Hebbian plasticity, a synaptic mechanism which detects and amplifies co-activity between neurons, is considered a key ingredient underlying learning and memory in the brain. However, Hebbian plasticity alone is unstable, leading to runaway neuronal activity, and therefore requires stabilization by additional compensatory processes. Traditionally, a diversity of homeostatic plasticity phenomena found in neural circuits is thought to play this role. However, recent modelling work suggests that the slow evolution of homeostatic plasticity, as observed in experiments, is insufficient to prevent instabilities originating from Hebbian plasticity. To remedy this situation, we suggest that homeostatic plasticity is complemented by additional rapid ...
The connectivity of the brain is continuously adjusted to new environmental influences by several ac...
Hebbian changes of excitatory synapses are driven by and further enhance correlations between pre- a...
Hebbian changes of excitatory synapses are driven by and enhance correlations between pre- and posts...
We review a body of theoretical and experimental research on Hebbian and homeostatic plasticity, sta...
We review a body of theoretical and experimental research on Hebbian and homeostatic plasticity, sta...
We review a body of theoretical and experimental research on Hebbian and homeostatic plasticity, sta...
Plasticity is usually classified into two distinct categories: Hebbian or homeostatic. Hebbian is dr...
Plasticity is usually classified into two distinct categories: Hebbian or homeostatic. Hebbian is dr...
Plasticity is usually classified into two distinct categories: Hebbian or homeostatic. Hebbian is dr...
Plasticity is usually classified into two distinct categories: Hebbian or homeostatic. Hebbian is dr...
Plasticity is usually classified into two distinct categories: Hebbian or homeostatic. Hebbian is dr...
Hebbian changes of excitatory synapses are driven by and further enhance correlations between pre- a...
Hebbian changes of excitatory synapses are driven by and further enhance correlations between pre- a...
Hebbian plasticity is widely considered to be the mechanism by which information can be coded and re...
Hebbian plasticity, a mechanism believed to be the substrate of learning and memory, detects and fur...
The connectivity of the brain is continuously adjusted to new environmental influences by several ac...
Hebbian changes of excitatory synapses are driven by and further enhance correlations between pre- a...
Hebbian changes of excitatory synapses are driven by and enhance correlations between pre- and posts...
We review a body of theoretical and experimental research on Hebbian and homeostatic plasticity, sta...
We review a body of theoretical and experimental research on Hebbian and homeostatic plasticity, sta...
We review a body of theoretical and experimental research on Hebbian and homeostatic plasticity, sta...
Plasticity is usually classified into two distinct categories: Hebbian or homeostatic. Hebbian is dr...
Plasticity is usually classified into two distinct categories: Hebbian or homeostatic. Hebbian is dr...
Plasticity is usually classified into two distinct categories: Hebbian or homeostatic. Hebbian is dr...
Plasticity is usually classified into two distinct categories: Hebbian or homeostatic. Hebbian is dr...
Plasticity is usually classified into two distinct categories: Hebbian or homeostatic. Hebbian is dr...
Hebbian changes of excitatory synapses are driven by and further enhance correlations between pre- a...
Hebbian changes of excitatory synapses are driven by and further enhance correlations between pre- a...
Hebbian plasticity is widely considered to be the mechanism by which information can be coded and re...
Hebbian plasticity, a mechanism believed to be the substrate of learning and memory, detects and fur...
The connectivity of the brain is continuously adjusted to new environmental influences by several ac...
Hebbian changes of excitatory synapses are driven by and further enhance correlations between pre- a...
Hebbian changes of excitatory synapses are driven by and enhance correlations between pre- and posts...