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The Award database is continually updated throughout the year. As a result, data for FY19 is not expected to be complete until April, 2020.

  1. A Large Size 3D Holographic Display with PR Polymers

    SBC: BOSTON APPLIED TECHNOLOGIES, INCORPORATED            Topic: AF08T001

    In this STTR project, Boston Applied Technologies, Inc. (BATi), teaming up with Prof. Di Bartolo’s group at Boston College, aims at developing a large size (300 mm x 300 mm) updatable 3D display with photorefractive polymers for battlefield and command and control applications. The proposed 3D display system features fast response (feasible to video-rate), high diffraction efficiency, and relati ...

    STTR Phase I 2008 Department of DefenseAir Force
  2. A Portable Multimodality System for in-field Airway Injury Assessment and Compliance Measurement

    SBC: Radiation Monitoring Devices, Inc.            Topic: DHP16C006

    Airway compromise is the third leading cause of potentially preventable death on the battlefield.Current evaluation techniques of the airways associated with smoke inhalation injury are highly subjective and lack the sensitivity required of an accurate diagnostic and assessment tool.The problem of detection is further compounded by the late onset of symptoms that in many cases do not present until ...

    STTR Phase I 2017 Department of DefenseDefense Health Program
  3. A Real-Time, Portable Non-Invasive Monitoring System of Muscle Oxygen and pH in Trauma Patients

    SBC: Reflectance Medical Inc.            Topic: A08T037

    Trauma and severe hemorrhage remain the most frequent causes of death in the 1-44 year age group in both the civilian and military settings. Early recognition of shock and prompt institution of appropriate resuscitative measures are widely believed to improve outcome and decrease the progression to multi-system organ failure by virtue of maintaining end-organ perfusion. The physiological response ...

    STTR Phase I 2008 Department of DefenseArmy
  4. Acoustic Mitigation System For Horizontal, Planar Surfaces Onboard Naval Ships

    SBC: NEVA ASSOC.            Topic: N08T014

    Typical acoustic materials rely on embedded continuous mass layer to attenuate low frequency sound. Energy from low frequency sound is not effectively mitigated with these materials unless a substantial amount of mass is added. Thus, standard materials for low frequency noise control tend to be heavy, expensive and difficult to install. A new technology is being developed that utilizes optimized ...

    STTR Phase I 2008 Department of DefenseNavy
  5. Acoustically/Vibrationally Enhanced High Frequency Electromagnetic Detector for Buried Landmines

    SBC: White River Technologies Inc.            Topic: A16AT004

    White River Technologies, Inc. (WRT) presents this proposal, "Acoustically/Vibrationally Enhanced High Frequency Electromagnetic Detector for Buried Landmines".The primary goal of the proposed effort is to develop a prototype vibrationally-enhanced detection system capable of landmine and IED detection and discrimination with performance greater than conventional GPR sensors.The main sensing compo ...

    STTR Phase II 2017 Department of DefenseArmy
  6. Adaptive Hierarchical Multiple Models to Control Dynamic Systems

    SBC: Scientific Systems Company Inc.            Topic: AF07T012

    Modern control theory offers mathematically rigorous and powerful solutions to many dynamic systems. Its limitations are that the classes of dynamic systems covered by the theory are limited to linear systems or certain well-structured nonlinear systems, and the adaptation of the controllers are often slow if the controller parameters are far away from their desired values. On the other hand, the ...

    STTR Phase I 2008 Department of DefenseAir Force
  7. Additive Manufactured Smart Structures with Discrete Embedded Sensors

    SBC: Triton Systems, Inc.            Topic: A17AT024

    The purpose of this proposal is to additively manufacture (AM) smart structures with embedded electronics such as sensors, accelerometers, antennas, etc. The goal of these smart structures will be to enhance the effectiveness and survivability of the Armys ground systems. The use of additive manufacturing smart structures provides flexibility in the materials used and the functionality of the elec ...

    STTR Phase I 2017 Department of DefenseArmy
  8. Advanced Chemistry and Radiation Modules for Hypersonic Signatures

    SBC: Spectral Sciences, Inc.            Topic: MDA15T003

    Karagozian & Case, Inc. (K&C) and the Georgia Institute of Technology (Georgia Tech) will develop a re-usable, cost-effective, and accurate dynamic characterization methodology capable of measuring the dynamic material properties of various materials of interest under very high strain rates. Materials property data for various ductile materials (e.g., steel and aluminum) are required as input to f ...

    STTR Phase I 2017 Department of DefenseMissile Defense Agency
  9. Advanced Window Materials for High Energy Propulsion

    SBC: CERANOVA CORPORATION            Topic: AF07T009

    Window materials are an essential component of some advanced propulsion concepts which require high pressures, high temperatures, low energy losses, and low weights. Window materials must possess a combination of properties such as high mechanical strength, high melting point, high transparency, low density, and good resistance to the operating environment. CeraNova proposes the development of f ...

    STTR Phase I 2008 Department of DefenseAir Force
  10. Aptamers for Ante-mortem Diagnostics of Prion Infection

    SBC: Infoscitex Corporation            Topic: A08T035

    All forms of transmissible spongiform encephalopathy (TSE) are caused by a unique infectious agent termed “prion”, a proteinaceous pathogen lacking nucleic acid. Prions are actually a misfolded variant of the normal mammalian prion protein, PrPc. Normal disease transmission occurs when prions are ingested by a naive animal. The current test for TSE is a post mortem diagnosis looking for protea ...

    STTR Phase I 2008 Department of DefenseArmy

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