In the developing and adult brain synaptic connections between neurons are plastic, allowing the acquisition of new information and their integration within existing memory traces, but at the same time they have to be stable to a certain extent in order to maintain old stored memories. It is now clear that specific molecular mechanisms come into play in order to regulate the tight balance between stability and plasticity processes, raising the question of how stability is achieved to limit plasticity events in the adult brain. In this context, Nogo-A has been described as a negative regulator of synaptic plasticity in the adult mouse hippocampus, a structure remaining plastic throughout the entire life. In particular, Nogo-A restric...
Our brain has a lifelong capacity to create new memories, to learn and to adapt. This is due to the ...
In the adult mammalian subventricular zone (SVZ), GFAP-positive neural stem cells (NSCs) generate ne...
Axonal damage leads to permanent deficits in the adult central nervous system (CNS) not only because...
The myelin associated protein Nogo-A has been shown to limit functional and structural recovery afte...
As neuronal development enters its final stages, axon growth becomes restricted. This lack of regene...
Nogo-A is among the molecules crucial for maintaining the balance between plasticity and stability o...
The central nervous system has very limited ability to repair itself after injury but has been shown...
Thesis (Ph.D.)--University of Rochester. School of Medicine & Dentistry. Dept. of Interdepartmental ...
SummaryExperience rearranges anatomical connectivity in the brain, but such plasticity is suppressed...
The membrane protein Nogo-A is known as an inhibitor of axonal outgrowth and regeneration in the CNS...
Nogo-A and its receptors have been shown to control synaptic plasticity, including negatively regula...
The membrane protein Nogo-A is known as an inhibitor of axonal outgrowth and regeneration in the CNS...
Nogo-A has been extensively studied as a myelin-associated neurite outgrowth inhibitor in the lesion...
AbstractNogoA, a myelin-associated component, inhibits neurite outgrowth. Nogo66, a portion of NogoA...
In this study I was analyzing synaptic plasticity with respect to neurodegeneration using mainly ele...
Our brain has a lifelong capacity to create new memories, to learn and to adapt. This is due to the ...
In the adult mammalian subventricular zone (SVZ), GFAP-positive neural stem cells (NSCs) generate ne...
Axonal damage leads to permanent deficits in the adult central nervous system (CNS) not only because...
The myelin associated protein Nogo-A has been shown to limit functional and structural recovery afte...
As neuronal development enters its final stages, axon growth becomes restricted. This lack of regene...
Nogo-A is among the molecules crucial for maintaining the balance between plasticity and stability o...
The central nervous system has very limited ability to repair itself after injury but has been shown...
Thesis (Ph.D.)--University of Rochester. School of Medicine & Dentistry. Dept. of Interdepartmental ...
SummaryExperience rearranges anatomical connectivity in the brain, but such plasticity is suppressed...
The membrane protein Nogo-A is known as an inhibitor of axonal outgrowth and regeneration in the CNS...
Nogo-A and its receptors have been shown to control synaptic plasticity, including negatively regula...
The membrane protein Nogo-A is known as an inhibitor of axonal outgrowth and regeneration in the CNS...
Nogo-A has been extensively studied as a myelin-associated neurite outgrowth inhibitor in the lesion...
AbstractNogoA, a myelin-associated component, inhibits neurite outgrowth. Nogo66, a portion of NogoA...
In this study I was analyzing synaptic plasticity with respect to neurodegeneration using mainly ele...
Our brain has a lifelong capacity to create new memories, to learn and to adapt. This is due to the ...
In the adult mammalian subventricular zone (SVZ), GFAP-positive neural stem cells (NSCs) generate ne...
Axonal damage leads to permanent deficits in the adult central nervous system (CNS) not only because...