A device activates brown adipose tissue using electrical signals to increase energy expenditure and induce weight loss.
Segmented encapsulation on a flexible substrate reduces fluid ingress paths while maintaining anatomical adaptability.
Programmable instruction sets emulate various implanted stimulators, eliminating the need for separate hardware during therapy evaluation.
Segmented catheter shafts navigate tortuous renal arteries while maintaining stable wall contact for precise thermal neuromodulation.
Adjusting electrode positioning and signal parameters using real-time physiological response detection to achieve selective modulation of the external urethral or anal sphincter.
Cyclical blocking stimuli synchronize with physiological activity to minimize muscle force loss and sensory discomfort.
A programmable state machine framework executes therapy control algorithms on implantable medical devices using configurable parameters.
A therapy delivery device modulates sympathetic nervous system activity to treat menopause-related conditions.