Cooperative Agreement for In Vivo High-Resolution Imaging for Inner Ear Visualization (U01 Clinical Trial Required)
Funding
$500,000
Deadline
--
Days
--
Hrs
--
Min
--
Sec
Oct 01, 2026
Posted Jan 6, 2025 (410 days ago)
Closes Oct 1, 2026 (in 222 days)
Grant Details
Opportunity Number
RFA-DC-25-003
CFDA / ALN
93.173
Opportunity Category
Discretionary (D)
Funding Category
Health (HL)
Funding Instrument
Cooperative Agreement (CA)
Cost Sharing
No Cost Sharing (No)
Eligibility
State governments (00)
County governments (01)
City or township governments (02)
Special district governments (04)
Independent school districts (05)
Public and State controlled institutions of higher education (06)
Native American tribal governments (Federally recognized) (07)
Public housing authorities / Indian housing authorities (08)
Native American tribal organizations (11)
Nonprofits having a 501(c)(3) status with the IRS (12)
Nonprofits without 501(c)(3) status (13)
Private institutions of higher education (20)
For-profit organizations other than small businesses (22)
Small businesses (23)
Others (25)
Other Eligible Applicants include the following: Alaska Native and Native Hawaiian Serving Institutions; Asian American Native American Pacific Islander Serving Institutions (AANAPISISs); Eligible Agencies of the Federal Government; Faith-based or Community-based Organizations; Hispanic-serving Institutions; Historically Black Colleges and Universities (HBCUs); Indian/Native American Tribal Governments (Other than Federally Recognized); Non-domestic (non-U.S.) Entities (Foreign Organizations); Regional Organizations; Tribally Controlled Colleges and Universities (TCCUs) ; U.S. Territory or Possession.
Description
This funding opportunity aims to support high risk clinical trials for the development of in vivo high-resolution structural and functional imaging technologies for the living human inner ear. Proposed projects should focus on improving the resolution of current imaging techniques or developing new imaging techniques that can visualize inner ear structures in vivo with significantly greater detail and accuracy than currently possible. Structural and functional aspects, including visualizing dynamic elements, are important to developing new and improved techniques. Projects may also focus on developing new imaging probes or contrast agents that can enhance visualization of the inner ear structures. Research supported in response to this RFA is expected to significantly advance the ability to visualize auditory and vestibular components, such as hair cells, otoliths, membranes, ions, and vasculature, in detail in awake patients in a clinical setting using non-invasive techniques. To achieve this goal, a multidisciplinary team approach that takes advantage of the expertise of each team member is highly encouraged. Studies in humans must be proposed to develop,advance, or test the needed technology. Any intermediate studies must articulate a clear path of the proposed methodology to application in awake humans or define the limitations and the usefulness in anesthetized humans.
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