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A range of fields over the spectrum in a cell colony may control the timing of its cell cycle

机译:细胞集落的光谱范围内的多个区域可以控制其细胞周期的时间

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A range of EM and vibrational fields across the spectrum initiated by the dielectric response of biological tissues in a colony of cells may control the timing of its cell cycle. The basis of these fields in biological tissues is the energy slide across the spectrum of their permittivity. The main features of the various field mechanisms within the cell cycle are: (1) an initial charge alignment caused by the energy slide due to the tissue permittivity of the colony; (2) a collective feedback between the colony and the central cell; (3) a superposition of fields that can act simultaneously; (4) a speedup in this initial electrostatic field due to the energy slide; (5) a diffusion and self-organization of dipolar membrane proteins near the cell's polar caps; (6) various resonances across the spectrum including the whole cell; (7) the rounding and stiffening of the cell as metaphase is approached; this enables the various specialized fields required to locate the aster poles, the centrosomes, and the microtubules; (8) a possible resonance of the chromosomes (chromatids) acting as loop antennas when the cells begin communicating with each other via UV; (9) a magnetic field that may assist in replicating the chromatid.
机译:由细胞群落中生物组织的介电响应引发的整个光谱范围内的一系列EM和振动场可以控制其细胞周期的时间。生物组织中这些场的基础是能量在其介电常数谱中的滑动。细胞周期内各种场机制的主要特征是:(1)由于集落的组织介电常数而由能量滑动引起的初始电荷排列; (2)菌落与中央细胞之间的集体反馈; (3)可以同时作用的场的叠加; (4)由于能量滑动而使该初始静电场加速。 (5)偶极膜蛋白在细胞极帽附近的扩散和自组织; (6)包括整个细胞在内的整个频谱的各种共振; (7)细胞接近中期时变圆和变硬;这使得能够定位星号杆,中心体和微管所需的各种专业领域; (8)当细胞开始通过紫外线彼此通信时,作为环形天线的染色体(染色单体)可能发生共振; (9)可能有助于复制染色单体的磁场。

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