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Difference between revisions of "Salmon Pablo"

From Bioblast
 
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|firstname=Pablo
|firstname=Pablo
|title=PhD
|title=PhD
|institution=[[File:Salmon P.jpg|right|180px|Salmon P]]Institute of Biodiversity,  
|institution=[[File:Salmon P.jpg|right|180px|Salmon P]] Institute of Avian Research "Vogelwarte Helgoland", DE
 
|address=An der Vogelwarte 21
Animal Health & Comparative Medicine,
|area code=26386
 
|city=Wilhelmshaven
College of Medical, Veterinary & Life Sciences,
|country=Germany
 
|mailaddress=pablo.salmon@ifv-vogelwarte.de
University of Glasgow, UK
|address=Graham Kerr Building
|area code=G12 8QQ
|city=Glasgow
|country=United Kingdom
|mailaddress=Pablo.Salmon@glasgow.ac.uk
}}
}}
{{Labelingperson}}
{{Labelingperson}}

Latest revision as of 12:40, 22 February 2023


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COST Action CA15203 (2016-2021): MitoEAGLE
Evolution-Age-Gender-Lifestyle-Environment: mitochondrial fitness mapping


Salmon Pablo


MitoPedia topics: EAGLE 

COST: Member COST WG1: WG1


Name Salmon Pablo, PhD
Institution
Salmon P
Institute of Avian Research "Vogelwarte Helgoland", DE
Address An der Vogelwarte 21, 26386
City Wilhelmshaven
State/Province
Country Germany
Email pablo.salmon@ifv-vogelwarte.de
Weblink
O2k-Network Lab DE Wilhelmshaven Salmon P, UK Glasgow Metcalfe NB


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Publications

 PublishedReference
Salmon 2023 Geroscience2023Salmón P, Millet C, Selman C, Monaghan P, Dawson NJ (2023) Tissue-specific reductions in mitochondrial efficiency and increased ROS release rates during ageing in zebra finches, Taeniopygia guttata. https://doi.org/10.1007/s11357-022-00624-1
Dawson 2020 Exp Gerontol2020Dawson NJ, Salmón P (2020) Age-related increase in mitochondrial quantity may mitigate a decline in mitochondrial quality in red blood cells from zebra finches (Taeniopygia guttata). Exp Gerontol 133:110883.
Aragones 2008 Nat Genet2008Aragonés J, Schneider M, Van Geyte K, Fraisl P, Dresselaers T, Mazzone M, Dirkx R, Zacchigna S, Lemieux H, Jeoung NH, Lambrechts D, Bishop T, Lafuste P, Diez-Juan A, K Harten S, Van Noten P, De Bock K, Willam C, Tjwa M, Grosfeld A, Navet R, Moons L, Vandendriessche T, Deroose C, Wijeyekoon B, Nuyts J, Jordan B, Silasi-Mansat R, Lupu F, Dewerchin M, Pugh C, Salmon P, Mortelmans L, Gallez B, Gorus F, Buyse J, Sluse F, Harris RA, Gnaiger Erich, Hespel P, Van Hecke P, Schuit F, Van Veldhoven P, Ratcliffe P, Baes M, Maxwell P, Carmeliet P (2008) Deficiency or inhibition of oxygen sensor Phd1 induces hypoxia tolerance by reprogramming basal metabolism. Nat Genet 40:170-80.

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