Macquarie Centre for Cognitive Science, Macquarie University, Sydney, Australia.
Clin Neurophysiol. 2010 Mar;121(3):340-9. doi: 10.1016/j.clinph.2009.10.017. Epub 2009 Dec 1.
Conventional whole-head MEG systems have fixed sensor arrays designed to accommodate most adult heads. However arrays optimised for adult brain measurements are suboptimal for research with the significantly smaller heads of young children. We wished to measure brain activity in children using a novel whole-head MEG system custom sized to fit the heads of pre-school-aged children.
Auditory evoked fields were measured from seven 4-year-old children in a 64-channel KIT whole-head gradiometer MEG system.
The fit of heads in the MEG helmet dewars, defined as the mean of sensor-to-head centre distances, were substantially better for children in the child helmet dewar than in the adult helmet dewar, and were similar to head fits obtained for adults in a conventional adult MEG system. Auditory evoked fields were successfully measured from all seven children and dipole source locations were computed.
These results demonstrate the feasibility of routinely measuring neuromagnetic brain function in healthy, awake pre-school-aged children.
The advent of child-sized whole-head MEG systems opens new opportunities for the study of cognitive brain development in young children.
传统的全头 MEG 系统具有固定的传感器阵列,旨在适应大多数成人头部。然而,针对成人大脑测量优化的阵列对于研究儿童的大脑来说并不理想,因为儿童的头部要小得多。我们希望使用一种新型的全头 MEG 系统,该系统专门为适合学龄前儿童头部的大小而设计,来测量儿童的大脑活动。
在一个 64 通道的 KIT 全头梯度计 MEG 系统中,对 7 名 4 岁儿童的听觉诱发电场进行了测量。
在儿童头盔杜瓦瓶中,头部的贴合度定义为传感器到头部中心的平均距离,对于儿童来说明显优于成人头盔杜瓦瓶,与传统成人 MEG 系统中成人的头部贴合度相似。所有 7 名儿童均成功测量到听觉诱发电场,并计算出偶极子源位置。
这些结果证明了在健康、清醒的学龄前儿童中常规测量神经磁脑功能的可行性。
儿童大小的全头 MEG 系统的出现为研究幼儿认知大脑发育开辟了新的机会。