能磁共振成像(fMRI)采集,同时进行了单侧运动任务的学习。平均而言,年长组参与者的表现质量明显低于年轻组。伴随而来的运动事件相关 EEG β-活动减少偏向于对侧运动区域,尽管在年轻参与者中更为明显。在这个年轻组中,双侧运动前区在执行运动任务期间的平均 β-功率明显高于年长组。在两组中,功能磁共振成像血氧水平依赖(BOLD)信号与源重建的 β-幅度呈正相关:在初级运动皮层中为正,在运动前皮层中为负。这表明β幅度调制与初级运动皮层的“激活”(正 BOLD 反应)和运动前皮层的“去激活”(负 BOLD 反应)相关。尽管后者的结果不能区分年龄组,但它们强调了初级运动皮层中增强的调制可以用半球间的β相关兴奋性串扰来解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2d1/8996364/86b9340580c5/HBM-43-2348-g014.jpg

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