Research-Stack/6-Documentation/tiddlywiki-local/wiki/tiddlers/Pathological PIST Shells.tid
Brandon Schneider 70f9b10127 ingest: MS myelin glucose signaling article (2026-05-04)
Brain glucose levels regulate OPC fate: high glucose → proliferation,
low glucose → maturation. Acetyl-CoA from glucose drives histone
acetylation for OPC division; ketone bodies substitute for myelin
synthesis. Ketogenic diet rescues myelin in ACLY-deficient mice.

Connects to: N-Dimensional Gene Hypothesis, PIST polymorphic shifter,
topological state machine, FAMM delay lines, waveprobe manifolds
2026-05-06 23:53:20 -05:00

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created: 20260506230000000
modified: 20260506230000000
tags: ResearchStack Compression Hutter CAD Geometry PIST Shells
title: Pathological PIST Shells
type: text/vnd.tiddlywiki
! Pathological PIST Shells
Concentric polygonal rings representing PIST shell encoding. Each shell k is
drawn as a regular (2k+1)-gon with radius proportional to k. Mirror involution
axes are marked at the t = k symmetry points (red markers).
Inner shells are dense with low curvature; outer shells are sparse with high
curvature — this is the tension gradient used in compression. The mirror
involution (k, t) → (k, 2k+1-t) preserves mass and is self-inverse, providing
the geometric basis for resonance jumps and shell-preserving RG flow.
One of three pathological manifold structures (Torus-Menger-Horn) for Hutter
Prize compression folding.
!! Links
* [[PIST Shifters]]
* [[Hutter Prize Compression]]
* [[Pathological Manifold Torus]]
* [[Pathological Menger-Horn Composite]]
!! Durable Source
`../../3-Mathematical-Models/cad_models/pist_shells.scad`