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The Award database is continually updated throughout the year. As a result, data for FY24 is not expected to be complete until March, 2025.

Download all SBIR.gov award data either with award abstracts (290MB) or without award abstracts (65MB). A data dictionary and additional information is located on the Data Resource Page. Files are refreshed monthly.

The SBIR.gov award data files now contain the required fields to calculate award timeliness for individual awards or for an agency or branch. Additional information on calculating award timeliness is available on the Data Resource Page.

  1. Production of Inactivated Virus Vaccines Using Supralethal Irradiation

    SBC: BIOLOGICAL MIMETICS, INC.            Topic: DTRA14B002

    We seek a proof-of-concept study for the development of a new platform technology for the rapid and complete inactivation of pathogen infectivity for vaccine development of medically important micro-organisms (e.g. viruses, bacteria and parasites). A recently discovered reconstituted Mn+2-decapeptide phosphate complex (Mn-Dp-Pi) of the radiation-resistant bacterium Deinococcus radiodurans was foun ...

    STTR Phase I 2015 Department of DefenseDefense Threat Reduction Agency
  2. A Novel, Microscale, Distributable Sensor Technology for Ionizing Radiation

    SBC: CFD RESEARCH CORPORATION            Topic: DTRA14B004

    Terrorist use of radioactive nuclear materials via nuclear and/or radiological dispersion devices (dirty bombs) is a serious threat. Therefore, it is critical to detect the proliferation of nuclear material. Critical challenges facing this objective include: (a) high sensitivity detection of signature emissions (e.g., gamma rays) from common radioactive isotopes behind shielding, and (b) cost-effe ...

    STTR Phase I 2015 Department of DefenseDefense Threat Reduction Agency
  3. High Fidelity Computational Models for Aggregated Tissue Interaction in Surgical Simulations

    SBC: CFD RESEARCH CORPORATION            Topic: DHP16A001

    Surgical simulations aiming to support surgeon practices and medical education have attracted enormous research effort over the last two decades. However, the physical reality, especially on simulating aggregated tissue interaction, is still unsatisfactory. In this proposed work, an open source surgery simulation framework, SoFMIS, will be utilized and enhanced with tissue interaction models to a ...

    STTR Phase I 2016 Department of DefenseDefense Health Agency
  4. Infectious Disease Diagnostics and Differentiation of Viral vs. Bacterial Infections for Point of Care Applications

    SBC: GENECAPTURE, INC.            Topic: CBD15C001

    The modern warfighter faces the constant threat of endemic infections, multi-drug resistant bacteria and Biological Warfare Agents. In order to provide accurate front-line treatment that will curtail the overuse of antibiotics, a rapid and robust molecula

    STTR Phase I 2016 Department of DefenseOffice for Chemical and Biological Defense
  5. Innovative Mitigation of Radiation Effects in Advanced Technology Nodes

    SBC: RELIABLE MICROSYSTEMS LLC            Topic: DTRA16A003

    Establish a radiation-aware analysis capability in a commercial EDA design flow that will enable first-pass success in radiation-hardened by design (RHBD) for DoD ASICs in much the same way that existing EDA design suites ensure first pass functionality and performance success of complex ASICs destined for commercial applications. Layout-aware, calibrated single-event radiation models that captur ...

    STTR Phase I 2016 Department of DefenseDefense Threat Reduction Agency
  6. Modeling of Polytonic Dose Response Relationships

    SBC: LipoSeuticals Inc            Topic: DHP16C001

    Dose response relationships are fundamental to pharmacology and many other fields. Increasingly, scientists are encountering polytonic dose response relationships. These relationships are not well-characterized by linear and s-shaped models. Our team has extended the traditional 4 parameter logistic model by replacing the dose parameter with the quadratic function as an effective dose function. Th ...

    STTR Phase I 2017 Department of DefenseDefense Health Agency
  7. Medical Electro-Textile Sensor Simulation

    SBC: LR TECHNOLOGIES, Inc.            Topic: DHA17A001

    LRT proposed to design a EMF detection system using future textile materials for combat uniforms. The sensor and signal processing design will be evaluated in phase I.

    STTR Phase I 2017 Department of DefenseDefense Health Agency
  8. PTSD SleepAid: A Circadian Rhythm Monitoring and Regulation system for patients with PTSD

    SBC: Intelligent Automation, Inc.            Topic: A16AT014

    The Department of Defenseisconcerned about adverseeffects ofcircadian rhythm misalignment on sleep hygiene and well-being ofservice members and veterans who suffer from symptoms of Post-Traumatic Stress Disorder (PTSD). Intelligent Automation, Inc., University of Central Florida RESTORES center and Raytheon IDS, proposeto develop PTSD SleepAid, an end-to-end sleep treatment system that monitors an ...

    STTR Phase II 2017 Department of DefenseDefense Health Agency
  9. Novel Mixed-mode TCAD-Commercial PDK Integrated Flow for Radiation Hardening By Design

    SBC: CFD RESEARCH CORPORATION            Topic: DTRA16A003

    Cost-effective application of advanced commercial electronics technologies in DoD space systems requires early development of radiation-hardened-by-design (RHBD) techniques, and use of simulations is critical to the efficiency of this process. CFDRC has developed an integrated, mixed-mode simulation approach allowing their NanoTCAD device physics simulator to interface with commercial circuit simu ...

    STTR Phase I 2017 Department of DefenseDefense Threat Reduction Agency
  10. Production of Inactivated Vaccines Using Supralethal Irradiation

    SBC: BIOLOGICAL MIMETICS, INC.            Topic: DTRA14B002

    The discovery and commercial development of licensed vaccines often take many years of research followed by years of pre-clinical and clinical development. We propose to assess the feasibility of using a novel irradiation-inactivation technology to develop vaccines more rapidly. The technology utilizes a manganese-peptide complex to protect antigenic proteins from ionizing radiation while allowing ...

    STTR Phase II 2017 Department of DefenseDefense Threat Reduction Agency
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