Key result
Koku Universe framework provides a unified theoretical basis for cardiac tissue fabrication specifications.
Proposes a novel theoretical physics framework with claimed applications in deriving geometric specifications for cardiac tissue engineering.
Does not support changes in cardiac tissue engineering; leaves open the framework's applicability pending empirical validation.
This Compendium presents five connected papers demonstrating that ALL of classical mechanics, electromagnetism, nuclear force, and quantum uncertainty emerge from a single master equation: F = ∇(1/N). Starting from one observation — 'Distant is slow, Near is fast' (遠くは遅く、近くは速い) — the Koku Universe (U = T x G) unifies: distance as layer density (v_t ∝ 1/N), all classical forces (lever, centrifugal, inertia), action-reaction as geometric necessity, friction as aggregate micro-interfaces, and electromagnetism, nuclear force, quantum uncertainty. Furthermore, this framework provides the theoretical basis for KHDS v1.0: the world's first engineering specification for cardiac tissue fabrication derived from universal geometric principles (capillary: 7um, ventricular wall: 1mm). One universe. One principle. One axis. The geometry was here before the institutions. The institutions will follow. Part of TheYKHC Koku Universe Research Series.
No takes yet. Share an insight, caveat, or question.
Yoshimitsu Katayama (2026) studied this question. Koku Universe framework was evaluated. The Koku Universe framework unifies classical and quantum physics from a single master equation, providing a theoretical basis for cardiac tissue fabrication specifications.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: