Download Biological Effects of Nonionizing Radiation by Karl H. Illinger (Eds.) PDF
By Karl H. Illinger (Eds.)
content material: Electromagnetic-field interplay with organic structures within the microwave and far-infrared zone : actual foundation / K.H. Illinger --
Dielectric homes of water within the microwave and far-infrared areas / E.H. furnish, S. Szwarnowski, and R.J. Sheppard --
Dielectric homes of water in myoglobin resolution / E.H. provide, N.R.V. Nightingale, R.J. Sheppard, and S.R. Gough --
electric reaction of polymers in answer / Robert H. Cole --
Spectroscopic choice of the low-frequency dynamics of organic polymers and cells / L. Genzel, F. Kremer, L. Santo, and S.C. Shen --
Long-range forces in DNA / W.N. Mei, M. Kohli, L.L. Van Zandt, and E.W. Prohofsky --
Calculated microwave absorption via double-helical DNA / M. Kohli, W.N. Mei, L.L. Van Zandt, and E.W. Prohofsky --
Dielectric homes of organic tissue and biophysical mechanisms of electromagnetic-field interplay / H.P. Schwan --
Frequency reaction of membrane elements in nerve axon / Shiro Takashima --
A perturbation version for electromagnetic-field interplay with excitable mobile membranes / Charles A. Cain --
Developmental bioelectricity / Peter J. Ortoleva --
Coherent strategies in organic structures / H. Fröhlich --
Coherent modes in organic platforms : perturbation through exterior fields / Friedemann Kaiser --
The reaction of biochemical response platforms to oscillating stimuli / L.K. Kaczmarek --
Nonlinear impedance and low-frequency dispersion results of a polyelectrolyte lower than excessive sinusoidal fields / Chia-Lun J. Hu and Frank S. Barnes --
Ionic nonequilibrium phenomena in tissue interactions with electromagnetic fields / W.R. Adey --
Calcium ion efflux induction in mind tissue via radiofrequency radiation / C.F. Blackman, W.T. Joines, and J.A. Elder --
The microwave listening to impact / James C. Lin.
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Additional info for Biological Effects of Nonionizing Radiation
E. compromise, rather than improve the credibility of the overall biological statistics), even the purely phenomenological cataloguing of the frequencies of the extrema of the biological response functions for a given system would provide a set of biophysical parameters of considerable interest. While no detailed theoretical models exist at present to analyze (let alone, predict) these frequencies, they may carry fine-grained information on biophysical and biochemical processes in in vivo cellular systems.
ILLINGER EM-Field Interaction with Biological Systems 31 Avj =(v +j )= ±1, AVJ=(VJ+Jj)=0, j-k. A photon-induced transi tion via an external field occurs only for a given fundamental frequency, for ω = ω-, between adjacent vibrational states, v and (v-il). Non-vanishing terms, to higher order in Eq. (28), mechanical anharmonicity, and non-linear terms in the dipolemoment function, Eq. (29), lead to breakdown in these strict selection rules, and frequencies other than the set, ω =ωι,ω2, ω . . ω - .
1979, 34a, 134. ; Ross, J . J . Chem. Phys. 1971, 55, 4378. ; Ross, J . J . Chem. Phys. 1973, 57, 2672. ; Ross, J . Phys. 1973, 58, 3625. ; Ross, J . Chem. Phys. 1974, 60, 3134. ; Turner, H. J . Am. Chem. Soc. 1979, 101, 7463. K. Biophys. Chem. 1976, 4, 249. ; ACS Symposium Series; American Chemical Society: Washington, DC, 1981. 41 42 BIOLOGICAL EFFECTS OF NONIONIZING RADIATION 118. Kaiser, Fr. Phys. Lett. 1977, 62A, 63. 119 . K. "The Bimolecular Lipid Membrane": Van NostrandReinhold, 1972. 120.