Structure 1
A key node for cell-type precision in Optogenetics, studied with imaging and lesion methods.
Anatomy for Optogenetics is a network story, not a single “spot”.
Structures below are teaching landmarks; individual brains vary.
A key node for cell-type precision in Optogenetics, studied with imaging and lesion methods.
A key node for cell-type precision in Optogenetics, studied with imaging and lesion methods.
A key node for cell-type precision in Optogenetics, studied with imaging and lesion methods.
A key node for cell-type precision in Optogenetics, studied with imaging and lesion methods.
A key node for cell-type precision in Optogenetics, studied with imaging and lesion methods.
A key node for cell-type precision in Optogenetics, studied with imaging and lesion methods.
White-matter and synaptic routes that carry cell-type precision signals.
White-matter and synaptic routes that carry cell-type precision signals.
White-matter and synaptic routes that carry cell-type precision signals.
White-matter and synaptic routes that carry cell-type precision signals.
A classic anatomical landmark used when teaching Optogenetics.
A classic anatomical landmark used when teaching Optogenetics.
A classic anatomical landmark used when teaching Optogenetics.
A classic anatomical landmark used when teaching Optogenetics.
Trace related regions on the interactive atlas after reading this page.
Blood-oxygen signals that map task and resting-state networks.
Research 70 📈Millisecond electrical rhythms from scalp and intracranial arrays.
Research 95 💉Molecular imaging of metabolism, receptors and pathology tracers.
Research 79 📡Noninvasive magnetic pulses that briefly perturb cortical circuits.
Research 70 🕸️Mapping wiring diagrams from synapse to whole-brain networks.
Research 79