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Magnetohydrodynamic Approach to Effective Blood-Flow Control Utilizing Extremely Low-Frequency Fields

机译:磁流体动力学方法利用极低频场有效控制血流

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In this paper, we investigated the magnetohydrodynamic effects of extremely low-frequency fields produced by a prototype diverted from an existing alternating magnetic therapy apparatus (AMTA). Diverting the use of a commercial AMTA, we prepared a prototype equipped with two additional coils for twisting the magnetic field of the apparatus. Five healthy male subjects ranging in age from 33 to 68 (two subjects each in their 30s and 40s, and one subject in his 60s) took part in this experiment. The heart beat fluctuation index [LF/HF: low frequency (LF) and high frequency (HF)] was measured with a prefrontal probe every 0.1 s during functional near-infrared spectroscopic (fNIRS) measurement sessions. Our experimental results showed the fact that the proper twisted magnetic fields induced from the prototyped machine were able to control the autonomic nervous system, judging from the LF/HF indexes on fNIRS measurements.
机译:在本文中,我们研究了从现有的交替磁疗仪(AMTA)转移而来的原型所产生的极低频场的磁流体动力学效应。转移了商用AMTA的使用,我们准备了一个原型,该原型配备了两个额外的线圈,用于扭转设备的磁场。五名年龄在33至68岁之间的健康男性受试者(两名分别在30和40多岁的受试者,另一名在60多岁的受试者)参加了该实验。在功能性近红外光谱(fNIRS)测量过程中,每隔0.1 s用前额叶探头测量心跳波动指数[LF / HF:低频(LF)和高频(HF)]。我们的实验结果表明,根据fNIRS测量的LF / HF指数判断,原型机感应的适当扭曲磁场能够控制植物神经系统。

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