A head-worn platform integrates eye imaging devices and head orientation sensors to measure ocular parameters.
Optical sensors replace invasive electrodes to resolve the trade-off between surgical complexity and measurement precision, enabling nuanced user interactions.
An inclined infrared camera captures pupillary images without light interference, enabling objective neurological assessment in resource-constrained settings.
A diagnostic system measures acoustic startle reflexes using electromyography electrodes to capture objective physiological data.
A heart rate monitor calculates instantaneous relaxation values from electrocardiogram timing instants.
Chirp auditory stimulation enhances gamma ASSR signal-to-noise ratio, enabling objective depression diagnosis without subjective symptomatology.
Detects and filters system artifacts and eye blink regions from low-resolution EEG signals to improve cognitive load measurement accuracy.