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OpenR01NIMHClinical trial: Not allowed

BRAIN Initiative: Development and Validation of Novel Tools to Probe Cell-Specific and Circuit-Specific Processes in the Brain (R01 Clinical Trial Not Allowed)

National Institute of Mental Health (NIMH) · NIH Institute/Center · RFA-MH-26-170

Source: Grants.gov · View original posting ↗

Award
Amount not listed
Deadline
Feb 8, 2027
Letter of intent
Mechanism
R01
Duration
Expected awards
Funding cycle
One-time
Open date
Nov 15, 2024
Total funding
Clinical trial
Not allowed
Established investigatorHigher educationGovernmentSmall businessNonprofitForeign entities

Funding context

10%of applications funded

Based on FY2025 NIMH R01 applications (194 of 1,956 applications awarded).

Payline: NIH discontinued percentile paylines for 2026 under its Unified Funding Strategy ↗ — scores are now weighed in context rather than against a fixed cutoff.

NIMH R01, FY2025 — atypical NIH funding year (multi-year upfront funding / rescinded paylines); NIH reports FY2025 success rates as not comparable to prior years.

Aggregate historical data by institute, mechanism, and fiscal year — context for planning, not a prediction for this opportunity. Source ↗

Research areas

Basic mechanisms & biology

Auto-classified from the title and description (keyword-based) — may be imperfect.

Description

The purpose of this Brain Research through Advancing Innovative Neurotechnologies (BRAIN) Initiative is to encourage applications that will develop and validate novel tools to facilitate the detailed analysis of complex circuits and provide insights into cellular interactions that underlie brain function. The new tools and technologies should inform and/or exploit cell-type and/or circuit-level specificity. Plans for validating the utility of the tool/technology will be an essential feature of a successful application. The development of new genetic and non-genetic tools for delivering genes, proteins and chemicals to cells of interest or approaches that are expected to target specific cell types and/or circuits in the nervous system with greater precision and sensitivity than currently established methods are encouraged. Tools that can be used in a number of species/model organisms rather than those restricted to a single species are highly desired. Applications that provide approaches that break through existing technical barriers to substantially improve current capabilities are highly encouraged.

Data notes: award amount not published in the source feed.