A light emitting unit combines UV-B and UV-C LEDs to stimulate vitamin D3 production.
A phototherapy device uses an LED array with a passive heat-conductive support structure to deliver uniform radiation intensity.
Relocating the radial fan to the foot area reduces head noise and cold risk by inverting airflow direction to cool lamps via wall channels.
A companion animal housing unit provides uniform flood illumination for effective phototherapy treatment.
A photobiomodulation system adjusts laser dosage and timing using real-time EEG signals to enhance cerebral oxygenation.
A metal enclosure optical assembly uses an aluminum nitride substrate to conduct heat from the light emitter.
Semi-cylinder barrel-shaped exposition tunnel directs actinic radiation from angled LED arrays to the subject.
A monolithic optical neural probe integrates close-packed dual-color micro-LEDs with recording electrodes to enable precise bi-directional stimulation.
Segmenting the light source from the nasal insert enables self-administration, overcoming the portability limits of invasive deep brain stimulation.
Segmented LED units on a thin film penetrate deep wounds, resolving bulk constraints in traditional therapy devices.
An intraoral phototherapy probe delivers light to pharyngeal tissues using an air gap between the source and shell.
Solid optical rods transmit laser light through resilient foam pads to deliver periodic therapy without skilled operation.
Independent electrode control adjusts current intensity based on skin contact to resolve homogeneity issues in keratin treatment.
Thermal radiating studs transfer LED heat to a passive plate, eliminating fan noise and extending lifespan.
A compact phototherapy apparatus uses a light guide path to direct ultraviolet light through an irradiation window for targeted treatment.
Multi-stage light therapy apparatus adjusts intensity across three phases using white and colored LEDs to improve patient compliance.
A percutaneous port delivers light directly to target tissue, bypassing skin absorption to reduce power requirements for chronic treatment.
Segmented LED modules with local thermal sensors and fans maintain optimal skin temperature, solving uneven heating in retrofitted tanning beds.
A light conversion layer adjusts wavelengths while an adjustable structure defines the light penetrating area, preventing side effects on healthy tissues.