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Alignment of microscopic particles in electric fields and its biological implications.

机译:微观粒子在电场中的排列及其生物学意义。

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摘要

It is well known that electromagnetic fields cause mechanical forces. If one applies an electrical field to a suspension of microscopic particles, these particles realign themselves along the direction of the field and form pearl-chain-like aggregates. These chains are mostly single stranded but they are frequently multistranded. This phenomenon has been investigated by a number of groups. Here we discuss the dependence of threshold field strength on particle size and frequency. Also, pulsed fields have been thought to be more effective than continuous fields of the same average power in evoking biological effects. Our measurement of the threshold power requirement for the pearl-chain formation indicates that pulsed fields require as much power as continuous fields. The biological significance of pearl-chain formation is briefly discussed.
机译:众所周知,电磁场会引起机械力。如果将电场施加到微小颗粒的悬浮液上,这些颗粒会沿电场方向重新排列并形成珍珠链状聚集体。这些链大多为单链,但通常为多链。许多小组已经研究了这种现象。在这里,我们讨论阈值场强对粒度和频率的依赖性。同样,在产生生物学效应方面,脉冲场被认为比具有相同平均功率的连续场更有效。我们对珍珠链形成的阈值功率要求的测量结果表明,脉冲场所需的功率与连续场所需的功率相同。简要讨论了珍珠链形成的生物学意义。

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