Abstract
The main purpose of this manuscript is to introduce a simple tabletop optical microscopy methodology allowing for the display and recording of similarities in electromagnetic energy emission in the animal kingdom, namely the Human Hair Follicles and Lizard’s tail tips energy emissions. This finding includes warm- and cold-blooded specimens. Details of the technique had been developed in 2015 and subsequently published in 2016 is presented. Since then, numerous papers were written, they range from In Vivo experiments documenting the effect of increasing blood alcohol levels in electromagnetic radiation in humans to the present manuscript detailing commonalities found in human hair follicles with spontaneous detached lizards’ tails tips. Essential the technique is the placement of tissue in a single slide preparation (SSP) then covered by drops of diluted Potassium Ferricyanide of formula K3[Fe (CN)6] (Figure 1). For simplicity, in this manuscript the acronyms K3Fe will replace the formula K3[Fe (CN)6]. The intrinsic property of full absorption of incoming electromagnetic radiation by K3Fe triggers crystallization patterns confirming energy emissions of the tissues tested. Images, video-recordings, and selected references to published papers are listed.
Publisher
Granthaalayah Publications and Printers
Reference8 articles.
1. Benjamin J. S., Sahoo, K., and Embi, A. A. (2016). Novel and Simplified Method for Imaging the Electromagnetic Energy in Plant and Animal Tissues. Journal of Nanoscience and Nano engineering, 2 (1), 6-9.
2. Baranov, D. G., Edgar, J. H., Hoffman, T., Bassim, N. and Caldwell, J. D. (2015). Perfect Interferenceless Absorption at Infrared Frequencies by A Van Der Waals Crystal. Physical Review B, 92 (20). https://doi.org/10.1103/PhysRevB.92.201405.
3. Duffy, M.T., Simpson, S.B. Jr., Liebich, D.R., and Davis, B.M., (1991). Origin of Spinal Cord Axons in the Lizard Regenerated Tail : Supernormal Projections from Local Spinal Neurons, J Comp Neurol, 293(2), 208-22. https://doi.org/10.1002/cne.902930205.
4. Embi, A. A. (2022). Introducing Methodology to Detect Dead Tissue Stored Energy. International Journal of Research - Granthaalayah, 10(8), 20–29. https://doi.org/10.29121/granthaalayah.v10.i9.2022.
5. Embi, A.A. (2022). Spontaneous Levitation of Plucked Human Hairs on a Glass Slide When Immersed in Liquid Potassium Ferricyanide, Supporting a Tabletop Microscopy Methodology for the Imaging of Electromagnetic Energy in Plant and Animal Tissue, International Journal of Research - Granthaalayah, 10(7), 106–111. https://doi.org/10.29121/granthaalayah.v10.i9.2022.