grant

Retinal Modulation of Basal Forebrain Circuits

Organization NORTHWESTERN UNIVERSITYLocation CHICAGO, UNITED STATESPosted 5 May 2026
NIHUS FederalResearch GrantFY2025AcetylcholineAcuteAnatomic SitesAnatomic structuresAnatomyAnimal BehaviorAnimalsAreaArousalAttentionBehaviorBehavioralBrainBrain Nervous SystemBrain regionCell BodyCell Communication and SignalingCell NucleusCell SignalingCellsCuesCyclicityDataElectrophysiologyElectrophysiology (science)EncephalonEndowmentEnvironmentGlutamatesGoalsIntracellular Communication and SignalingL-GlutamateLearningLightMapsMediatingMemoryMoodsMorphologyNerve CellsNerve UnitNeural CellNeurocyteNeuronsNeuropeptidesNeurophysiology / ElectrophysiologyNucleusOrganismOutputPathway interactionsPeriodicityPhotoradiationPlayPopulationPositionPositioning AttributeResearchRetinaRetinal Ganglion CellsRhythmicityRoleSignal TransductionSignal Transduction SystemsSignalingSleepSpecificitySubconsciousSystemTestingTracerViralVirusWorkbasal forebrainbehavior influencebehavioral influencebiological signal transductioncell typecholinergiccholinergic neuroncircadianconditioned fearelectrophysiologicalenvironmental changeexperimentexperimental researchexperimental studyexperimentsfear conditioningflexibilityflexiblefunction luminancegene manipulationgenetic manipulationgenetically manipulategenetically perturbglutamatergicinsightliving systemluminancemelanopsinneuralneural adaptationneural circuitneural circuitryneural controlneural regulationneuroadaptationneurocircuitryneuromodulationneuromodulatoryneuronalneuroregulationneurotransmitter releasepathwayresponseretinal ganglionsocial rolesynaptic circuitsynaptic circuitryvisual information
Sign up free to applyApply link · pipeline · email alerts
— or —

Get email alerts for similar roles

Weekly digest · no password needed · unsubscribe any time

Description preview

PROJECT SUMMARY
Light is a ubiquitous feature of the natural environment and plays a central role in modulating an organism’s

internal state. This flexible adaptation of neural circuits is essential for an organism’s survival. It endows them

with not only the ability to preemptively adapt neural circuits to rhythmic, predictable changes in light…

🔒

Full details available on the Agency plan

Unlock the complete grant description, eligibility criteria, contract value, evaluation details and apply link — plus alerts, pipeline tracking, and CSV export.

Start 7-day free trial — $29.99/mo →

Agency Plan

7-day free trial

Unlock procurement & grants

Upgrade to access active tenders from World Bank, UNDP, ADB and more — with email alerts and pipeline tracking.

$29.99 / month

  • 🔔Email alerts for new matching tenders
  • 🗂️Track tenders in your pipeline
  • 💰Filter by contract value
  • 📥Export results to CSV
  • 📌Save searches with one click
Start 7-day free trial →
Retinal Modulation of Basal Forebrain Circuits — NORTHWESTERN UNIVERSITY | UNITED STATES | May 2026 | Dev Procure