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SBC: TOYON RESEARCH CORPORATION Topic: CBD152006
As a foundational component of a Layered Sensing architecture, Toyon proposes to develop a Multi-Modal Fusion Module (M2FM) capable ofconfirming detections from Chemical, Biological, and Radiological (CBR) sensing networks by fusing together information from other (non-CBR)sensors. In addition to confirming an initial CBR detection, M2FM will aid in characterizing the threat scenario by estimating ...SBIR Phase II 2017 Department of DefenseOffice for Chemical and Biological Defense
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 crucial to detect proliferation of nuclear material. Critical challenges include: (a) high sensitivity detection of signature emissions from radioactive isotopes, and (b) cost-effectiveness for deployment of sensor networks across large storage facil ...STTR Phase II 2019 Department of DefenseDefense Threat Reduction Agency
SBC: Reference Genomics, Inc. Topic: DTRA162002
To effectively counter Weapons of Mass Destruction (WMD) we must be able to accurately and sensitively detect the sites of WMD development. While the reagents and byproducts of nuclear activity may be rapidly depleted from environmental sites, those transient perturbations leave a lasting mark on the resident microbial communities by promoting and restricting the growth of different microorganisms ...SBIR Phase I 2017 Department of DefenseDefense Threat Reduction Agency
SBC: Arete Associates Topic: DTRA162002
Aret Associates and Oak Ridge National Laboratory (ORNL) propose an interdisciplinary effort to meet the challenges of developing a soil microbiome-based nuclear activity biomonitoring application. Our approach combines Arets expertise in decision theory and bioinformatics with ORNLs subject matter expertise in microbial ecology and contaminant signatures. We will adapt and extend our high featu ...SBIR Phase I 2017 Department of DefenseDefense Threat Reduction Agency
SBC: LUCID CIRCUIT, INC. Topic: DTRA162006
With the advent of high-density low-power sub-20nm technology processes and circuits with tens-of-billions of transistors, radiation-induced single-event effects present a new set of design challenges for terrestrial applications. Developing reliable single-event effect resilient microelectronics in these modern technology nodes is a resource and time-intensive endeavor that further requires valid ...SBIR Phase I 2017 Department of DefenseDefense Threat Reduction Agency
SBC: CFD RESEARCH CORPORATION Topic: CBD152003
Aflatoxins B1 (AFB1) are fungal produced mycotoxins that are present in food supplies and are strongly associated with increased risk for thedevelopment of hepatocellular carcinoma. Currently, there are no known countermeasures to selectively mitigate AFB1 toxicity. To meet thischallenge, we successfully validated a Phase I proof-of-concept study to harness the microbiome extracts of scavenging ma ...SBIR Phase II 2017 Department of DefenseOffice for Chemical and Biological Defense
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