90.10. MedBed及其对培养肠上皮细胞和功能性中性粒细胞的影响

P. Dartsch
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摘要

背景:量子纠缠是理论物理学中的一种现象,当粒子对或粒子群产生时,即使粒子相隔很远,每个粒子的量子态也不能独立于其他粒子来描述。材料与方法:90.10。MedBed是一个与90.10量子纠缠的虚拟床。-CUBE由量子处理器9010MedBedOS实现。90.10。-CUBE位于墨西哥的Akumal Quintana Roo,距离进行试验的细胞培养实验室有8603公里的空中距离。90.10。MedBed是一个与90.10量子纠缠的虚拟床。-CUBE由量子处理器9010MedBedOS实现。通过90.10的过程。量子纠缠,90.10。CUBE的基本电位转移到90.10。medb。目前对肠上皮细胞和功能性中性粒细胞的体外研究-在实验室条件下而不是在床上-培养皿中的种子细胞与90.10量子纠缠。MedBed,即该系统安装在培养皿上并在实验室中启动以进行研究。对照培养皿不处理,与处理培养皿保持至少30至40厘米的距离,在同一培养箱中孵育。结果:肠上皮细胞有较好的再生过程,90.10。MedBed能够促进肠细胞层的愈合过程,从而促进肠道和系统的健康和福祉。第二个以功能性中性粒细胞作为炎症介导细胞的实验系列表明,暴露于90.10时,活性超氧阴离子自由基的产生显着减少。MedBed量子纠缠。在体内,这种影响可能对复杂继发性伤口的愈合过程或直接(慢性)炎症过程产生积极影响。结论:结果清楚地证明了90.10的有效性。MedBed与90.10量子纠缠。-CUBE由量子处理器9010MedBedOS在细胞水平上完成。该结果证实并补充了先前关于90.10效应的发现。量子纠缠在培养的器官特异性细胞中,我们证明了培养的结缔组织成纤维细胞的再生增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
90.10. MedBed and its Effect on Cultivated Intestinal Epithelial Cells and Functional Neutrophils
Background: Quantum entanglement is a phenomenon in theoretical physics that happens when pairs or groups of particles are generated in such a way that the quantum state of each particle cannot be described independently of the others even when the particles are separated by a large distance. Material and methods: The 90.10. MedBed is a virtual bed that is quantum entangled with a 90.10.-CUBE by a quantum processor, the 9010MedBedOS. The 90.10.-CUBE was located in Akumal Quintana Roo, Mexico, 8,603 kilometers air-line distance from the cell culture laboratory conducting the tests. The 90.10. MedBed is a virtual bed that is quantum entangled with a 90.10.-CUBE by a quantum processor, the 9010MedBedOS. By the process of 90.10. quantum entanglement, the 90.10. CUBE’s basic potential is transferred to the 90.10. MedBed. For the present in vitro-study with intestinal epithelial cells and functional neutrophils – at laboratory conditions instead of a bed – seeded cells in the culture dishes were quantum entangled with the 90.10. MedBed, i.e. the system was installed on the dishes and activated in the laboratory to conduct the study. Control dishes were not treated and were incubated in the same incubator with a distance of at least 30 to 40 cm to the treated dishes. Results: For intestinal epithelial cells, a better regeneration process was determined demonstrating that 90.10. MedBed was able to promote healing processes of the intestinal cell layer and, thus, to promote intestinal and systemic health and wellbeing. The second experimental series with functional neutrophils as inflammationmediating cells demonstrated a marked decrease in the generation of reactive superoxide anion radicals by exposure to 90.10. MedBed quantum entanglement. In vivo, this influence might have a positive impact on the healing process of complicated secondary wounds or on (chronic) inflammatory processes directly. Conclusions: The results clearly demonstrate the effectiveness of the 90.10. MedBed which was quantum entangled with a 90.10.-CUBE by a quantum processor, the 9010MedBedOS, on the cellular level. The results confirm and complement previous findings on the effect of 90.10. quantum entanglement on cultured organ-specific cells in which we demonstrated an increased regeneration of cultured connective tissue fibroblasts.
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