Project Grant R21EB037731
- This $395,695 federal Project Grant award from the National Institute of Biomedical Imaging and Bioengineering (NIBIB) under the Discovery and Applied Research for Technological Innovations to Improve Human Health program (CFDA 93.286) aims to develop novel multi-modal ultrasound imaging methods for non-invasive, real-time monitoring of tissue healing and early prognosis. The project will investigate new prognostic markers related to vascular and interstitial fluid transport mechanisms to assess...
- This $100,000 Project Grant from the National Science Foundation's Technology, Innovation, and Partnerships program will support the development of an advanced wound care technology at Florida International University. Specifically, the university will create a bandage-integrated platform that provides feedback-mediated wound therapy to enable personalized care. The conformable platform is designed to non-invasively monitor multiple wound biomarkers in spatial detail and then apply targeted...
- The National Institute of General Medical Sciences (NIGMS) awarded a $349,910 Project Grant under CFDA 93.859 - Biomedical Research and Research Training program to Perfusio Corp. for the development of a "Multi-Spectral AI/ML Powered Burn and Wound Evaluation Technology Using a Cost-Effective Handheld Device". The project aims to create a portable, affordable, and user-friendly device that can provide real-time, dynamic physiologic data to medical providers for accurate assessment...
- This $613,124 Project Grant award from the National Institute of Biomedical Imaging and Bioengineering (NIBIB) under the Discovery and Applied Research for Technological Innovations to Improve Human Health program (CFDA 93.286) will support research and development of a new quantitative phase imaging technology for real-time, noninvasive capillaroscopy. The key innovation is the use of phase imaging meta-sensors (PIMSS) that can simultaneously resolve phase and amplitude contrast in a single...
- The National Institute of Biomedical Imaging and Bioengineering (NIBIB) awarded a $435,372 Project Grant under the "Discovery and Applied Research for Technological Innovations to Improve Human Health" (CFDA 93.286) program to the Board of Regents of the University of Nebraska, through its University of Nebraska Medical Center (UNMC) division. The grant aims to develop a novel and efficacious electrotaxis system to enhance chronic wound healing. Chronic wounds affect 1-2% of the U.S....
- This Project Grant award from the National Institute of Biomedical Imaging and Bioengineering (NIBIB), under the Discovery and Applied Research for Technological Innovations to Improve Human Health program (CFDA 93.286), is focused on developing a next-generation photoacoustic computed tomography device for non-invasive monitoring of brain oxygen metabolism. The $249,000 award, spanning July 2025 to June 2028, aims to design, fabricate, and validate a handheld photoacoustic imaging device that...
- The University of Wisconsin System was awarded a $469,766 Project Grant from the National Institute of Arthritis and Musculoskeletal and Skin Diseases (NIAMS) under the Arthritis, Musculoskeletal and Skin Diseases Research program (CFDA 93.846). The objective is to obtain a cellular-level understanding of how nanogenerator-driven electrical stimulation (NG-ES) can accelerate wound healing under normal and ischemic conditions, and identify the optimal signal and device design to deliver the...
- The federal Project Grant award from the National Institute of Biomedical Imaging and Bioengineering (NIBIB), under the Discovery and Applied Research for Technological Innovations to Improve Human Health program (CFDA 93.286), aims to develop an automated, nursing-informed solution to improve early detection of pressure injuries (PIs) using thermal imaging (thermography). The $598,617 award to Emory University will collect and validate a robust dataset of thermal and optical images from over...
- This $350,000 National Science Foundation project grant supports research at the University of Virginia from October 1, 2022 to September 30, 2025 under the NSF Engineering program (CFDA 47.041). The research aims to advance understanding of the effects of microgravity on wound healing processes by leveraging a sensor-integrated 3D tissue culture model. Specifically, the project will explore dynamic changes in gene and protein expression, endothelial network formation, and extracellular matrix...
- This $250,000 National Science Foundation project grant supports the development of a microneedle-mediated adaptive phototherapy wound dressing by the University of South Florida from October 1, 2022 to November 30, 2024. The dressing integrates self-diagnosis and treatment tailored to wound conditions without external electronics or medical professionals. Microstructured microneedles act as optical waveguides to deliver localized blue or red light therapy at wound sites, changing wavelength...
This Project Grant award from the National Institute of Biomedical Imaging and Bioengineering (NIBIB), under the Discovery and Applied Research for Technological Innovations to Improve Human Health program (CFDA 93.286), aims to improve the assessment of cutaneous wound healing by quantitatively measuring biomarkers of vascular perfusion and hypoxia. The University of Wisconsin-Madison is the awardee, receiving $427,625 for this 2-year project from September 1, 2025 to August 31, 2027. The researchers will utilize photoacoustic imaging (PAI) to evaluate wound healing in pre-clinical models, developing dynamic contrast-enhanced PAI to measure vascular perfusion and oxygen-sensitive PAI to assess tissue oxygenation. The goal is to demonstrate that combining these PAI measurements can enhance wound healing diagnosis compared to single parameter evaluations, advancing the understanding and diagnosis of this important health condition.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $427.6k | 8/8/25 |