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High-Throughput Automated Phenotyping of Two Genetic Mouse Models of Huntington's Disease
scientific article (publication date: 11 July 2013)
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title
High-Throughput Automated Phenotyping of Two Genetic Mouse Models of Huntington's Disease
(English)
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main subject
Huntington's disease
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automation
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author
Russell G. Port
object named as
Russell Port
series ordinal
7
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Fuat Balcı
object named as
Fuat Balci
series ordinal
1
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author name string
Stephen Oakeshott
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2
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Jul Lea Shamy
series ordinal
3
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Bassem F El-Khodor
series ordinal
4
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Igor Filippov
series ordinal
5
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Richard Mushlin
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6
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David Connor
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8
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Ahmad Paintdakhi
series ordinal
9
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Liliana Menalled
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10
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Sylvie Ramboz
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11
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David Howland
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12
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Seung Kwak
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13
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Dani Brunner
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14
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language of work or name
English
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publication date
11 July 2013
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published in
PLOS Currents
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volume
5
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cites work
A mixed fixed ratio/progressive ratio procedure reveals an apathy phenotype in the BAC HD and the z_Q175 KI mouse models of Huntington's disease
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Full-length human mutant huntingtin with a stable polyglutamine repeat can elicit progressive and selective neuropathogenesis in BACHD mice
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Human cone pigment expressed in transgenic mice yields altered vision
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Detection of early behavioral markers of Huntington's disease in R6/2 mice employing an automated social home cage
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27 November 2018
Pharmacological imposition of sleep slows cognitive decline and reverses dysregulation of circadian gene expression in a transgenic mouse model of Huntington's disease.
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27 November 2018
NMDA receptor function in mouse models of Huntington disease
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Abnormal synaptic plasticity and impaired spatial cognition in mice transgenic for exon 1 of the human Huntington's disease mutation.
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27 November 2018
Selective discrimination learning impairments in mice expressing the human Huntington's disease mutation.
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27 November 2018
Cognitive deficits in Huntington's disease are predicted by dopaminergic PET markers and brain volumes
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27 November 2018
Instability of highly expanded CAG repeats in mice transgenic for the Huntington's disease mutation.
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27 November 2018
Identifiers
DOI
10.1371/CURRENTS.HD.124AA0D16753F88215776FBA102CEB29
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PMCID
3710674
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PubMed ID
23863947
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ResearchGate publication ID
249997315
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