A flexible neck-worn monitor combines ECG, IPG, PPG, and PCG sensing with chest heating to improve perfusion, comfort, and continuous vital-sign tracking.
Combining ECG, PPG, impedance, and chest heating, this collar sensor replaces multi-machine monitoring with continuous cuffless vital sign tracking.
Periodic sensing and wireless transmission let an implantable pressure and tissue sensor sustain long-term cancer surveillance with harvested energy.
Continuous in-tissue sensing of pressure, pH, lactate, and impedance enables earlier therapy assessment while adaptive power use extends implant operation.
Integrated pH, temperature, bioimpedance, and pulse oximetry sensing keeps measurements aligned with the skin microscope view for richer diagnosis.
Distributed sensors across a wearable housing correct ambient and internal heat effects to improve body temperature accuracy.
A spacer compresses fur and guides light paths to reduce motion artifacts and improve animal heart rate and temperature sensing.
Integrated contact and non-contact thermal sensors in HMDs estimate temperature and respiration without bulky cameras or constant skin contact.
A resilient RF shaft with multiple fluid ports navigates tortuous anatomy, controls ablation depth, and reduces tissue char during sealing.
Dry non-Faradaic EIS measures capacitance and layer thickness without fluids, improving electrochemical sensor quality control and calibration.
A porous carrier with multiplexed temperature sensors maps body heat in absorbent articles without blocking fluid flow or increasing skin irritation.
Dry non-Faradaic EIS measures capacitance, thickness, composition, and architecture of sensor layers without fluid handling for manufacturing quality control.
Sound and vibration sensors transmit AV fistula data for remote inspection, helping detect dysfunction without frequent in-person examinations.
Existing sweat monitoring methods can miss sodium and potassium ions; segmented working and reference electrodes enable detection on a flexible substrate.
Helmet-based physiological sensing analyzes blood oxygenation in real time and generates alerts through bone-conducting transducers.
Flexible chest sensing maintains secure heart-rate and temperature monitoring during movement.
Track shivering and sweating episodes to reconstruct fever curves without invasive CBT sensing.
Peripheral sensors and graphite spread heat across TTFields electrodes for safer current delivery.
Layered footwear insert uses high resistance sensors to monitor pressure and temperature, alerting users to tissue inflammation risks.
Arranging blood oxygen emitters around a shielded receiver reduces infrared light interference to improve heart rate monitoring accuracy.
A wearable earring uses dual temperature sensors to detect external ear and ambient heat for physiological event tracking.
Segmented scintillator sensors detect radiation levels to calibrate afterloader source position, preventing healthy tissue irradiation.
Thermochromic clothing displays body temperature through color shifts, alerting wearers to overheating risks without complex electronics.
Embedded pressure and force sensors detect respiratory events to calculate hypoxia burden scores, eliminating cumbersome invasive monitoring equipment.
An implanted magnetic sensor tracks prosthesis migration via field strength changes, eliminating radiation exposure from x-ray imaging.
A flexible film sensor unit uses segmented electronics to enable easy detachment and reuse while maintaining secure skin attachment.
A vehicle-integrated temperature sensor detects passenger body heat and transmits data to a central server for analysis.
A wearable device estimates body temperature using dual sensors and a mathematical compensation model.
A modular wound monitoring device uses a separable drive unit with multiple temperature sensors to track periwound heat changes.
A core body temperature sensor uses a thermoresistant structure and multiple sensors to extrapolate internal temperature from surface measurements.
Activation elements detect infrared transmittance of probe covers to ensure accurate temperature readings.
A contactless sleep tracking device uses low-power radar to detect user movement transitions into sleep or awake states.
Infrared thermal sensors detect poultry head temperature to replace invasive rectal thermometers and improve measurement accuracy.
A thermometer unit calculates core temperature using skin temperature and heat flux measurements.
Segmented electrodes with thermal insulation and multiple sensors detect interface temperatures accurately, preventing tissue damage from orientation effects.
A multi-site temperature monitoring system uses thermal blocks to measure core body temperature.
A thermal energy storage surface structure contacts a mammal body section to capture localized temperature variations via direct sensing.
A heat flux sensor uses an amplifier to boost voltage differences between spaced temperature sensors for precise body temperature estimation.
A transabdominal fetal oximetry system uses adaptive duty cycles to modulate light emission intensity.
EMG sensors detect muscle oxygen depletion through signal power analysis, enabling early ischemia identification before irreversible tissue damage occurs.