Integrative Biophysics: Biophotonics
Fritz-Albert Popp, Lev Beloussov, L.V. Beloussov
Springer Science & Business Media, Feb 28, 2003 - Science - 503 pages
Biophotonics is a rapidly increasing field of current scientific research and applications, based on the discovery of biophotons, a permanent, weak photon current emanating from all living systems. The biophoton emission reflects some, if not all, of the essential biological and physiological activities in biological systems. Biophotonics provides a powerful tool for investigating these electromagnetic interactions. The theoretical approach requires holistic models of living systems, rather than local analytical models. Consequently, these new insights into living matter create a new basis of "integrative biophysics" that is concerned with the questions of regulation, communication and organization of biological systems.
Most of the specialists working in this interdisciplinary field of physics, biology, biophysics and medicine are associated with "The International Institute of Biophysics" (IIB), in Neuss, Germany, where basic research and possibilities for applications are coordinated. The growth in this field is indicated by the increase in financial support, interest from the scientific community and frequency of publications.
Audience: The scientists of IIB have presented the most essential background and applications of biophotonics in these lecture notes in biophysics, based on the summer school lectures by this group. This book is devoted to questions of elementary biophysics, as well as current developments and applications. It will be of interest to graduate and postgraduate students, life scientists, and the responsible officials of industries and governments looking for non-invasive methods of investigating biological tissues.
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"Duality of cytochrome-oxidase. Proliferation (growth) and Differentiation (maturation) cell." Cytochrome-oxidase is present in two forms, depending on the context of acid-base internal environment : 1.- Form acidic (acidosis), which contains two Iron atoms, will be red, will absorb the additional green energy of the hydrogen atom, derived from carbohydrates, with formation of H2O, metabolic context that will promote cell proliferation. 2.-Form alkaline (alkalosis), containing two copper atoms, will be green, will absorb the additional red energy of the carbon atom, derived from carbohydrates, with formation of CO2, metabolic context that will promote cell differentiation. " Chlorophyll and hemoglobin, pigments life, porphyrin structure, differ only by the green chlorophyll, due to the atom of magnesium, and red hemoglobin, due to iron atoms in the structure - PROOF OF ORIGIN COMMON LIFE." (HEILMEYER ) Please make possible this experiment , under your auspices, because they are one and exceeds my abilities. Please get involved in identifying the green form of ferment of Warburg. Red form has identified himself. Cytochrome-oxidase structure has two atoms of copper. It is known that in conditions of acidosis (oxidative potential), the principle electronegativity metals, copper is removed from combinations of the Iron. So cytochrome oxidase will contain two atoms of iron instead of copper atoms, which changes its oxidation-reduction potential, but (most important), and color. If the copper was green, the iron is red, which radically change its absorption spectrum, based on the principle of complementary colors. Normality consists of alternating the two forms of cytochrome oxidase by successive passage of acid in the alkaline form, in terms of acid-basic balance maintained within normal limits. I imagine that for an experiment that does not make one.
With your permission I submit to you. I would be very happy if this experiment were done under your leadership. What do you think about this experiment :
TWO PLANTS, A RED LIGHT ONLY(CORAILLE), IN BASIC MEDIUM, WITH ADDED COOPER, WILL GROW, FLOWER AND FRUIT WILL SHORT TIME, AND THE OTHER ONLY LIGHT GREEN (TOURQUOISE), IN AN ACID MEDIUM, WITH ADDED COOPER CHELATOR ( CUPRENIL ), WHICH GROWS THROUGHOUT WILL NOT GROW FLOWERS AND FRUIT WILL DO.
I SUGGEST TO YOU AN EXPERIMENT:
CULTURE OF NEOPLASTIC TISSUE IN A GREEN CONTAINER OR IN A COLOURLESS CONTAINER, IRRADIATED WITH MONOCHROMATIC GREEN LIGHT, IN AN ALKALINE MEDIUM, WITH ADDED COOPER, WILL IN REGRESSION OF THE TISSUE CULTURE.
CULTURE OF NEOPLASTIC TISSUE IN A RED CONTAINER, OR SINGLE IRRADIATED WITH RED LIGHT, IN AN ACID MEDIUM, WITH ADDED COOPER CHELATOR (CUPRENIL), WILL LEAD TO EXAGERATED AND ANARCHICAL MULTIPLICATION. Malignant transformation occurs by energy metabolism imbalance in power generation purposes in the predominantly (exclusively) of the hydrogen atom of carbon oxidation is impossible. Thus at the cellular level will produce a multiplication (growth) exaggerated (exclusive), energy from hydrogen favoring growth, multiplication, at the expense of differentiation (maturation). Differentiation is achieved by energy obtained by oxidation of the carbon atom can not take, leading to carcinogenesis . The energy metabolism of the cell, an energy source is carbohydrate degradation, which is done by OXIDATIVE DEHYDROGENATION AND OXIDATIVE DECARBOXYLATION , to obtain energy and CO2 and H2O. In normal cells there is a balance between the two energy sources. If cancer cells, oxidation of the carbon atom is not possible, the cell being forced to summarize the only
DEVELOPMENTAL BIOLOGY AND PHYSICS OF TODAY
CELLULAR AND MOLECULAR ASPECTS OF INTEGRATIVE BIOPHYSICS
PHYSICAL BASIS AND APPLICATIONS OF DELAYED LUMINESCENCE
BIOLOGICAL EFFECTS OF ELECTROMAGNETIC FIELDS ON LIVING CELLS
DETECTORS FOR THE QUANTIZED ELECTROMAGNETIC FIELD
DETECTION OF PHOTON EMISSION FROM BIOLOGICAL SYSTEMS
PHOTON EMISSION FROM PERTURBED AND DYING ORGANISMS THE CONCEPT OF PHOTON CYCLING IN BIOLOGICAL SYSTEMS
MITOGENETIC RADIATION BIOPHOTONS AND NONLINEAR OXIDATIVE PROCESSES IN AQUEOUS MEDIA
BIOPHOTONS ULTRAWEAK PHOTONS IN CELLS
BIOPHOTONS BACKGROUND EXPERIMENTAL RESULTS THEORETICAL APPROACH AND APPLICATIONS
THE PHYSICAL BASIS OF LIFE
DEFINITION OF CONSCIOUSNESS IMPOSSIBLE AND UNNECESSARY?