摘要
作为一种重要的康复理疗设备和非侵入式神经调控技术,重复经颅磁刺激治疗仪在精神类疾病治疗和脑功能调控等领域发挥着重要作用。重复经颅磁刺激治疗仪使用脉冲磁场直接作用于人脑,脉冲磁场的磁感应强度、输出频率等特性直接决定刺激安全性和有效性。在研究了经颅磁刺激治疗仪技术发展的基础上,介绍了重复经颅磁刺激治疗仪的技术原理,详细描述重复经颅磁刺激治疗仪检测技术的研究路径。通过仿真技术获得典型刺激线圈产生的脉冲磁场分布,获得了灰质层上磁感应强度最大位置的大致范围;通过调研试制电磁感应线圈并进行实验,证明了电磁感应法测量脉冲磁场的可行性。针对重复经颅磁刺激治疗仪研发的检测技术不仅可以用于临床在用设备的检测,也能服务于脑功能调控等前沿科研领域,为落实“健康中国2030”战略提供技术保障。
As an essential rehabilitation physiotherapy equipment and non-invasive neuromodulation technology,repetitive Transcranial Magnetic Stimulation(rTMS) plays a vital role in the treatment of psychiatric diseases and brain function modulation. Since rTMS uses the pulsed magnetic field to act directly on the human brain, the magnetic induction intensity and output frequency of the pulsed magnetic field determine the safety and effectiveness of stimulation. Starting with reviewing the development of TMS, the technical principle of r TMS was introduced, and the research path of its measurement was described in detail. In this paper, the distribution of pulsed magnetic field generated by a typical stimulation coil was obtained by simulation, which could specify the approximate position of the maximum value point of magnetic induction intensity in grey matter. The feasibility of the electromagnetic induction method for measuring pulsed magnetic field has been demonstrated through research and trial production of electromagnetic induction coils and experiments. The measurement method developed in this paper can not only be used for the detection of rTMS in use but also serve cutting-edge scientific research fields such as brain function modulation, contributing to the implementation of the Healthy China 2030 strategy.
作者
李成伟
李姣
张璞
陆舒洁
洪宝玉
刘文丽
LI Chengwei;LI Jiao;ZHANG Pu;LU Shujie;HONG Baoyu;LIU Wenli(National Institute of Metrology,Beijing 100029,China)
出处
《计量科学与技术》
2022年第6期45-48,9,共5页
Metrology Science and Technology
基金
中国计量科学研究院基本科研业务费项目(32-AKYZD2014-2)
国家市场监督管理总局科技计划项目(2021MK152、2020MK149)。
关键词
重复经颅磁刺激
康复理疗
神经调控
仿真
检测
repetitive Transcranial Magnetic Stimulation
rehabilitation physiotherapy
neuro modulation
simulation
measurement