1 A.A. Karasev et al. as verified by documents LET Medical, Research Laboratory of Medical Electronics, Taganrog (Russia), 1990
2 Dorland’s Illustrated Medical Dictionary, WB Saunders and Company, Philadelphia, Penn. 2004
3 B. Scholz, R. Anderson. On Electrical Impedance Scanning-Principals and Simulations, Electromedica 68 – onco 2000
4 Clark, W. M., Oxidation-Reduction Potentials of Organic Systems, Williams & Wilkins Company, Baltimore, Maryland, 1960.
5 Carter, D., Philips, A., Silver, J., Measurement of Oxidation-Reduction Potentials and pH of Tissues, J. Physiol., 129:33, 1955.
6 Lehninger Alfred, Principles of Biochemistry, Second Edition Oxidation Reduction Reactions, p.384- 393, World Publishers, New York N.Y., 1993
7 Ingold, W, Redox Measurement Principles and Problems, INGOLD, Urdorf, Switzerland, 1982.
8 Cheng, N, The effect of Electric Currents on ATP Generation, Protein Synthesis, And Membrane Transport in Rat Skin. Clin. Orthopedics & Rel Res 1982; 171: 264-272
9 Lehninger Alfred, Principles of Biochemistry, Second Edition isoprenoids p.256-595, World Publishers, New York N.Y., 1993
10 Willis, W. D. The Pain System, Basel: Karger, 1985.
11 Willis, W. D., Jr., and Coggeshall, R. E., Sensory Mechanisms of the Spinal Cord., New York: Plenum, 1991.
12 JD Levine, HL Fields and AI Basbaum Peptides and the primary afferent nociceptor Journal of Neuroscience, Vol. 13, 2273-2286, 1993
13 Sing Shu Ma, Review: Neurobiology of Acupuncture Toward: CAM, eCAM 2004; 1(1)41-47
14 Sing Shu Ma, Shuang Chen, Nitric Oxide In Gracile Nucleus Mediates Depressor Response to Acupuncture (ST36), J Neurophys. 90 780-785, April 2003
15 Han JS, Zhang M, and Ren MF. The effect of spinal transection on acupuncture analgesia and morphine analgesia. Kexue Tongbao 31: 710–715, 1986.
16 Ma Sx, Review: A Novel Signal Pathway, Nitric Oxide mediates acupuncture induced neuronal activity and analgesia in the dorsal medulla-thalamic tract. First World Congress on Chinese Medicine2003; 95:A7
17 Ashmarin I.P., Obuchova M.F. Content of regulative peptides in the brain cortex and their central activity, “Highest nervous activity”, v.35, No.2, p. 211-221.
18 Ramachandran. GN; Reddi, AH; BioChemistry of Collagen, Plenum Press, NY
19 Mae-Wan Ho Ph.D., David P. Knight Ph.D. The Acupuncture system and The Liquid Crystalline Collagen Fibres of the Connective Tissues Liquid Crystalline Meridians American Journal of Complementary Medicine (in press)
20 McWilliams Charles MD, The Biophysical Properties Of The Transdermal Measurement, White Paper for International Society for Electrodermatologists, April 11, 2003
21 Gray, Henry, Gray’s Anatomy of the Human Body, Myology. 2. Development of the Muscles. 1918. Philadelphia: Lea & Febiger, 1918 New York: Bartleby.Com, 2000
22 Langevin HM, Yandow JA, Relationship of acupuncture points and meridians to connective tissue planes., Anat Rec. 2002 Dec 15;269(6):257-65 PMID: 12467083
23 Cocilovo A., Colored light therapy: overview of its history, theory, recent developments and clinical applications combined with acupuncture. Am J Acupunct. 1999;27(1-2):71-83.
24 Dr. Gregory T. Lawton, Toward a Unified Understanding of the Bioelectrical Activity Associated with Connective Tissue Regeneration, MMAA Article, 2003 Michigan Medical Acupuncture Association. Muskegon, Michigan
25 Becker, Robert O, The Body Electric, William Morrow and Co., New York. 1985
26 Nordenström, Björn E.W., Biologically closed electric circuits; clinical, experimental and theoretical evidence for an additional circulatory system, Nordic Medical Publications: Stockholm, Sweden, 1983.
27 Foster, K. R., Schwan, H. P.: Dielectric Properties of Tissues and Biological Materials: A Critical Review. Critical Reviews in Biomedical Engineering 1989; Vol. 17, Issue I:25-104.
28 Stuchly, M. A., Stuchly, S. S., Electrical Properties of Biological Substances. Biological Effects and Medical Applications of Electromagnetic Energy, Ed. Om P. Gandhi, Prentice Hall Inc., Eaglewood Cliffs, NJ, USA, 1990.
