A retinal imaging system uses wavefront sensors and interferometers to measure optical aberrations before generating the final image beam.
A non-invasive diagnostic system detects toxin exposure through real-time ocular characteristic analysis.
A binocular eye fundus viewing system uses a single-pass light path through an adjustable lens to generate high-quality aerial images.
A two-stage alignment system uses face and anterior segment imaging to position an ophthalmic examination unit.
Optical interference filters reject crystalline lens autofluorescence to improve image contrast and signal-to-noise ratio.
Real-time feedback from an SLO device compensates for eye movements, reducing artefacts and improving OCT angiography accuracy.
Automated OCT processing generates precise membrane masks overlaid on surgical views, eliminating toxic dye staining and procedural complexity.
Optical coherence tomography captures retinal images while light sources deliver specific stimulation sequences to map functional responses.