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Bioanalytical Sensors is sponsored by National Institute of Biomedical Imaging and Bioengineering (NIBIB), National Institutes of Health (NIH). This opportunity supports mission-aligned projects and measurable outcomes.
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Bioanalytical Sensors | National Institute of Biomedical Imaging and Bioengineering Health Science Administrator Division of Health Informatics Technologies (Informatics) Program Area: Bioanalytical Sensors Bioanalytical Sensors program supports the development of sensor technologies for the detection and quantitation of clinically relevant analytes in complex matrices for use in biomedical applications.
Emphasis is on engineering the components and functionality of bioanalytical sensors. Detection could be based on optical, chemical, electrochemical, and/or physical (such as mechanical, gravimetric, thermal) perturbation of a sample, for example.
Examples of technologies of interest include, but are not limited to: nano-textured substrates for analyte detection DNA sensors for liquid biopsy small molecule detectors for diagnosing infectious diseases. The development of biomedical devices that use bioanalytical sensors is supported by the NIBIB Point of Care Technologies program.
The development of imaging probes is supported by the NIBIB Molecular Probes and Imaging Agents program.
A new hydrogel semiconductor represents a breakthrough for tissue-interfaced bioelectronics The University of Chicago Pritzker School of Molecular Engineering (PME) has solved a challenge that has long stymied researchers, reimagining the process of creating hydrogels to build a powerful semiconductor in hydrogel form that can be used to create better brain-machine interfaces, biosensors, and pacemakers.
Source: UChicago Pritzker School of Molecular Engineering News. NIH-funded project offers efficient approach when tracking SARS-CoV-2 variants Researchers funded by NIH's RADx Tech program have developed a fast, cost-effective method to detect the circulation of SARS-CoV-2 variants. The team adopted a customizable genotyping approach to identify known variants and subvariants—an approach that can augment current surveillance.
Octopus-inspired sucker transfers thin, delicate tissue grafts and biosensors Thin tissue grafts and flexible electronics have a host of applications for wound healing, regenerative medicine and biosensing. A new device inspired by an octopus's sucker rapidly transfers delicate tissue or electronic sheets to the patient, overcoming a key barrier to clinical application.
NIH leadership details unprecedented initiative to ramp up testing technologies for COVID-19 In a paper in the New England Journal of Medicine, scientific leaders from the National Institutes of Health set forth a framework to increase significantly the number, quality and type of daily tests for detecting SARS-CoV-2, the virus that causes COVID-19, and help reduce inequities for underserved populations that have been disproportionally affected by the disease.
According to the current listing, eligibility includes: Researchers focusing on engineering components and functionality of biosensors; no explicit eligibility criteria stated on this page. Confirm the full requirements in the official notice before applying.
The current listing shows varies (e.g., $341,074 for a specific funded project). Verify award ceilings, matching requirements, and allowable costs in the official notice.
Bioanalytical Sensors is funded by National Institute of Biomedical Imaging and Bioengineering (NIBIB), National Institutes of Health (NIH). Verify program details on the funder's official page before applying.
Yes — this listing is flagged as national in scope, so applicants across the U.S. may apply, subject to the sponsor's other eligibility criteria.
Start from the official opportunity page linked in this listing — it carries the sponsor's submission instructions.
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