29 Morucci, J. P., Valentinuzzi, M. E., Rigaud, B., Felice, C. J.,Chauveau, N., Marsili, P. M.: Bioelectrical Impedance Techniques inMedicine. Critical Reviews in Biomedical Engineering, Vol. 24, Issues4-6:275, Begell House Inc., Congers, NY, USA, 1996
30 Ward LC, Bunce IH, Cornish BH, Mirolo BR, Thomas BJ, Jones LC., Multi-frequency bioelectrical impedance augments the diagnosis and management of lymphoedema in post-mastectomy patients. Eur J Clin Invest. 1992 Nov; 22(11):751-4.
31 Cheng, N., The effects of electric currents on ATP Generation, Protein Synthesis, and membrane transport in rat skin. Orth Surg. 1982
32 LeonovA.V. Rehabilitation of the vegetal-vascular disturbance in children and adults with usage of TMB-1 and reflexo-diagnostic set "Rista-EPD"/Comp. "SCENAR-therapy and SCENAR-expertise", Iss.3, Taganrog 1997 -
33 Eric R. Kandel, James H. Schwartz, Thomas M. Jessell, Principles of Neuroscience Fourth Edition, McGraw Hill New York, NY 2000
34 Leonard Kaczmarek, Ph.D., Mitochondrial voltage and neural connections, Yale Medicine Newsletter Spring 2002, New Haven Conn.
35 Bob Charman, Complementary Therapies for Physical Therapists Electrical Properties of Cells and Tissues, Butterworth-Heinemann/ Elsevier Books Linacre House Jordan Hill Oxford OX2DP (Note: this is a great discussion on the electrical properties of cells and is available free of charge at:
http://www.industryinet.com/~ruby/electpropcells.html srw)
36 C. Gabriel, S. Gabriel and E. Corthout, “The dielectric properties of biological tissues: I., II, III Literature survey,” Physics in Medicine and Biology 41(11), 2231-2294(Nov. 1996).
37 Pilla, A. Electrochemical information transfer at cell surfaces and junctions - application to the study and manipulation of cell regulation. In: Keyzer, H. & Gutman, F (eds) Bioelectrochemistry. New York: Plenum Publishing; 1980:353-396.
38 Pilla, A. & Margles. G Dynamic interfacial electrochemical phenomena at living cell membranes: Application to the toad urinary bladder membrane system. J. Electrochem. Soc. 124:1697, 1977.
39 Fredrick Van Goor, Lazar Z. Krsmanovic, Kevin J. Catt and Stanko S. Stojilkovic Control of Action Potential-Driven Calcium Influx in GT1 Neurons by the Activation Status of Sodium and Calcium Channels Molecular Endocrinology 13 (4): 587-603 1999
40 Behrendt D, Ganz P., Endothelial function. From vascular biology to clinical applications. Am J Cardiol. 2002 Nov 21;90(10C):40L-48L
41 Salvador Moncada, and Annie Higgs, Review Article Mechanisms of Disease, The L-Arginine-Nitric Oxide Pathway, NEJM Volume 329:2002-2012 Number 27 December 30, 1993
42 Cirino, G., S. Fiorucci, et al. (2003). "Endothelial nitric oxide synthase: the Cinderella of inflammation?" Trends Pharmacol Sci 24(2): 91-5.
43 Davies, C. A., S. A. Rocks, et al. (2003). "Analysis of nitrite and nitrate in the study of inflammation." Methods Mol Biol 225: 305-20.
44 H. Koprowski, H. Maeda, The Role of Nitric Oxide in Physiology and Pathophys -iology (Current Topics in Microbiology and Immunology, Vol. 196) Springer-Verlag Telos ISBN: 0-387-58214-201 February, 1995
45 Kaada B. Vasodilation induced by transcutaneous nerve stimulation in peripheral ischemia (Raynaud’s phenomenon and diabetic polyneropathy). Eur Heart J 3: 303–314, 1982.
46 Kaada B and Eieben O. In search of mediators of skin vasodilation induced by transcutaneous nerve stimulation. II. Serotonin implicated. Gen Parmacol 14: 635–664, 1983.
47 Richard E. Klabunde, Ph.D., Cardiovascular Physiology Concepts, Nitric Oxide, Lippincott Williams & Wilkins, 2004 (www.cvphysiology.com)
48 T. Ishine, J.-G. Yu, Y. Asada, and T. J.-F. Lee, Nitric Oxide Is the Predominant Mediator for Neurogenic Vasodilation in Porcine Pial Veins, J. Pharmacol. Exp. Ther., April 1, 1999; 289(1): 398 - 404.