Of all of the neuropathological changes observed in Alzheimer’s disease (AD), the loss of synapses correlates most strongly with cognitive decline. The precise mechanisms of synapse degeneration in AD remain unclear, although strong evidence indicates that pathological forms of both amyloid beta and tau contribute to synaptic dysfunction and loss. Synaptic mitochondria play a potentially important role in synapse degeneration in AD. Many studies in model systems indicate that amyloid beta and tau both impair mitochondrial function and impair transport of mitochondria to synapses. To date, much less is known about whether synaptic mitochondria are affected in human AD brain. Here, we used transmission electron microscopy to examine synapses ...
Alzheimer’s disease is a progressive, irreversible presenile or senile neurodegenerative disorder, i...
Loss of synapse and synaptic dysfunction contribute importantly to cognitive impairment in Alzheimer...
Loss of synapse and synaptic dysfunction contribute importantly to cognitive impairment in Alzheimer...
Of all of the neuropathological changes observed in Alzheimer’s disease (AD), the loss of synapses c...
Of all of the neuropathological changes observed in Alzheimer’s disease (AD), the loss of synapses c...
Of all of the neuropathological changes observed in Alzheimer’s disease (AD), the loss of synapses c...
Of all of the neuropathological changes observed in Alzheimer’s disease (AD), the loss of synapses c...
Of all of the neuropathological changes observed in Alzheimer’s disease (AD), the loss of synapses c...
Of all of the neuropathological changes observed in Alzheimer’s disease (AD), the loss of synapses c...
Of all of the neuropathological changes observed in Alzheimer’s disease (AD), the loss of synapses c...
Of all of the neuropathological changes observed in Alzheimer’s disease (AD), the loss of synapses c...
This is the publisher's version, also available electronically from http://online.liebertpub.com/doi...
This is the publisher's version, also available electronically from http://online.liebertpub.com/doi...
Synapses are sites of high energy demand which are dependent on high levels of mitochondrial derived...
AbstractSynaptic pathology and mitochondrial oxidative damage are early events in Alzheimer's diseas...
Alzheimer’s disease is a progressive, irreversible presenile or senile neurodegenerative disorder, i...
Loss of synapse and synaptic dysfunction contribute importantly to cognitive impairment in Alzheimer...
Loss of synapse and synaptic dysfunction contribute importantly to cognitive impairment in Alzheimer...
Of all of the neuropathological changes observed in Alzheimer’s disease (AD), the loss of synapses c...
Of all of the neuropathological changes observed in Alzheimer’s disease (AD), the loss of synapses c...
Of all of the neuropathological changes observed in Alzheimer’s disease (AD), the loss of synapses c...
Of all of the neuropathological changes observed in Alzheimer’s disease (AD), the loss of synapses c...
Of all of the neuropathological changes observed in Alzheimer’s disease (AD), the loss of synapses c...
Of all of the neuropathological changes observed in Alzheimer’s disease (AD), the loss of synapses c...
Of all of the neuropathological changes observed in Alzheimer’s disease (AD), the loss of synapses c...
Of all of the neuropathological changes observed in Alzheimer’s disease (AD), the loss of synapses c...
This is the publisher's version, also available electronically from http://online.liebertpub.com/doi...
This is the publisher's version, also available electronically from http://online.liebertpub.com/doi...
Synapses are sites of high energy demand which are dependent on high levels of mitochondrial derived...
AbstractSynaptic pathology and mitochondrial oxidative damage are early events in Alzheimer's diseas...
Alzheimer’s disease is a progressive, irreversible presenile or senile neurodegenerative disorder, i...
Loss of synapse and synaptic dysfunction contribute importantly to cognitive impairment in Alzheimer...
Loss of synapse and synaptic dysfunction contribute importantly to cognitive impairment in Alzheimer...