food_and_nutrition · health · HHS-FDA
Integrating Machine Learning with Computational Fluid Dynamics Models of Orally Inhaled Drug Products (U01) Clinical Trials Not Allowed
Food and Drug Administration · FOR-FD-24-001
Total Program Funding
$600K
Expected Awards
1
Deadline
TBD
GRANTQUICK SUMMARYPlain-English Overview
Integrating Machine Learning with Computational Fluid Dynamics Models of Orally Inhaled Drug Products (U01) Clinical Trials Not Allowed. Food and Drug Administration. Computational fluid dynamics (CFD) has played a crucial role in providing an alternative bioequivalence (BE) approach for generic orally inhaled drug products (OIDPs), in addition to comparative clinical endpoint or pharmacodynamic BE studies, as a relatively cost-... $600,000 total program funding; ~1 awards expected.
Who Should Apply
Other Native American Tribal Organizations, For-profit organizations, Small businesses, County governments, Special district governments (+9 more)
Who Should NOT Apply
Organizations not matching the eligible applicant types listed above
Key Requirements (Plain English)
- •See full opportunity listing for requirements
💡 GrantQuick Tip
High-value award — invest significantly in proposal quality. Consider hiring a grant writer.
Competitiveness: Very high — extremely limited awards available
What This Grant Funds
Computational fluid dynamics (CFD) has played a crucial role in providing an alternative bioequivalence (BE) approach for generic orally inhaled drug products (OIDPs), in addition to comparative clinical endpoint or pharmacodynamic BE studies, as a relatively cost- and time-efficient complement to benchtop and clinical experiments that has been widely used in developing and assessing generic inhaler devices. However, despite the advances in the power of modern computers, there are still some bottlenecks in using CFD due to computational time, limited grid resolution, pre- and post-processing of large simulation data sets, model parameter estimations, and uncertainty quantifications. Machine learning (ML) has been gaining more attention as a potential tool to alleviate such limitations that arise in CFD. The purpose of this grant is to develop a methodology to integrate ML with CFD models of OIDPs to promote alternative BE studies to enhance and accelerate the development and approval of generic OIDPs.
Who Can Apply
Eligible Applicant Types
Funding Details
- Total Program Funding
- $600K
- Expected Number of Awards
- 1
- Cost Sharing Required?
- No
- Funding Instrument
- grant, cooperative_agreement
Key Dates
Agency Contact
Terrin Brown Grants Management Specialist 240-402-7610
terrin.brown@fda.hhs.govReady to apply?
View the full NOFO and submit your application on Grants.gov