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.

Timing

When organization begins before a shift becomes visible.

Geometry

Where the system sits in coordination space.

Trajectory

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