Research
State is not only a label. It has timing, geometry, and movement.
RhythmSync is built around a simple model: a system's state can be represented as movement through coordination space over time.
When organization begins before a shift becomes visible.
Where the system sits in coordination space.
How the system moves before, during, and across transitions.
Three geometries. One movement model.
RhythmSync connects emergence timing, physiological state-space structure, and candidate movement laws into a model of brain-body state movement.
Δt — emergence geometry
Studies when physiological coordination begins to form before a visible shift.
Primitive-law geometry
Tests candidate movement primitives in the 22D physiological state space.
Coordinate-space physiology — state-space geometry
Studies where brain-body states sit within a multidimensional physiological space.
Together, these research lines motivate RhythmSync's core model:
state as movement through physiological coordination space.
Δt shows when coordination emerges. Primitive-law geometry tests how state movement is organized. Coordinate-space physiology shows where the state sits.
Δt shows when. Primitive-law geometry tests how. Coordinate-space physiology shows where.
Measurement engine