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RF nonlinear interactions in living cells-II: Detection methods for spectral signatures.

机译:活细胞中的RF非线性相互作用-II:频谱特征的检测方法。

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The presence of harmonic products due to possible nonlinear interaction of amplitude modulated RF signals in living cells is best detected by using a cavity with high quality factor. Harmonic products generated by elementary oscillators can be trapped and accumulated in a cavity, permitting detection sensitivity much greater than in an open environment, where they would be radiated in all directions. The experimental method described herein is a systematic approach to detection of the non-Planck RF energy (if any) emitted by an exposed sample of living cells. Balzano and Sheppard [Balzano and Sheppard (2003): Bioelectromagnetics 24:473-482] classified the non-Planck RF emissions from living cells as coming from (1) nonlinear interactions and (2) inelastic interactions. Nonlinear harmonic products would appear in the band at twice the frequency of an amplitude modulated RF carrier. Inelastic interaction products resulting from the interaction between the incident RF energy and normally occurring mechanical vibrations are found in the band immediately adjacent to the carrier. Detection of the latter signals is difficult because of this close spectral proximity, for example, 1 part in 10(7) for 100 Hz modulation of a GHz carrier. Modern audio spectrum analyzers have excellent selectivity, providing 60 dB rejections only 2 kHz away from the carrier. By judicious selection of the amplitude modulation (AM) frequency, frequency of the RF carrier, and size of the biological sample, it is possible to achieve very high sensitivity (about -90 dBm) with commercially available instrumentation. The presence (or absence) of harmonics in the band adjacent to the amplitude modulated RF carrier would establish (or negate) the existence of coherent interactions between mechanical vibrations in the cell ensemble and the incident RF signal. Bioelectromagnetics 24:483-488, 2003.
机译:通过使用具有高品质因数的腔体,可以最好地检测到由于活细胞中振幅调制RF信号可能发生非线性相互作用而导致的谐波产物的存在。由基本振荡器产生的谐波产物可被捕获并积聚在空腔中,从而使检测灵敏度比在敞开的环境中要大得多,在敞开的环境中,它们会向各个方向辐射。本文所述的实验方法是检测暴露的活细胞样品发射的非普朗克RF能量(如果有)的系统方法。 Balzano and Sheppard [Balzano and Sheppard(2003):Bioelectromagnetics 24:473-482]将活细胞的非普朗克RF排放归因于(1)非线性相互作用和(2)非弹性相互作用。非线性谐波产物将以调幅射频载波频率两倍的频率出现在频带中。在紧邻载波的频段中发现了入射射频能量与正常发生的机械振动之间的相互作用所导致的非弹性相互作用产物。后一种信号的检测非常困难,因为它的频谱接近度很高,例如,对于GHz载波的100 Hz调制,十分之一(10(7))。现代音频频谱分析仪具有出色的选择性,仅在距载波2 kHz处提供60 dB抑制。通过明智地选择幅度调制(AM)频率,RF载波的频率和生物样品的大小,可以使用市售仪器实现非常高的灵敏度(大约-90 dBm)。与调幅的RF载波相邻的频带中谐波的存在(或不存在)将建立(或消除)小区整体中的机械振动与入射RF信号之间的相干相互作用。生物电磁学24:483-488,2003。

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