Gutsaeva 2008 J Neurosci: Difference between revisions

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{{Publication
{{Publication
|title=Gutsaeva DR, Carraway MS, Suliman HB, Demchenko IT, Shitara H, Yonekawa H, Piantadosi CA (2008) Transient hypoxia stimulates mitochondrial biogenesis in brain subcortex by a neuronal nitric oxide synthase-dependent mechanism. J Neurosci 28: 2015-2204.
|title=Gutsaeva DR, Carraway MS, Suliman HB, Demchenko IT, Shitara H, Yonekawa H, Piantadosi CA (2008) Transient hypoxia stimulates mitochondrial biogenesis in brain subcortex by a neuronal nitric oxide synthase-dependent mechanism. J Neurosci 28:2015-2204.
|authors=Gutsaeva DR, Carraway MS, Suliman HB, Demchenko IT, Shitara H, Yonekawa H, Piantadosi CA
|authors=Gutsaeva DR, Carraway MS, Suliman HB, Demchenko IT, Shitara H, Yonekawa H, Piantadosi CA
|year=2008
|year=2008
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}}
}}
{{Labeling
{{Labeling
|injuries=Hypoxia, RONS; Oxidative Stress
|area=mt-Biogenesis;mt-density
|tissues=Neurons; Brain
|tissues=Nervous system
|topics=Mitochondrial Biogenesis; Mitochondrial Density
|injuries=Ischemia-reperfusion, Oxidative stress;RONS
}}
}}

Latest revision as of 13:53, 16 June 2015

Publications in the MiPMap
Gutsaeva DR, Carraway MS, Suliman HB, Demchenko IT, Shitara H, Yonekawa H, Piantadosi CA (2008) Transient hypoxia stimulates mitochondrial biogenesis in brain subcortex by a neuronal nitric oxide synthase-dependent mechanism. J Neurosci 28:2015-2204.


Gutsaeva DR, Carraway MS, Suliman HB, Demchenko IT, Shitara H, Yonekawa H, Piantadosi CA (2008) J Neurosci

Abstract:


Labels: MiParea: mt-Biogenesis;mt-density 

Stress:Ischemia-reperfusion, Oxidative stress;RONS 

Tissue;cell: Nervous system 





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