Process 1
A computational step in causal perturbation for TMS.
TMS · Noninvasive magnetic pulses that briefly perturb cortical circuits.
Reviewed 2026-08·Sources & research·Methodology·Media credits
Darker cells mean a higher score for this topic on that metric.
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Last reviewed Sources & creditsMedia creditsMethodology
Read Overview → Anatomy → Function, then use compare rails.
Educational atlas — not a diagnosis, treatment plan, or medical advice.
It names everyday desks for Methods before English norms look universal.
No — editorial 0–100 browsing aids inside this atlas only.
Use related cards and best-of / quiz rails after the first three chapters.
Anatomy and Function carry mechanisms; skim Overview first.
Function pages turn anatomy into computations — what TMS actually does.
Processes and networks below summarise mainstream models, not a single dogma.
A computational step in causal perturbation for TMS.
A computational step in causal perturbation for TMS.
A computational step in causal perturbation for TMS.
A computational step in causal perturbation for TMS.
A computational step in causal perturbation for TMS.
A computational step in causal perturbation for TMS.
Relative emphasis of network 1 in causal perturbation (editorial scale).
Relative emphasis of network 2 in causal perturbation (editorial scale).
Relative emphasis of network 3 in causal perturbation (editorial scale).
Relative emphasis of network 4 in causal perturbation (editorial scale).
Relative emphasis of network 5 in causal perturbation (editorial scale).
Everyday or lab example of causal perturbation in action.
Everyday or lab example of causal perturbation in action.
Everyday or lab example of causal perturbation in action.
Everyday or lab example of causal perturbation in action.
Compare network percentages with clinical load on the profile radar.
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 💡Light-gated control of genetically defined neuron populations.
Research 58 🕸️Mapping wiring diagrams from synapse to whole-brain networks.
Research 79 📡Millisecond magnetic fields that map cortical dynamics noninvasively.
Research 83 🧭Water diffusion that reveals white-matter pathways in vivo.
Research 51 🔌Electrocorticography and depth electrodes — millimetre-scale human recordings that reveal high-frequency dynamics surgery can see.
Research 82