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Pharmacology & Therapeutics
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School of Medicine
Pharmacology & Therapeutics
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ROWAN, MICHAEL (10)
KLYUBIN, IGOR (4)
ANWYL, ROGER (3)
HU, NENG (2)
ONDREJCAK, TOMAS (1)
ROWAN, MICHAEL JOSEPH (1)
WANG, QIN-WEN (1)
Subject
Neuroscience (11)
Ageing (8)
Alzheimer's disease (5)
synaptic transmission (2)
Alzheimer's disease (AD) (1)
Alzheimer?s disease (1)
Alzheimer?s disease (AD) (1)
Alzheimer’s disease (1)
amyloid-beta protein oligomers (1)
depression (1)
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Date Issued
2014 (1)
2013 (2)
2012 (2)
2011 (2)
2010 (1)
2009 (1)
2008 (2)
Sponsor
Science Foundation Ireland (SFI) (8)
Health Research Board (HRB) (6)
European Union Framework Programme 7 (FP7) (2)
European Commission (1)
European Union (EU) (1)
Wellcome Trust (1)
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Interaction between prion protein and toxic amyloid ß assemblies can be therapeutically targeted at multiple sites.
KLYUBIN, IGOR
;
ROWAN, MICHAEL
(
2011
)
Glutamate receptors in preclinical research on Alzheimer's disease: update on recent advances
ROWAN, MICHAEL
;
ONDREJCAK, TOMAS
;
HU, NENG
(
2012
)
Alzheimer's disease Aß assemblies mediating rapid disruption of synaptic plasticity and memory.
ROWAN, MICHAEL
(
2012
)
Exosomes neutralize synaptic-plasticity-disrupting activity of Aß assemblies in vivo.
ROWAN, MICHAEL
;
KLYUBIN, IGOR
(
2013
)
Switching off LTP: mGlu and NMDA receptor-dependent novelty exploration-induced depotentiation in the rat hippocampus.
ROWAN, MICHAEL
(
2013
)
Alzheimer's disease brain-derived amyloid-ß-mediated inhibition of LTP In Vivo is prevented by immunotargeting cellular prion protein
ROWAN, MICHAEL
;
KLYUBIN, IGOR
(
2011
)
GluN2B subunit-containing NMDA receptor antagonists prevent Abeta-mediated synaptic plasticity disruption in vivo
ROWAN, MICHAEL
;
ANWYL, ROGER
;
KLYUBIN, IGOR
;
HU, NENG
(
2010
)
Amyloid-β protein dimers isolated directly from Alzheimer's brains impair synaptic plasticity and memory.
ROWAN, MICHAEL
(
2008
)
Neurotransmitter receptor and time dependence of the synaptic plasticity disrupting actions of Alzheimer's disease Aß in vivo.
ROWAN, MICHAEL
(
2014
)
Remodelling by early-life stress of NMDA receptor-dependent synaptic plasticity in a gene-environment rat model of depression.
ROWAN, MICHAEL
;
ANWYL, ROGER
(
2009
)
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