首页> 外文期刊>Clinical EEG and neuroscience: official journal of the EEG and Clinical Neuroscience Society (ENCS) >Improvement of Neurofeedback Therapy for Improved Attention Through Facilitation of Brain Activity Using Local Sinusoidal Extremely Low Frequency Magnetic Field Exposure
【24h】

Improvement of Neurofeedback Therapy for Improved Attention Through Facilitation of Brain Activity Using Local Sinusoidal Extremely Low Frequency Magnetic Field Exposure

机译:通过使用局部正弦极低频磁场暴露促进大脑活动来改善神经反馈疗法以提高注意力

获取原文
获取原文并翻译 | 示例
       

摘要

Traditional neurofeedback (NF) is a training approach aimed at altering brain activity using electroencephalography (EEG) rhythms as feedback. In NF training, external factors such as the subjects' intelligence can have an effect. In contrast, a low-energy NF system (LENS) does not require conscious effort from the subject, which results in fewer attendance sessions. However, eliminating the subject role seems to eliminate an important part of the NF system. This study investigated the facilitating effect on the theta-to-beta ratio from NF training, using a local sinusoidal extremely low frequency magnetic field (LSELF-MF) versus traditional NF. Twenty-four healthy, intelligent subjects underwent 10 training sessions to enhance beta (15-18 Hz), and simultaneously inhibit theta (4-7 Hz) and high beta (22-30 Hz) activity, at the Cz point in a 3-boat-race video game. Each session consisted of 3 statuses, PRE, DURING, and POST. In the DURING status, the NF training procedure lasted 10 minutes. Subjects were led to believe that they would be exposed to a magnetic field during NF training; however, 16 of the subjects who were assigned to the experimental group were really exposed to 45 Hz-360 mu T LSELF-MF at Cz. For the 8 other subjects, only the coil was located at the Cz point with no exposure. The duty cycle of exposure was 40% (2-second exposure and 3-second pause). The results show that the theta-to-beta ratio in the DURING status of each group differs significantly from the PRE and POST statuses. Between-group analysis shows that the theta-to-beta ratio in the DURING status of the experimental group is significantly (P < .001) lower than in the sham group. The result shows the effect of LSELF-MF on NF training.
机译:传统的神经反馈(NF)是一种训练方法,旨在通过脑电图(EEG)节律作为反馈来改变大脑活动。在NF训练中,诸如受试者的智力之类的外部因素可能会产生影响。相反,低能耗NF系统(LENS)不需要受试者的有意识的努力,从而减少了出勤时间。但是,消除主体角色似乎消除了NF系统的重要组成部分。这项研究调查了使用局部正弦极低频磁场(LSELF-MF)与传统NF相比,NF训练对theta与beta的比率的促进作用。 24名健康,聪明的受试者接受了10次训练,以提高β(15-18 Hz),并同时在3到Cz点抑制theta(4-7 Hz)和高beta(22-30 Hz)活性。赛艇视频游戏。每个会话都包含3个状态,即PRE,DURING和POST。在DURING状态下,NF训练过程持续10分钟。使受试者相信他们在NF训练期间会暴露于磁场中。但是,分配给实验组的16名受试者确实在Cz处暴露于45 Hz-360 mu T LSELF-MF。对于其他8个对象,仅线圈位于Cz点且没有曝光。曝光的占空比为40%(2秒曝光和3秒暂停)。结果表明,每组DURING状态下的theta / beta比率与PRE和POST状态显着不同。组间分析表明,实验组在DURING状态下的theta / beta比值显着(P <.001)低于假手术组。结果显示了LSELF-MF对NF训练的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号