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对暴露于极低频电场的脑组织微小机械振动的测量。

Measurement of small mechanical vibrations of brain tissue exposed to extremely-low-frequency electric fields.

作者信息

Spiegel R J, Ali J S, Peoples J F, Joines W T

出版信息

Bioelectromagnetics. 1986;7(3):295-306. doi: 10.1002/bem.2250070306.

Abstract

Electromagnetic fields can interact with biological tissue both electrically and mechanically. This study investigated the mechanical interaction between brain tissue and an extremely-low-frequency (ELF) electric field by measuring the resultant vibrational amplitude. The exposure cell is a section of X-band waveguide that was modified by the addition of a center conductor to form a small TEM cell within the waveguide structure. The ELF signal is applied to the center conductor of the TEM cell. The applied ELF electric field generates an electrostrictive force on the surface of the brain tissue. This force causes the tissue to vibrate at a frequency equal to twice the frequency of the applied sinusoidal signal. An X-band signal is fed through the waveguide, scattered by the vibrating sample, and detected by a phase-sensitive receiver. Using a time-averaging spectrum analyzer, a vibration sensitivity of approximately 0.2 nmp-p can be achieved. The amplitude of the brain tissue vibrational response is constant for vibrational frequencies below 50 Hz; between 50 and 200 Hz resonant phenomena were observed; and above 200 Hz the amplitude fall-off is rapid.

摘要

电磁场能够与生物组织发生电相互作用和机械相互作用。本研究通过测量合成振动幅度,对脑组织与极低频(ELF)电场之间的机械相互作用进行了研究。暴露室是一段X波段波导,通过添加中心导体进行了改造,以便在波导结构内形成一个小型横电磁波(TEM)室。ELF信号施加到TEM室的中心导体上。所施加的ELF电场在脑组织表面产生电致伸缩力。该力使组织以等于所施加正弦信号频率两倍的频率振动。一个X波段信号通过波导馈入,被振动样本散射,并由一个相敏接收器检测。使用时间平均频谱分析仪,可实现约0.2 nmp-p的振动灵敏度。对于低于50 Hz的振动频率,脑组织振动响应的幅度是恒定的;在50至200 Hz之间观察到了共振现象;而在200 Hz以上,幅度迅速下降。

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