Mapped to a shared offline runtime family and usable with a recording or compatible ESP32 CSI stream.
Intended capability
Evaluate the sensing evidence for “Rhythmic-motor seizure detection in monitored beds and EMU” in a consented, ground-truthed study. This is not a medical device, clinical monitor, diagnosis, or emergency alert.
This describes the intended outcome. Readiness is shared-family mapped, evidence is class B, and a catalog mapping or recording is not proof of this outcome at a real site.
Solution blueprint
See the environment before installing it.
This exact kit is one of 191 first-class designs. It includes geometry, objects, nodes, wording, scenarios, installation, limitations, and catalog-bound readiness.
No rendered revision is available yet.
Bundled recording
A related Healthcare scene
This is one recorded vertical scenario. It is not separate validation of every capability in the catalog.
01 The physics
Generalized tonic-clonic activity produces a highly periodic, large-amplitude limb/trunk oscillation at ~2-5Hz — a narrowband high-energy micro-Doppler tone far more regular and forceful than normal restless movement.
02 Shared processing path
Micro-Doppler spectral analysis for a sustained 2-5Hz rhythmic peak -> PCA+MVE anomaly manifold to separate seizure rhythmicity from voluntary repetitive motion -> Doppler energy + duration threshold for alert
This is a capability design path. Components may be shared with other catalog entries; it is not presented as a unique algorithm.
03 Validation plan
SenseFi/WiMANS for rhythmic vs. non-rhythmic movement discrimination baseline; own-hardware trials with an actuator/volunteers producing 3Hz rhythmic motion vs. video-EEG-annotated event proxies.
04 Commercial hypothesis
'Nocturnal seizure alert' — for epilepsy/neuro units and SUDEP-risk programs needing camera-free convulsion detection.