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Frontal Functional Connectivity of Electrocorticographic Delta and Theta Rhythms during Action Execution Versus Action Observation in Humans

机译:人体执行动作与动作观察过程中的脑皮质三角洲和θ节律的额叶功能连接。

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摘要

We have previously shown that in seven drug-resistant epilepsy patients, both reaching-grasping of objects and the mere observation of those actions did desynchronize subdural electrocorticographic (ECoG) alpha (8–13 Hz) and beta (14–30) rhythms as a sign of cortical activation in primary somatosensory-motor, lateral premotor and ventral prefrontal areas (Babiloni et al., ). Furthermore, that desynchronization was greater during action execution than during its observation. In the present exploratory study, we reanalyzed those ECoG data to evaluate the proof-of-concept that lagged linear connectivity (LLC) between primary somatosensory-motor, lateral premotor and ventral prefrontal areas would be enhanced during the action execution compared to the mere observation due to a greater flow of visual and somatomotor information. Results showed that the delta-theta (<8 Hz) LLC between lateral premotor and ventral prefrontal areas was higher during action execution than during action observation. Furthermore, the phase of these delta-theta rhythms entrained the local event-related connectivity of alpha and beta rhythms. It was speculated the existence of a multi-oscillatory functional network between high-order frontal motor areas which should be more involved during the actual reaching-grasping of objects compared to its mere observation. Future studies in a larger population should cross-validate these preliminary results.
机译:我们先前已经证明,在7名耐药性癫痫患者中,无论是达到抓取物体还是仅观察到这些动作,都确实使硬膜下电皮层(ECoG)α(8–13 Hz)和β(14–30)节律不同步。在主要的体感运动,侧向运动和腹侧前额叶区域皮质激活的迹象(Babiloni等,)。此外,动作执行期间的不同步比观察期间更大。在本探索性研究中,我们重新分析了这些ECoG数据以评估概念验证:与单纯观察相比,在执行动作期间,主要体感运动,横向前运动和腹侧前额叶区域之间的滞后线性连接(LLC)将得到增强由于更多的视觉和躯体运动信息流。结果表明,动作执行过程中外侧前运动区和腹侧前额叶区域之间的δ-θ(<8 Hz)LLC高于动作观察期间。此外,这些δ-θ节律的相位夹带了α和β节律的局部事件相关的连通性。据推测,在高阶额叶运动区域之间存在多振荡功能网络,与单纯观察相比,在实际抓取物体时应该更多地参与其中。未来在更多人群中的研究应交叉验证这些初步结果。

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