首页> 外文期刊>Journal of Signal and Information Processing >Experimentally-Induced Inhibition of Growth in Melanoma Cell Cultures Separated by ~2 Kilometers When Both Share Excess Correlation Magnetic Fields: Macroscopic Evidence of Free-Space Quantum Teleportation?
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Experimentally-Induced Inhibition of Growth in Melanoma Cell Cultures Separated by ~2 Kilometers When Both Share Excess Correlation Magnetic Fields: Macroscopic Evidence of Free-Space Quantum Teleportation?

机译:当双方共享过量的相关磁场时,实验诱导的黑素瘤细胞培养物被约2公里分隔的生长抑制:自由空间量子隐形传态的宏观证据?

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In multiple experiments plates of melanoma cells separated by either 3 m or 1.7 km were placed in the centers of toroids. A specific protocol of changing, angular velocity, pulsed magnetic fields that has been shown to produce excess correlation in photon durations and shift in proton concentrations (pH) in spring water were generated around both plates of cells. Serial injections of 50 μL of standard concentrations of hydrogen peroxide into the “local” plates of cells during the 12 min of field activation produced conspicuous cell death (reduction of viable cells by about 50%) with comparable diminishments of cell numbers in the non-local plates of cells within 24 hr but only if both loci separated by either 3 m or 1.7 km had shared the “excess correlation” magnetic field sequence. The non-local effect did not occur if the magnetic fields had not been present. Higher or lower concentrations of peroxide or concentrations that eliminated all of the cells or very few cells in the local dishes were associated with no significant diminishment of non-local cell growth. The data indicate that there must be a critical number of cells remaining viable following the local chemical reaction for the excess correlation to be manifested in the non-local cells. We suggest that this specific spatial-temporal pattern of fields generated within the paired toroidal geometries promotes transposition of virtual chemical reactions as an information field. Calculations of the energy available per cell and per volume of the quantity of reactants injected into the local space from the intensity of the changing velocity toroidal magnetic field support previous measurements and derivations that the units of information transposition may involve discrete quantities that represent equivalents of photons, electrons and protons.
机译:在多个实验中,将相距3 m或1.7 km的黑色素瘤细胞板置于环形中心。在两块细胞板周围产生了一种特定的变化协议,即角速度,脉冲磁场的变化,该协议已证明会在光子持续时间中产生过多的相关性,并在泉水中产生质子浓度(pH)的变化。在现场激活的12分钟内,将50μL标准浓度的过氧化氢连续注入细胞的“局部”平板中,会导致明显的细胞死亡(存活细胞减少约50%),而非在24小时内,但只有当两个相距3 m或1.7 km的基因座都共享“过量相关”磁场序列时,才可以看到细胞的局部平板。如果不存在磁场,则不会发生非局部效应。过高或过低的过氧化物浓度或消除了培养皿中所有细胞或很少细胞的浓度均与非局部细胞生长没有明显的减少有关。数据表明,在局部化学反应后,必须有一定数量的细胞保持存活,这样才能在非局部细胞中表现出过度的相关性。我们建议在成对的环形几何体中生成的场的这种特定的时空模式促进虚拟化学反应作为信息场的转置。从不断变化的环形磁场的强度计算出的每个单元和注入到本地空间的反应物的体积的可用能量的计算,支持了先前的测量和推论,即信息转置的单位可能涉及代表光子当量的离散量,电子和质子。

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