Empirical Mediation of the Primary Mechanism Initiating Protein Conformation in Prion Propagation
p. 292-313
Abstract
Transmissible prion based spongiform encephalopathies propagate by conformational change of the prion's protein, PrP structure. An experimental design, relying on the utility of a new fundamental teleological action principle inherent in the topological geometry of a covariant polarized Dirac vacuum putatively driving self-organization in all autopoietic complex living systems, is developed to elucidate the fundamental nature of this conformational change. Further, PrP propagation is considered a mechanical action that can be described by 'interactive computational modes' of 'topological switching' driven by incursive oscillations occurring in the bioenergetics of the prions physical chemistry when improperly coupled to the long-range coherence of the noetic action. The experimental apparatus, a multi-level interferometer, is designed to focus this noetic field in a manner that simulates the mechanism driving PrP conformation to pathological form.
Index
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References
Bibliographical reference
Min-Ying Jacob Chu and Richard L. Amoroso, « Empirical Mediation of the Primary Mechanism Initiating Protein Conformation in Prion Propagation », CASYS, 22 | 2008, 292-313.
Electronic reference
Min-Ying Jacob Chu and Richard L. Amoroso, « Empirical Mediation of the Primary Mechanism Initiating Protein Conformation in Prion Propagation », CASYS [Online], 22 | 2008, Online since 08 October 2024, connection on 13 November 2024. URL : http://popups.lib.uliege.be/1373-5411/index.php?id=3725
Authors
Min-Ying Jacob Chu
Noetic Advanced Studies Institute - Physics Lab, Oakland, CA 94610-1422 USA
Richard L. Amoroso
Noetic Advanced Studies Institute - Physics Lab, Oakland, CA 94610-1422 USA