Nature and structure of NTA Traditional Homeopathically Manufactured Medicines.

M. Wassenhoven, Martine Goyens, Pierre Dorfman
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Abstract

Background: Research using several different methods has demonstrated the materiality, including nanoparticles (NPs) and molecular shapes, in High Homeopathic Potentizations (HHPs). This presentation is a summary of all the evidence gathered by the DynHom research project. Methods: We used the Nuclear Magnetic Resonance (NMR), Nano Tracking Analyzer (NTA), Electronic microscopy (SEM-EDX), Infrared spectroscopy (FTIR), pH measurements to examine dilutions of commonly used homeopathic medicines and controls. The homeopathic medicines tested were specially prepared according to the European pharmacopoeia standards. We compared the homeopathic dilutions/dynamizations with simple dilutions and solvents controls. Results: We observed specific NMR profiles, the presence of particles with specific size distribution and electric fields, dry material (crystals) with a specific molecular structure even more obvious in HHPs. Conclusion: Homeopathic medicines do contain particles with a specific size distribution even in HHPs diluted beyond the Avogadro/Loschmidt limit. They also contain molecules in particular concentrations according to each source material. This specificity can be attributed to the manufacturing and potentization process. This material demonstrates that the step-by-step process (dynamized or not) does not match the theoretical expectations in a dilution process. The starting material, the type of containers and dilution/dynamization method influence the nature and concentration of these NPs.
NTA 传统顺势疗法药物的性质和结构。
背景:使用多种不同方法进行的研究已经证明了高顺势药效(HHPs)的物质性,包括纳米颗粒(NPs)和分子形状。本报告总结了 DynHom 研究项目收集的所有证据。研究方法我们使用核磁共振 (NMR)、纳米跟踪分析仪 (NTA)、电子显微镜 (SEM-EDX)、红外光谱 (FTIR)、pH 值测量来检测常用顺势疗法药物的稀释液和对照组。测试的顺势疗法药物是根据欧洲药典标准专门配制的。我们将顺势疗法稀释液/动力法与简单稀释液和溶剂对照进行了比较。结果:我们观察到了特定的核磁共振图谱、具有特定大小分布和电场的颗粒、具有特定分子结构的干物质(晶体),在 HHPs 中更为明显。结论:顺势疗法药物确实含有具有特定大小分布的颗粒,即使在稀释度超过阿伏加德罗/洛施密特极限的 HHPs 中也是如此。根据不同的原料,它们还含有特定浓度的分子。这种特异性可归因于制造和增效过程。这种材料表明,在稀释过程中,按部就班的过程(动态或非动态)并不符合理论预期。起始材料、容器类型和稀释/动态化方法都会影响这些 NPs 的性质和浓度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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