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    This was brought to you by:

    block this user Mahendra Kumar Trivedi

    Independent researcher / mahendra@trivedisrl.com

    Las Vegas Naveda
    Trivedi Global Inc.
    Trivedi Science Research Laboratory Pvt. Ltd

    Effect of Biofield Treatment on Physical, Thermal, and Spectral Properties of SFRE 199-1 Mammalian Cell Culture Medium

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    SFRE 199-1 medium (SFRE-M) is important mammalian cell culture medium, used for the culture of primarycells of mammals such as baboon kidney cells. The present study was attempted to evaluate the impact of biofield energytreatment on the physical, thermal and spectral properties of SFRE-M. The study was accomplished in two groups; one was setas control while another was subjected to Mr. Trivedi’s biofield energy treatment and coded as treated group. Subsequently, thecontrol and treated samples were analyzed using various analytical techniques. The CHNO analysis showed about 2.16, 4.87,and 5.89% decrease in percent contents of carbon, hydrogen, and oxygen, respectively; while 9.49% increase in nitrogencontents of treated sample as compared to the control. X-ray diffraction (XRD) analysis showed 7.23% decrease in crystallitesize of treated sample as compared to the control. The thermogravimetric analysis (TGA) analysis showed the increase in onsettemperature of thermal degradation by 19.61% in treated sample with respect to the control. The control sample showed the48.63% weight loss during the thermal degradation temperature (Tmax) while the treated sample showed only 13.62% weightloss during the Tmax. The differential scanning calorimetry (DSC) analysis showed the 62.58% increase in the latent heat offusion of treated sample with respect to the control sample. The Fourier transform infrared spectroscopy (FT-IR) spectrum oftreated SFRE-M showed the alteration in the wavenumber of C-O, C-N and C-H vibrations in the treated sample as comparedto the control. Altogether, the XRD, TGA-DTG, DSC, and FT-IR analysis suggest that Mr. Trivedi’s biofield energy treatmenthas the impact on physical, thermal and spectral properties of SFRE-M. The treated SFRE-M was more thermal stable than thecontrol SFRE-M and can be used as the better culture media for mammalian cell culture.

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    Description

    Title : Effect of Biofield Treatment on Physical, Thermal, and Spectral Properties of SFRE 199-1 Mammalian Cell Culture Medium
    Author(s) : Mahendra Kumar Trivedi
    Abstract : SFRE 199-1 medium (SFRE-M) is important mammalian cell culture medium, used for the culture of primarycells of mammals such as baboon kidney cells. The present study was attempted to evaluate the impact of biofield energytreatment on the physical, thermal and spectral properties of SFRE-M. The study was accomplished in two groups; one was setas control while another was subjected to Mr. Trivedi’s biofield energy treatment and coded as treated group. Subsequently, thecontrol and treated samples were analyzed using various analytical techniques. The CHNO analysis showed about 2.16, 4.87,and 5.89% decrease in percent contents of carbon, hydrogen, and oxygen, respectively; while 9.49% increase in nitrogencontents of treated sample as compared to the control. X-ray diffraction (XRD) analysis showed 7.23% decrease in crystallitesize of treated sample as compared to the control. The thermogravimetric analysis (TGA) analysis showed the increase in onsettemperature of thermal degradation by 19.61% in treated sample with respect to the control. The control sample showed the48.63% weight loss during the thermal degradation temperature (Tmax) while the treated sample showed only 13.62% weightloss during the Tmax. The differential scanning calorimetry (DSC) analysis showed the 62.58% increase in the latent heat offusion of treated sample with respect to the control sample. The Fourier transform infrared spectroscopy (FT-IR) spectrum oftreated SFRE-M showed the alteration in the wavenumber of C-O, C-N and C-H vibrations in the treated sample as comparedto the control. Altogether, the XRD, TGA-DTG, DSC, and FT-IR analysis suggest that Mr. Trivedi’s biofield energy treatmenthas the impact on physical, thermal and spectral properties of SFRE-M. The treated SFRE-M was more thermal stable than thecontrol SFRE-M and can be used as the better culture media for mammalian cell culture.
    Keywords : Biofield Energy Treatment, SFRE-Medium, Elemental Analysis, X-ray Diffraction,Fourier Transform Infrared Spectroscopy,SFRE 199-1,spectral properties of SFRE-M,TrivediEffect,The Trivedi Effect, Mahendra Kumar Trivedi,Mahendra Trivedi

    Subject : pharmaceutical
    Area : Open Access
    Language : English
    Year : 2015

    Affiliations Trivedi Global Inc.
    Trivedi Science Research Laboratory Pvt. Ltd
    Journal : Advances in Biochemistry
    Volume : 3
    Issue : 6
    Publisher : Science PG
    Url : http://trivediscience.com/publications/pharmaceuticals-publications/effect-of-biofield-treatment-on-physical-thermal-and-spectral-properties-of-sfre-199-1-mammalian-cell-culture-medium/
    Doi : 10.11648/j.ab.20150306.13

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    Mahendra's Peer Evaluation activity

    Downloads 28692
    Views 162
    Following... 21
    • Alejandro Engelmann, Independent researcher, Library, Swedish University of Agricultural Sciences, Uppsala, Sweden.
    • Selma Dorrestein, Student, Master Level, University of Amsterdam.
    • Francisco Herrera, Publisher, UNIVERSITY OF GRANADA.
    • Ralf Steinmetz, Professor, university.
    • Gregory Dudek, Professor, McGill University, School of Computer Science, Montreal, Canada.
    • Umberto Straccia, Senior Research Fellow, ISTI - CNR.
    • Sorin Cotofana, Associate Professor, Deft University of Technology, Faculty of Electrical Engineeting, Mathematics, and Computer Science. Computer Engineering, Delft, The Netherlands.
    • Stefan Trausan-Matu, Professor, Computer Science Department, Politehnica University of Bucharest, Research Institute for Artificial Intelligence.
    • Jean Quisquater, Professor, UCL Crypto Group.
    • Markus Jakobsson, Principal Research Fellow, PayPal, FatSkunk, Indiana University.
    • Michael Elad, Professor, Technion - Israel institute of Technology.
    • Andrew Lumsdaine, Professor, Indiana University.
    • Mikael Nilsson, Student, Ph.D. Level, Royal Institute of Technology, Stockholm, Sweden.
    • Emilie Combet, Lecturer, MVLS, University of Glasgow, Glasgow, Centre for Population and Health Sciences, Life-course Nutrition and Health.
    • Werner Muller, Professor, Faculty of Life Science, University of Manchester, Manchester.
    • Syam Mohan, Senior Research Fellow, Pharmacology, University of Malaya, Malaysia.
    • Ramy K Aziz, Lecturer, Department of Microbiology and Immunology, Faculty of Pharmacy, Cairo University, Cairo, Egypt.
    • Paweł K. Jędrzejko, Associate Professor, Department of American and Canadian Studies of the Institute of English Cultures and Literatures, University of Silesia in Katowice, Poland.
    • Nader Ale Ebrahim, Independent researcher, Research Support Unit, Centre of Research Services, Institute of Research Management and Monitoring (IPPP), University of Malaya, Malaysia.
    • Kelli Barr, Student, Ph.D. Level, Department of Philosophy and Religion Studies, University of North Texas, Denton, TX.
    • Pandelis Perakakis, Post Doctorate, Economics department, Universitet Jaume I, Castellon.

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