Vitali Helene, Campus Claudio, De Giorgis Valentina, Signorini Sabrina, Morelli Federica, Fasce Marco, Gori Monica
Unit for Visually Impaired People, Istituto Italiano di Tecnologia, 16152 Genoa, Italy.
Dipartimento di Informatica, Bioingegneria, Robotica e Ingegneria dei Sistemi (DIBRIS), University of Genova, 16145 Genoa, Italy.
Brain Sci. 2024 Apr 20;14(4):402. doi: 10.3390/brainsci14040402.
The relationship between cerebral rhythms and early sensorimotor development is not clear. In recent decades, evidence revealed a rhythmic modulation involving sensorimotor processing. A widely corroborated functional role of oscillatory activity is to coordinate the information flow across sensorimotor networks. Their activity is coordinated by event-related synchronisation and desynchronisation in different sensorimotor rhythms, which indicate parallel processes may be occurring in the neuronal network during movement. To date, the dynamics of these brain oscillations and early sensorimotor development are unexplored. Our study investigates the relationship between the cerebral rhythms using EEG and a typical rhythmic movement of infants, the non-nutritive sucking (NNS) behaviour. NNS is an endogenous behaviour that originates from the suck central pattern generator in the brainstem. We find, in 17 infants, that sucking frequency correlates with beta synchronisation within the sensorimotor area in two phases: one strongly anticipating (~3 s) and the other encompassing the start of the motion. These findings suggest that a beta synchronisation of the sensorimotor cortex may influence the sensorimotor dynamics of NNS activity. Our results reveal the importance of rapid brain oscillations in infants and the role of beta synchronisation and their possible role in the communication between cortical and deep generators.
脑节律与早期感觉运动发育之间的关系尚不清楚。近几十年来,有证据表明存在一种涉及感觉运动处理的节律性调制。振荡活动的一个得到广泛证实的功能作用是协调感觉运动网络中的信息流。它们的活动通过不同感觉运动节律中的事件相关同步化和去同步化来协调,这表明在运动过程中神经元网络中可能正在发生并行过程。迄今为止,这些脑振荡的动态变化与早期感觉运动发育尚未得到探索。我们的研究使用脑电图(EEG)以及婴儿的一种典型节律性运动——非营养性吸吮(NNS)行为,来研究脑节律之间的关系。NNS是一种内源性行为,起源于脑干中的吸吮中央模式发生器。我们发现,在17名婴儿中,吸吮频率在两个阶段与感觉运动区域内的β同步化相关:一个阶段是强烈预期阶段(约3秒),另一个阶段涵盖运动开始阶段。这些发现表明,感觉运动皮层的β同步化可能会影响NNS活动的感觉运动动态。我们的结果揭示了婴儿快速脑振荡的重要性以及β同步化的作用,及其在皮层和深部发生器之间通信中可能发挥的作用。