This case dynamically sets maximum force output by sound class, improving hearing performance while limiting power use and shutdown risk.
This case integrates backfilling and weld protection channels to seal an implantable enclosure without damaging internal components.
This case uses tolerance-guided amplitude increases across treatment to improve response beyond fixed-amplitude TMS.
A metallic enclosure slot antenna supports wireless links while preserving hermetic sealing.
ECM pouches encase electrical implants, moderating healing and reducing inflammation, infection, and thrombogenesis.
A concave, resilient housing surface conforms to skin curvature, distributing magnetic pressure for secure, comfortable retention.
Oppositely wound conductive threads integrate electromagnetic shielding and Joule heating into flexible, skin-adhesive kinesiology tape.
This case uses electrical radiative coupling to power a miniature neural implant, removing batteries and enabling percutaneous delivery.
Biodegradable elastomeric layers help retain variable-size CIEDs and regulate release of antibiotics over time.
A catheter electroporation system uses timed, opposite-polarity pulses to ablate tissue while limiting muscle excitation and gas generation.
Surfactant-enhanced ivermectin formulations target neurological disorders with fewer side effects.
A flexible catheter follows a guidewire into the hypertrophied septum, enabling controlled RF ablation while limiting tissue damage.
Networked treatment settings help patients use electrode pads correctly at home while therapists support accurate pulsed RF delivery.
A handheld microwave applicator uses a metasurface waveguide to distribute energy and control skin heating depth.
A planar implant magnet uses rotatable, parallel dipole alignment to reduce MRI torque and demagnetization while preserving fixation.
A reader and POS terminal associate prescription data with a neurostimulator for controlled provisioning, refilling, and dose-based mode switching.
Varying magnet strengths and orientations improve headpiece retention while reducing tissue necrosis risk for cochlear implant users.
Neural processing helps hearing devices separate speech from noise with minimal audible distortion.
Accelerometer-based position monitoring triggers adaptive haptic feedback to improve therapy compliance without disturbing bed partners.
This case uses localized, non-thermal pulses to reduce mucus hypersecretion while limiting inflammation and preserving airway tissue.
Natural-language control expressions trigger automatic audio adjustments, helping users adapt discreetly across noisy environments.
Closed-loop brain-wave detection adjusts delays and auditory stimulation to enhance slow oscillations across varied subjects.
This case uses timed pulse bursts and transformer saturation to vary stimulus intensity while reducing collar size, weight, and power use.
A pulsed electromagnetic treatment device uses separate circuits and coil units to vary frequency and intensity, reducing desensitization.
This case combines alternating electric fields with Notch1 inhibition to sensitize cancer cells and reduce recurrence.
An OMS wound therapy device combines optical and magnetic stimulation while shielding the circuit and light source from interference.
A nested collet, bearings, and spring secure implantable leads while simplifying release and reducing noise from improper torquing.
This case combines 40–250 kHz AC stimulation with electrode spacing and warming to support ingredient penetration and skin lifting.
IP validation, encryption, and proximity pairing protect implantable biomedical communications while enabling controlled remote updates.