Updated
Updated · ScienceAlert · Jul 21
Study Finds Moss Cushions Generate Neural-Like Electrical Waves Across 1 Common Species
Updated
Updated · ScienceAlert · Jul 21

Study Finds Moss Cushions Generate Neural-Like Electrical Waves Across 1 Common Species

2 articles · Updated · ScienceAlert · Jul 21

Summary

  • Royal Society Open Science published Andy Adamatzky’s study showing cushions of Brachythecium rutabulum produce complex electrical activity, including dynamic waves that spread across an entire moss patch.
  • Multi-day electrode recordings from samples collected in North Somerset found fast oscillatory spikes, slower rhythmic fluctuations, very slow depolarization waves, and some high-amplitude signals resembling action potentials and neuron-like spike trains.
  • Those patterns suggest moss acts as a spatially distributed, interconnected excitable system rather than a set of independent cells, raising the possibility that colonies coordinate signals across space and time.
  • Key limits remain: the study lacked negative-control recordings on inert material, and wild-collected moss may have introduced contamination, uneven hydration, or other factors affecting the signals.
  • Adamatzky says the findings could support future work on biohybrid sensing or unconventional computing, but the paper stops short of proving moss functions as a practical sensory network or computing substrate.

Insights

If moss sends neuron-like signals, what is it communicating about its world?
Could we program living moss to create the next generation of eco-friendly computers?