HomeNeuroscience & BiophysicsGlymphatic Clearance Simulator

Glymphatic Clearance Simulator

Interactive 3D model of the brain's glymphatic system: arterial-pulsation-driven CSF influx along perivascular spaces, AQP4-dependent interstitial exchange, and sleep-dependent waste clearance from brain tissue.

Neuroscience & Biophysics3DAdvanced60 FPS📱 Mobile-adapted⇄ 2D version
neuroscience-general ↗ Open standalone

The brain has no lymphatic vessels of its own, so it clears metabolic waste through a dedicated plumbing system instead: cerebrospinal fluid pumped in along the pulsating walls of penetrating arteries, exchanged with the interstitial fluid through aquaporin-4 water channels on astrocyte endfeet, and swept back out along veins. This simulator renders that periarterial-to-perivenous loop in 3D — a violet CSF stream flows in along the artery, diffuses through the interstitium, and drains out in blue along the vein, while amber waste particles (standing in for amyloid-β) have to random-walk their way to the venous drain to be cleared. A sleep/wake toggle changes the interstitial space fraction the way real astrocyte shrinkage does during sleep, a cardiac-rate slider sets the pulsatile pumping strength, and an AQP4-density slider throttles the efflux step, so you can watch why poor sleep and low AQP4 both stall real waste clearance.

⚙ Under the hood

Interactive 3D model of the brain's glymphatic system: arterial-pulsation-driven CSF influx along perivascular spaces, AQP4-dependent interstitial exchange, and sleep-dependent clearance of waste solutes like amyloid-beta.

glymphatic systemcerebrospinal fluidAQP4sleepAlzheimer'sneuroscience

3D · Three.js / WebGL renderer · 60 FPS target · runs fully client-side, no install

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