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Effect of the short-term magnetic stimulation by rTMS on P300 latency

机译:短期磁刺激对RTMS对P300延迟的影响

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The purpose of this study is to investigate the effect of P300 latency in case of magnetic stimulation to human brain by rTMS. This stimulation is 100 pulses with 1 Hz or 0.5 Hz low-frequency. The stimulation points are left-right SMG and left-right DLPFC. In case of 1 Hz magnetic stimulation to left SMG, P300 latency after the magnetic stimulation was shorter than P300 latency before the magnetic stimulation. In case of 1 Hz low-frequency magnetic stimulation to left DLPFC, P300 latency after the magnetic stimulation was later than before the magnetic stimulation. In case of 0.5 Hz low-frequency magnetic stimulation to left SMG, the delay of P300 latency was observed. Generally, in the low-frequency magnetic stimulation equal to or less than 1 Hz, the brain activity is inhibited by stimulating the brain. The activity of left SMG is excited at 1 Hz and inhibited at 0.5 Hz. As this reason, at first, in this study, the frequency of the magnetic stimulation is just 1 Hz and this frequency is border of low-frequency and high-frequency. Secondarily, the sensitivity for the magnetic stimulation varies by parts of brain. Therefore, this study suggests that left SMG is activated by the short-term magnetic stimulation using rTMS (1 Hz, 100 pulses).
机译:本研究的目的是通过RTMS探讨P300潜伏期的影响。该刺激是100个具有1 Hz或0.5Hz的脉冲的低频。刺激点是左右SMG和左右的DLPFC。在左下SMG的情况下,在磁刺激之后P300等待时间比磁刺激之前的P300延迟短。如果在磁刺激之后的磁刺激以前左侧DLPFC,P300延迟的情况下,在磁刺激之后的情况下为1 Hz低频磁刺激。在左下SMG对0.5Hz的低频磁刺激的情况下,观察到P300等待时间的延迟。通常,在等于或小于1Hz的低频磁刺激中,通过刺激脑来抑制脑活动。左侧SMG的活性在1 Hz激发并抑制在0.5Hz。因此,首先,在本研究中,磁刺激的频率仅为1 Hz,并且该频率是低频和高频的边界。其次,磁刺激的灵敏度因脑部的部分而异。因此,本研究表明,使用RTMS(1 Hz,100个脉冲)的短期磁刺激激活左SMG。

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