Bibliografía Bio-Cerámica (Bio-cTF)® - Pharma Biozyme
Obtenemos innumerables beneficios de la naturaleza mediante la biotecnología. Hemos desarrollado tres bio-tecnologías que trabajan en sinergia para prestar una solución integral a cualquier problemática. Cada una de ellas tiene una función que en Pharma Biozyme® hemos considerado vital: el tratamiento de agua y líquidos, la emisión de ondas FIR a través de la cerámica y combinaciones de bacterias específicamente diseñadas para cada necesidad. Proponemos soluciones ecológicas, naturales y respetuosas con el medio ambiente. Generamos productos que contibuyen a la descontaminación y desintoxicación del cuerpo, la naturaleza y la indústria. En Pharma Biozyme® nos basamos en los valiosos conocimentos ancestrales combinados con la vanguardia tecnológica.
probiotico, ceramica, posbiotico, fermentos, laboratorio, farmaceutica, ecologico, bio, biologico, biotecnologia, construccion, industria, FIR, far, infrared, salud, antioxidante, agricultura, ganaderia, nutricion, alimentacion
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  1. Leung TK, Huang PJ, Chen YC, Lee CM. Physical-chemical Test Platform for Room Temperature, Far-infrared Ray Emitting Ceramic Materials (cFIR). Journal of the Chinese Chemical Society. 2011;58(5):653-8.

 

  1. Jiang P, Luo L. [The effect of far infrared rays on the survival of randomized skin flap in the rat: an experimental study]. Zhongguo Xiu Fu Chong Jian Wai Ke Za Zhi. 1997;11(2):69-71.

 

  1. Yoo BH, Park CM, Oh TJ, Han SH, Kang HH, Chang IS. Investigation of jewelry powders radiating far-infrared rays and the biological effects on human skin. J Cosmet Sci. 2002;53(3):175-84.

 

  1. Yu SY, Chiu JH, Yang SD, Hsu YC, Lui WY, Wu CW. Biological effect of far-infrared therapy on increasing skin microcirculation in rats. Photodermatol Photoimmunol Photomed. 2006;22(2):78-86.

 

  1. Shigezo S, Tetsuro Y, Tadahiko M, Hiroki T, Tomoki E, Tsunehisa A. Effect of Far-Infrared Light Irradiation on Water as Observed by X-Ray Diffraction Measurements. Japanese Journal of Applied Physics. 2004;43(2):545.

 

  1. Leung T, Lin S, Yang T, Yang J, Lin Y. The Influence of Ceramic Far-Infrared Ray (cFIR) Irradiation on Water Hydrogen Bonding and its Related Chemo-physical Properties. Hydrology Current Research. 2014;5(3):174.

 

  1. Ishikawa M, Fukuzumi S. The first non-enzymatic reduction of acetaldehyde and analogues by an NADH model compound. Journal Of The Chemical Society, Chemical Communications. 1990:1353-5.

 

  1. Maconi E, Griffini A, Cavazzoni V, Aragozzini F. Reduction of acetaldehyde to ethanol by some micro-organisms and its stereospecificity. Biochem J. 1988;250(3):929-32.

 

  1. Leung TK, Lee CM, Tsai SY, Chen YC, Chao JS. A Pilot Study of Ceramic Powder Far-Infrared Ray Irradiation (cFIR) on Physiology: Observation of Cell Cultures and Amphibian Skeletal Muscle. Chin J Physiol. 2011;54(4):247-54.

 

  1. Sato N, Higa T, Sugita S, Shuya M, inventorsSome properties of concrete mixed with effective microorganisms and the on-site investigation of the completed structures. SingaporeSingapore2003.

 

  1. Maeda I, inventor; Scandanavla Home C0. Ltd., Tokyo (JP), assignee. Method of improving durability of a building, building, far-infrared radiation thermal storage floor heating system, and method of improving soil of building lot2001.

 

  1. Vatansever F, Hamblin MR. Far infrared radiation (FIR): its biological effects and medical applications. Photonics Lasers Med. 2012;4:255-66.

 

  1. Leung TK, Lin YS, Lee CM, Chen YC, Shang HF, Hsiao SY, et al. Direct and Indirect Effects of Ceramic Far Infrared Radiation on the Hydrogen Peroxide-scavenging Capacity and on Murine Macrophages under Oxidative Stress. Journal of Medical and Biological Engineering. 2011;31(5):345-51.

 

  1. Leung TK, Chan CF, Lai PS, Yang CH, Hsu CY, Lin YS. Inhibitory Effects of Far-Infrared Irradiation Generated by Ceramic Material on Murine Melanoma Cell Growth. International Journal of Photoenergy. 2012.

 

  1. Leung TK, Chen CH, Lai CH, Lee CM, Chen CC, Yang JC, et al. Bone and Joint Protection Ability of Ceramic Material with Biological Effects. Chinese Journal of Physiology. 2012;55(1):47-54.

 

  1. Ko GD, Berbrayer D. Effect of ceramic-impregnated “thermoflow” gloves on patients with Raynaud’s syndrome: randomized, placebo-controlled study. Altern Med Rev. 2002;7(4):328-35.

 

  1. Leung TK, Lee CM, Lin SL, Wu CH, Chiou JF, Huang PJ, et al. Protective Effect of Non-Ionizing Radiation from Ceramic Far Infrared (cFIR)-Emitting Material Against Oxidative Stress on Human Breast Epithelial Cells. Journal of Medical and Biological Engineering. 2014;34(1):69-75.

 

  1. Inoué S, Kabaya M. Biological activities caused by far-infrared radiation. Int J Biometeorol. 1989;33(3):145-50.

 

  1. Ogita S, Imanaka M, Matsuo S, Takebayashi T, Nakai Y, Fukumasu H, et al. Effects of far-infrared radiation on lactation. Ann Physiol Anthropol. 1990;9(2):83-91.

 

  1. Conrado LA, Munin E. Reduction in body measurements after use of a garment made with synthetic fibers embedded with ceramic nanoparticles. J Cosmet Dermatol. 2011;10(1):30-5.

 

  1. Lee CH, Roh JW, Lim CY, Hong JH, Lee JK, Min EG. A multicenter, randomized, double-blind, placebo-controlled trial evaluating the efficacy and safety of a far infrared-emitting sericite belt in patients with primary dysmenorrhea. Complement Ther Med. 2011;19(4):187-93.

 

  1. Liau BY, Leung TK, Ou MC, Ho CK, Yang AG, Lin YS. Inhibitory Effects of Far-Infrared Ray-Emitting Belts on Primary Dysmenorrhea. International Journal of Photoenergy. 2012.

 

  1. Rao J, Paabo KE, Goldman MP. A double-blinded randomized trial testing the tolerability and efficacy of a novel topical agent with and without occlusion for the treatment of cellulite: a study and review of the literature. J Drugs Dermatol. 2004;3(4):417-25.

 

  1. Rao J, Gold MH, Goldman MP. A two-center, double-blinded, randomized trial testing the tolerability and efficacy of a novel therapeutic agent for cellulite reduction. J Cosmet Dermatol. 2005;4(2):93-102.