Tuboly E: Difference between revisions
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|title=Dr. | |title=Dr. | ||
Hospital scientist | Hospital scientist | ||
|institution= | |institution=Division of Surgery | ||
Department of Traumatology | |||
|address= | |||
|area code= | John Hunter Hospital | ||
|city= | |address=Lookout Road | ||
|country= | |area code=NSW 2305 | ||
|mailaddress= | |city=New Lambton Heights | ||
|country=Australia | |||
|mailaddress=[email protected] | |||
}} | }} | ||
{{Labelingperson | {{Labelingperson | ||
|field of research=Basic | |field of research=Basic | ||
}} | }} | ||
==Participated at== | |||
::::*[[IOC132| IOC132 Budapest HU]] |
Latest revision as of 10:24, 7 September 2018
Name | Tuboly Eszter, Dr.
Hospital scientist |
---|---|
Institution | Division of Surgery
Department of Traumatology John Hunter Hospital |
Address | Lookout Road, NSW 2305 |
City | New Lambton Heights |
State/Province | |
Country | Australia |
[email protected] | |
Weblink | |
O2k-Network Lab | HU Szeged Boros M |
Labels:
Field of research: Basic
Publications
Published | Reference | |
---|---|---|
Jasz 2021 J Cell Mol Med | 2021 | Jász DK, Szilágyi ÁL, Tuboly E, Baráth B, Márton AR, Varga P, Varga G, Érces D, Mohácsi Á, Szabó A, Bozó R, Gömöri K, Görbe A, Boros M, Hartmann P (2021) Reduction in hypoxia-reoxygenation-induced myocardial mitochondrial damage with exogenous methane. https://doi.org/10.1111/jcmm.16498 |
Tuboly 2017 Sci Rep | 2017 | Tuboly E, Molnár R, Tőkés T, Turányi RN, Hartmann P, Mészáros AT, Strifler G, Földesi I, Siska A, Szabó A, Mohácsi Á, Szabó G, Boros M (2017) Excessive alcohol consumption induces methane production in humans and rats. Sci Rep 7:7329. |
Strifler 2016 PLOS ONE | 2016 | Strifler G, Tuboly E, Szél E, Kaszonyi E, Cao C, Kaszaki J, Mészáros A, Boros M, Hartmann P (2016) Inhaled methane limits the mitochondrial electron transport chain dysfunction during experimental liver ischemia-reperfusion injury. PLOS ONE 11:e0146363. |
Strifler 2016b PLOS ONE | 2016 | Strifler G, Tuboly E, Görbe A, Boros M, Pécz D, Hartmann P (2016) Targeting mitochondrial dysfunction with L-alpha glycerylphosphorylcholine. PLOS ONE 11:e0166682. |