2001
DOI: 10.1081/jbc-100104145
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Bio-Response to White Noise Excitation

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Cited by 35 publications
(23 citation statements)
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References 23 publications
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“…The 1/f noise does not change by the smoothing (cutting of high frequencies) of the function, and the Rich-man-Moorman entropy of pink-noise is scale-independent in a definite interval, it is constant and could characterize the homeostasis. The results are in perfect harmony with the others obtained by the other methods [10] [11], and applied to living systems [12].…”
Section: Resultssupporting
confidence: 87%
“…The 1/f noise does not change by the smoothing (cutting of high frequencies) of the function, and the Rich-man-Moorman entropy of pink-noise is scale-independent in a definite interval, it is constant and could characterize the homeostasis. The results are in perfect harmony with the others obtained by the other methods [10] [11], and applied to living systems [12].…”
Section: Resultssupporting
confidence: 87%
“…The modulated electrohyperthermia heating (mEHT) was made by capacitive arrangement, using the fractal physiology achievements [41,42]. The mice were placed in between the plan-parallel electrodes in asymmetric arrangement [3].…”
Section: Electric Field Heating Treatmentmentioning
confidence: 99%
“…Because the effective power-density of pink-noise is constant in all the characteristic scales, the Gaussian pink-noise then has maximal entropy in all scales. The living system has a special fractal dynamism (Goldberger et al, 2001) in consequence of its self-similar stochastic behavior it fluctuates by pink-noise, (Szendro et al, 2001a;Vincze, 1971). The maximal entropy of Gaussian pink-noise allows an important conclusion: the noise of the living state has maximal entropy (stable dynamic equilibrium) in all of its characteristic scales.…”
Section: Thermodynamics Of Self-similar Processesmentioning
confidence: 98%