Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning and memory. Mitochondria are involved in the regulation of the complex processes of synaptic plasticity. This paper reviews the current knowledge on the regulatory roles of mitochondria in the function and plasticity of synapses and the implications of mitochondrial dysfunctions in synaptic transmission. First, the importance of mitochondrial distribution and motility for maintenance and strengthening of dendritic spines, but also for new spines/synapses formation is presented. Secondly, the major mitochondrial functions as energy supplier and calcium buffer organelles are considered as possible explanation for their essential and regulatory ...
Mitochondria are the primary generators of ATP and are important regulators of intracellular calcium...
Mitochondria are the primary generators of ATP and are important regulators of intracellular calcium...
AbstractThe proper intracellular distribution of mitochondria is assumed to be critical for normal p...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Cell types rich in mitochondria, including neurons, display a high energy demand and a need for calc...
AbstractThe proper intracellular distribution of mitochondria is assumed to be critical for normal p...
Cell types rich in mitochondria, including neurons, display a high energy demand and a need for calc...
Cell types rich in mitochondria, including neurons, display a high energy demand and a need for calc...
Mitochondria are the primary generators of ATP and are important regulators of intracellular calcium...
Mitochondria are the primary generators of ATP and are important regulators of intracellular calcium...
AbstractThe proper intracellular distribution of mitochondria is assumed to be critical for normal p...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Cell types rich in mitochondria, including neurons, display a high energy demand and a need for calc...
AbstractThe proper intracellular distribution of mitochondria is assumed to be critical for normal p...
Cell types rich in mitochondria, including neurons, display a high energy demand and a need for calc...
Cell types rich in mitochondria, including neurons, display a high energy demand and a need for calc...
Mitochondria are the primary generators of ATP and are important regulators of intracellular calcium...
Mitochondria are the primary generators of ATP and are important regulators of intracellular calcium...
AbstractThe proper intracellular distribution of mitochondria is assumed to be critical for normal p...