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Integrated Sigma Dynamics Quantum Energy Therapy Presented by Mathematical Function and Matrices in Immunologic Stimulation
Author(s) -
Einstein George P,
Tulp Orien Lee
Publication year - 2017
Publication title -
the faseb journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.709
H-Index - 277
eISSN - 1530-6860
pISSN - 0892-6638
DOI - 10.1096/fasebj.31.1_supplement.lb805
Subject(s) - hypothalamus , vasopressin , dopamine , endocrinology , serotonin , medicine , norepinephrine , chemistry , hormone , stimulation , neuroscience , biophysics , biology , receptor
Neuron function can very easily be disrupted by toxic substances in the bloodstream. For this reason, brain capillary cells bind together very tightly to form a blood‐brain barrier (BBB). Only some lipid (fat) soluble molecules and molecules that are actively transported (like glucose) can enter the brain from the bloodstream across the BBB. Unlike muscle, which can burn fat, the brain gets virtually all of its energy from glucose under normal physiologic conditions.. Although the brain represents only 2% of body weight, at rest it consumes 20% of the body's oxygen. Chemical communication between neurons in the brain often does not follow a sharp distinction between neurotransmission and hormone action. Brain transmitter substances include norepinephrine, acetylcholine, serotonin, vasopressin, endorphin, glutamate, dopamine, GABA, etc. The list is very long. The peptide (amino‐acid chain) vasopressin acts as a neurotransmitter in the hypothalamus, but when released into the bloodstream, it causes arteries to constrict and reduces water‐excretion by the kidneys (hence its other name: antidiuretic hormone ). Administered to laboratory animals, vasopressin markedly improves the memory of learned tasks. The implications of the neuronal dynamics we studied experimentally and applied G. P Einstein Mathematical Functions Model based on QUANTUM Mechanics equation: 7 E = h · c / λ f = c / λ ,where E is the energy, h is Planck's constant, c is the speed of light, and λ is the wavelength. Thus, G. P. Einstein Mathematical Model of Effective Therapy can be presented as: 8 d Σ IQBET /dt 1 > d Σ IQBPDE /dt 2where: d ∑ I Q B E T ‐ derivative ∑ Integrated Quantum Bioelectromagnetic Energy Therapy d ∑ I Q B P D ‐ derivative ∑ Integrated Quantum Bioelectromagnetic Pathological Destructive Energy. dt 1 – derivative of time of therapy dt 2 ‐ derivative of time of pathological destructive energy he Sigma Integrated Quantum Energy Therapy is presented as: 9 3 Σ I . Q . T = Σ BEM ‐ Phy . QE × Σ BEM ‐ CHQE × Σ BEM ‐ Phy . QEWhere: 3 ∑ I.Q.T‐3 ∑ Integrated Quantum Therapies ∑BEM‐Phy.QE – ∑ Bio ‐ Physical Quantum Energy Therapy ∑BEM‐CHQE – ∑ Bio ‐ Chemical Quantum Energy Therapy ∑BEM‐PNQE – ∑ Bio‐Psycho ‐ Neuro Quantum Energy Therapy The tuning the integrative Quantum Neural Energy Therapy is presented by Variable of Matrixes of ∑ Bio ‐ Physical Quantum Energy Therapy (∑BEM‐Phy.QE), ∑ Bio ‐ Chemical Quantum Energy Therapy (∑BEM‐CHQE), and ∑ Bio‐Psycho ‐ Neuro Quantum Energy Therapy (∑BEM‐CHQE). The general neuron model has biophysical and biochemical nature in physiological processes and signaling (G.P. Einstein 2000) . For complete effective integrated therapy we include the psycho‐neural energy (G. P. Einstein 2010) The applications of ∑BEM‐Phy.QE Therapy was conducted by G.P. Einstein team on US Patented Apparatus. The applications of ∑BEM‐PN.QE Therapy was conducted by G.P. Einstein team on Brain Monitored Apparatus. The applications of ∑BEM‐CH.QE Therapy was conducted by applications Natural Extracts and Macrobiotics Nutrients for HIV as well as for cancer. Support or Funding Information Institutional Support from Einstein Medical Institute and USAT College of Medicine, Montserrat, BWI.