Philip is this different than Penrose's and the prof in Arizona, with 
microtubules, and they argued with Tegmark over quantum computing versus 
quantum field?

On Thursday, January 21, 2021 Philip Thrift <[email protected]> 
wrote:


two papers by Willard L. Miranker (1932-2011) 
https://en.wikipedia.org/wiki/Willard_L._Miranker


Consciousness is an Information Field Induced by Hebbian Dynamics
(pdf) https://www.oden.utexas.edu/media/reports/1997/9711.pdf


Abstract: We introduce a field of information associated with the action 
potentials, the latter encoding conventional unconscious neural processing. We 
show that the field generates a dual representation of the neural processing 
which mirrors the information states conveyed by the neural circuitry itself. 
This leads to the claim that the field is the conscious experience of neural 
processing. An explanation for the fitness advantage of consciousness in 
evolution comes as a by-product. We start with the Hebbian synapse whose 
dynamics are interpreted as an atom of awareness, and which is quantified in 
terms of the signature of the time rate of change of synaptic strength. We show 
how the information field is built up out of such atomic constituents. The 
mathematical development shows that consciousness (i.e., the field) arises 
through a coupling of Russelian-like internal (the dual information field) and 
external (the primal action potential) properties of matter. This is contrasted 
with a corresponding duality in quantum mechanics where consciousness itself 
enters as a causal agent. The model presented is falsifiable, and a method for 
verifying it experimentally is suggested.




A Neural Network Wave Formalism
(pdf) 
https://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.594.5921&rep=rep1&type=pdf


Abstract: Using his path integral methodology, Feynman derived the constructs 
of quantum mechanics from the Lagrangian form of Newtonian mechanics. By 
employing a novel Lagrangian form of the canonical neural network equations, we 
derive analogously a complete wave formalism for the information transmission 
in neural networks. 


@philipthrift





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