Tag

Electrical Activity

All articles tagged with #electrical activity

Moss Waves Hint at a Living Biocomputer Substrate
science1 month ago

Moss Waves Hint at a Living Biocomputer Substrate

Researchers led by computer scientist Andy Adamatzky measured electrical activity in mats of the common moss Brachythecium rutabulum, recording fast spikes, slower rhythms, and neuron-like spike trains that propagate across the cushion over days. The patterns imply moss cushions function as a dynamic, interconnected excitable system rather than a collection of unrelated cells, raising the possibility that moss could be used as a low-power substrate for biohybrid sensing and unconventional computation. However, the study has limitations—no inert-control recordings and natural variability in wild-collected moss—and more work is needed to determine whether these signals meaningfully encode information; the work was published in Royal Society Open Science.

Insights into Near-Death Experiences from Brain Monitoring Studies
neuroscience3 years ago

Insights into Near-Death Experiences from Brain Monitoring Studies

A new study shows that there is a surge of neurophysiological activity in the dying human brain, including in regions associated with conscious processing. The observed brain activity pattern may account for subjective reports of near-death experiences. The study demonstrates that withdrawal of ventilatory life support triggers a transient surge of electrical activity throughout the brain. The researchers suggest that the pattern of brain activity they observed may account for subjective reports of vivid perceptions during near-death experiences.

Revolutionizing Biological Chemistry: Uncovering Intracellular Electrical Activity.
science3 years ago

Revolutionizing Biological Chemistry: Uncovering Intracellular Electrical Activity.

Researchers at Duke University have discovered that electrical fields exist within and around a type of cellular structure called biomolecular condensates, which form compartments inside the cell without needing the physical boundary of a membrane. This discovery could change the way researchers think about biological chemistry and provide a clue as to how the first life on Earth harnessed the energy needed to arise. The ongoing reaction within our cells is not yet fully understood, but it could have important implications for many different fields.