alfaMAIA
End-to-end diagnostic and informatics platform covering whole chain from sampling to the medical report utilizing two AI systems for rapid prognosis of septic patients.
Movement-Synchronous Electrical Stimulation for Remote Patient Physical Therapy Assistance and Monitoring
Articulate Labs builds wearable medical devices that amplify muscle growth throughout everyday activity to help patients conquer functional limitations and to restore physical capability, starting with the knee.
Omni-Cool-Breath: A Smart Air-Conditioned Mask
The automatic temperature-controllable mask offers cool air and easy breathing in the mask microclimate for consumers demanding greater comfort and protection under COVID-19 and professionals working in hazardous environments. It reduces temperature by 12°C and humidity by 65% under low voltage via an innovative miniature thermoelectric cooling system.
Antimicrobial thermoplastic polyurethane for medical devices
Inhibit Coatings produce highly effective antimicrobial thermoplastic polyurethanes, which show activity against gram positive, gram negative, antibiotic resistant bacteria, and viruses. The application of our technology into medical devices will reduce incidences of infections caused by these dangerous pathogens, resulting in better patient outcomes.
VestAid: Augmenting Vestibular Rehabilitation Therapy
Successful vestibular rehabilitation (commonly for dizziness) is dependent on patient performance of prescribed at-home gaze stabilization exercises. VestAid is a tablet-based solution that guides patients through these exercises, quantifies performance and compliance, and provides actionable insights to patients and therapists. Through VestAid, we will accelerate the improvement of vestibular patients.
MedPad - A Wearable Data Storage device to support transport of computable data as a patient moves
A wearable data storage device that enables computable data, images, audio and video files to move securely and quickly with a wounded warrior/patient ensuring that critical care information is where and when it is needed by care teams as they are moved and transported from austere locations.
A low sample volume and rapid viscosity sensor for early stage injectability/manufacturability detection of biopharmaceuticals
QATCH developed an acoustic microfluidic viscometer that can tell a formulation is injectable/manufacturable at high concentrations using a tiny drop in 5 minutes. Using this tools, biopharma researchers can select molecules that can become injections early in drug development.
FlowSense™
FlowSense, is a platform wireless, noninvasive wearable skin sensor can detect the presence and magnitude of fluid flow (i.e. blood, lymph and cerebrospinal fluid) in patients with chronic conditions starting with hydrocephalus. Its miniaturized, thin construction is like a bandage which can be used in the hospital and home.
Feelix - A Connected Remote Monitoring System
Sonavi Labs is on a mission to improve patient outcomes globally by combining the most advanced acoustic technology available with clinically proven diagnostic AI software. Sonavi Labs created Feelix, a telehealth system that features apps and patented hardware embedded with diagnostic software capable of diagnosing and remotely managing respiratory diseases.
A 3D printed scalable bioreactor for manufacturing of cells and cell derived exosome, proteins, and vaccine
The technology is to develop a new device which can be used in advanced manufacturing of cells and cell-derived products for regenerative and reconstructive therapeutics, injectables and implantable products, cancer and pandemic treatments, and other applications.
SurgiField
SurgiField is an ultraportable operating room that fits in a backpack. It offers protection by reducing exposure of surgeons to patient bodily fluids and protecting patients from the surrounding environment. Within hospitals our solution increases operational throughput and decreases cost, and it provides sterility where there is no surgical facility.
Vital Metrix Noninvasive Cardiac Output Measurement
Vital Metrix has developed a non-invasive cardiac output measurement system that is based on analyzing the optical waveform produced by a pulse oximeter. We use model-based data acquisition and AI techniques to correlate the time-varying pleth waveform with pulsatile pressure and blood flow rate.