News
New research highlights how astrocytes, long considered mere support cells, actively shape brain network dynamics.
A Florida Atlantic University study shows that astrocytes, glial cells long viewed as passive, actively influence brain ...
1d
AZoLifeSciences on MSNAI Unveils Key Role of Astrocytes in Brain FunctionLong overlooked and underestimated, glial cells - non-neuronal cells that support, protect and communicate with neurons - are finally stepping into ...
Synaptic adhesion molecules like PTPδ are critical for synapse formation and function. Here authors show PTPδ with mini-exon B regulates excitatory synapses in cell-type-specific and IL1RAP ...
Long overlooked and underestimated, glial cells—non-neuronal cells that support, protect and communicate with neurons—are ...
A new review brings to light the pivotal role of ribonucleases (RNases) in shaping the molecular foundation of Mendelian disorders. These essential ...
A new review brings to light the pivotal role of ribonucleases (RNases) in shaping the molecular foundation of Mendelian disorders. These essential ...
New research shows that low-intensity repetitive transcranial magnetic stimulation (rTMS) can restore key synaptic structures ...
This useful study presents a biologically realistic, large-scale cortical model of the rat's non-barrel somatosensory cortex, investigating synaptic plasticity of excitatory connections under varying ...
Some results have been hidden because they may be inaccessible to you
Show inaccessible results