Evaluation of the Physicochemical and Thermal Properties of the Biofield Energy Healing Treated Ofloxacin

A. Branton, M. Trivedi, Dahryn Trivedi, G. Nayak, S. Jana
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引用次数: 9

Abstract

Ofloxacin is a broad-spectrum antibiotic useful for the treatment of many Gram-positive and Gram-negative bacterial infections. The objective of this research work was to evaluate the impact of the Trivedi Effect® on the physicochemical and thermal properties of ofloxacin using modern analytical techniques. The sample was divided into two parts. One part of ofloxacin was considered as the control sample (no biofield energy treatment was provided), whereas the second part was received the Biofield Treatment remotely by a famous Biofield Energy Healer, Alice Branton and was termed as the treated sample. The PXRD peak intensities and crystallite sizes were significantly altered ranging from 7.45% to 73.06% and -44.1% to 77.95%, respectively in the treated sample compared to the control sample. The particle size values were significantly altered at d10 (-19.47%), d50 (1.14%), d90 (-8.70%), and D (4, 3) (-10.20%); whereas, the specific surface area was significantly increased by 15.66% in the treated sample compared to the control sample. The latent heat of fusion and latent heat of decomposition of the treated ofloxacin were significantly increased by 16.24% and 88.03%, respectively compared with the control sample. The total weight loss was significantly decreased by 6.21 %; additionally, the residue amount was significantly increased by 47.16% in the treated ofloxacin compared with the control sample. Thus, the Trivedi Effect® might generate a new polymorphic form of ofloxacin which would be more soluble, bioavailable, and be thermally more stable compared with the untreated sample. The Biofield Treated ofloxacin would be more efficacious against urinary tract infections, infections of the urethra and cervix, infectious diarrhoea, pneumonia, cellulitis, chronic bronchitis, prostatitis, plague, etc.
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生物场能量愈合处理氧氟沙星的理化热性能评价
氧氟沙星是一种广谱抗生素,可用于治疗许多革兰氏阳性和革兰氏阴性细菌感染。本研究的目的是利用现代分析技术评估Trivedi效应®对氧氟沙星理化和热性能的影响。样品分为两部分。其中一部分氧氟沙星作为对照样本(未进行生物场能量处理),另一部分氧氟沙星由著名生物场能量治疗师Alice Branton远程接受生物场治疗,称为处理样本。与对照样品相比,处理后样品的PXRD峰强度和晶粒尺寸分别发生了7.45% ~ 73.06%和-44.1% ~ 77.95%的显著变化。d10(-19.47%)、d50(1.14%)、d90(-8.70%)和D(4,3)(-10.20%)的粒径值变化显著;而处理后的样品比表面积较对照样品显著提高了15.66%。处理后的氧氟沙星溶合潜热和分解潜热较对照分别显著提高16.24%和88.03%。总减重显著降低6.21%;处理后的氧氟沙星的残留量较对照提高了47.16%。因此,Trivedi效应®可能产生一种新的多形性氧氟沙星,与未经处理的样品相比,这种多形性氧氟沙星更具可溶性、生物利用度和热稳定性。经生物场治疗的氧氟沙星对尿路感染、尿道和宫颈感染、感染性腹泻、肺炎、蜂窝组织炎、慢性支气管炎、前列腺炎、鼠疫等更有效。
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