Brazdzionis James, Wiginton James, Patchana Tye, Savla Paras, Hung James, Zhang Yongming, Miulli Dan E
Neurosurgery, Riverside University Health System Medical Center, Moreno Valley, USA.
Electrical Engineering, Quasar Federal Systems, San Diego, USA.
Cureus. 2022 Mar 29;14(3):e23626. doi: 10.7759/cureus.23626. eCollection 2022 Mar.
Introduction The electromagnetic field (EMF) of the human brain generated by the movement of ions in the brain can be measured in a novel manner. The measurement can be completed through the skull, in a non-contact, non-invasive, continuous manner using a lightweight helmet. This investigation was conducted to determine if brain activity from movement and thoughts of movement can be measured at a distance and if that measurement can be readily evaluated at a distance using shielding with a shielded helmet and a shielded EMF channel surrounding a sensor. Methods Non-clinical human subject volunteers donned a lightweight sensor helmet and performed a variety of specific tasks synchronized with an audible tone generated by a metronome. Constructs were created to determine if the human subjects' brain EMF can be recorded at a distance using sensors surrounded by shielding acting similar to a waveguide in an EMF channel connected to a shielded helmet. Results The EMF sensors appeared to record brain electromagnetic activity as it is funneled into a shielded channel acting as a waveguide at a considerable distance including distances as far as 63 cm away. Conclusion Specific brain EMFs from movement, thoughts of movement, and emotional thought can be continuously measured in a non-contact fashion at a distance using an EMF waveguide approach with an EMF channel and shielded helmet.
引言 大脑中离子运动产生的人类大脑电磁场(EMF)能够以一种全新的方式进行测量。该测量可通过颅骨,使用轻便头盔以非接触、非侵入性且连续的方式完成。开展此项研究是为了确定是否能够在一定距离外测量因运动及运动相关想法而产生的大脑活动,以及使用带有屏蔽的头盔和围绕传感器的屏蔽EMF通道,在一定距离外能否轻松评估该测量结果。方法 非临床人类受试者志愿者佩戴轻便的传感器头盔,并执行与节拍器发出的可听音调同步的各种特定任务。构建装置以确定是否能在一定距离外,利用被屏蔽包围的传感器记录人类受试者的大脑EMF,该屏蔽在连接到屏蔽头盔的EMF通道中起到类似波导的作用。结果 EMF传感器似乎能够记录大脑电磁活动,因为它在相当远的距离,包括远至63厘米的距离,被导入充当波导的屏蔽通道中。结论 使用带有EMF通道和屏蔽头盔的EMF波导方法,可以在一定距离外以非接触方式连续测量因运动、运动相关想法和情感思维产生的特定大脑EMF。