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Difference between revisions of "Flannery 2015 Abstract MiP2015"

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{{Abstract
|title=Quantitative live-cell imaging of mitochondrial network morphology in neurodegenerative conditions.
|authors=Flannery PJ, Sitarz K, Yu-Wai-Man P
|year=2015
|year=2015
|event=MiP2015
|event=MiP2015
}}
}}
{{Labeling
{{Labeling
|additional=MiP2015}}
|additional=MiP2015
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== Affiliations ==
== Affiliations ==
Wellcome Trust Centre for Mitochondrial research, Institute of Genetic Research, Newcastle University; Newcastle upon Tyne, UK. - [email protected]


== References and acknowledgements ==
#Burte F, Carelli V, Chinnery PF (2015) Disturbed mitochondrial dynamics and neurodegenerative disorders. Nat Rev Neurol 11:11-24.
#Zanna C, Ghelli A, Karbowski M, Youle RJ, Schimpf S (2008) OPA1 mutations associated with dominant optic atrophy impair oxidative phosphorylation and mitochondrial fusion. Brain 131:352-67.
#Kao Shu-Huei, Yen May-Yung, Wang An-Guor (2015) Changes in mitochondrial morphology and bioenergetics in human lymphoblastoid cells with four novel OPA1 mutations. Investigative Ophthalmology and Visual Science 56:4:2269-78.


== References and acknowledgements ==
Supported by the Medical Research Council (MRC, UK)

Revision as of 17:01, 24 August 2015

Quantitative live-cell imaging of mitochondrial network morphology in neurodegenerative conditions.

Link:

Flannery PJ, Sitarz K, Yu-Wai-Man P (2015)

Event: MiP2015


Labels:






MiP2015 

Affiliations

Wellcome Trust Centre for Mitochondrial research, Institute of Genetic Research, Newcastle University; Newcastle upon Tyne, UK. - [email protected]

References and acknowledgements

  1. Burte F, Carelli V, Chinnery PF (2015) Disturbed mitochondrial dynamics and neurodegenerative disorders. Nat Rev Neurol 11:11-24.
  2. Zanna C, Ghelli A, Karbowski M, Youle RJ, Schimpf S (2008) OPA1 mutations associated with dominant optic atrophy impair oxidative phosphorylation and mitochondrial fusion. Brain 131:352-67.
  3. Kao Shu-Huei, Yen May-Yung, Wang An-Guor (2015) Changes in mitochondrial morphology and bioenergetics in human lymphoblastoid cells with four novel OPA1 mutations. Investigative Ophthalmology and Visual Science 56:4:2269-78.

Supported by the Medical Research Council (MRC, UK)