198 Results were found on Technologies
Sub Category Name
Touchless Short-Wave Infrared Imaging for Closed Eyes Pupillometry
Pupillometry, the measurement of pupil size and reactivity, is a critical component in neurological examinations and research. Traditional methods of assessing pupil dynamics are often limited to open-eye conditions and require direct contact, which can be impractical in various clinical settings, such as during sleep studies, anesthesia, or intensive care. The advent of touchless imaging […] Read More >
New Formulation for Repurposing of a Drug to Treat Retinitis Pigmentosa
Heterozygous mutations in the gene encoding the RNA splicing factor pre-mRNA processing factor 31 (PRPF31) have been identified as a major cause of autosomal dominant retinitis pigmentosa (RP), a debilitating and currently incurable blinding disease. The severity and progression of RP vary significantly among patients, with some carriers remaining asymptomatic. Intriguingly, asymptomatic mutation carriers exhibit […] Read More >
Pressure-Absorbing Skin Patch for Preventing Medical Device-Related Pressure Injuries
In the realm of medical device usage within clinical settings, a critical challenge faced is the occurrence of medical device-related pressure injuries (MDRPI). These injuries result from prolonged pressure and shear stress applied by medical devices directly on the patient’s skin, leading to significant discomfort and potential complications. Unmet Need MDRPIs pose a significant risk […] Read More >
Protecting the Diabetic Neuropathic Foot Using Optimized Wound Site Foot-Loading Footwear
Diabetic neuropathic foot ulcers are a common and serious complication of diabetes, leading to significant morbidity and healthcare costs. Current offloading solutions often face challenges in effectively redistributing plantar pressure to prevent ulcer formation. In this context, the development of innovative technologies such as graded stiffness offloading insoles presents a promising approach to address this […] Read More >
Text-Guided Real-World Image Restoration
Capturing images in limited conditions (such as low-light, high dynamic range, etc.) is hard and the resulting images are not good. Since the camera is limited in such scenarios, capturing such scenes becomes difficult. Using a novel image processing method with artificial intelligence (AI) technology the user can talk to the camera and describe the […] Read More >
Calibration of Fiber Optic Sensor Underground
The precise geolocation of underground fiber optic telecom cables is crucial for operator maintenance, to avoid construction-related damage, and to minimize costs during network upgrades. Our innovative calibration technology provides non-instrusive high-accuracy localization of subsurface fiber optic cables, using only video inputs and ambient urban under any noise conditions. In addition, the same data are […] Read More >
Traffic Monitoring Using Fiber Optic Sensor
The rapid development of smart cities and their infrastructure requires innovative solutions for traffic monitoring. Fiber optic sensors offer a high-precision, reliable, anonymous, and cost-effective method for real-time traffic data acquisition and analysis. We have developed an AI-based technology, using fiber-optic sensors for comprehensive traffic monitoring systems, enhancing traffic management and safety. UNMET NEED Current […] Read More >
Accelerated Brain MRI
MRI has become an invaluable tool for diagnostic brain imaging, providing unrivalled qualitative and quantitative information to the radiologist. However, due to long scanning times and capital costs, access to MRI lags behind CT. Typical brain protocols, lasting between 20-50 minutes per patient, set a clear limitation to patient experience, scanner throughput and operation profitability, […] Read More >
Caches With Many Ways: 16-way Associativity for the Price of 2-way Associativity
Cache design must meet many conflicting demands: high hit rates, low cost, low power, low latency and high throughput. We propose a novel cache design for 16-way associativity with cost and power consumption like 2-way associativity. UNMET NEED We propose a novel cache design with the following features: • High effective cache capacity • Misses […] Read More >
Tailorable Sensors for Enzymatic Activity Based on Single-Walled Carbon Nanotubes with a Responsive Corona of Dendron–Polymer Hybrids
We have developed highly modular amphiphilic polymer-dendron hybrids composed of hydrophobic dendrons and hydrophilic linear polymer (e.g. polyethylene glycol (PEG)) that can be synthesized with a high degree of structural precision for suspending SWCNTs in an aqueous solution. Utilizing the susceptibility of the dendritic block of these amphiphiles toward enzymatic degradation, we demonstrated the ability […] Read More >