Network oscillatory dynamics accompany cerebral bioenergetic defence in hypoxia.

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Bibliographic Details
Title: Network oscillatory dynamics accompany cerebral bioenergetic defence in hypoxia.
Authors: Bailey, Damian M1,2 (AUTHOR) damian.bailey@southwales.ac.uk, Stacey, Benjamin S1 (AUTHOR), Ma, Yaopeng3 (AUTHOR), Washio, Takuro4 (AUTHOR), Tsukamoto, Hayato5 (AUTHOR), Owens, Thomas S1 (AUTHOR), Calverley, Thomas A1 (AUTHOR), Fall, Lewis1 (AUTHOR), Marley, Christopher J1 (AUTHOR), Iannetelli, Angelo1 (AUTHOR), Hashimoto, Takeshi6 (AUTHOR), Ando, Soichi7 (AUTHOR), Ogoh, Shigehiko1,8 (AUTHOR), Marchi, Nicola9 (AUTHOR), Butkovic, Josip2 (AUTHOR), Mumlek, Ivan2 (AUTHOR), Parry, Brad2 (AUTHOR), Vrselja, Zvonomir2 (AUTHOR), Pawelczyk, James A10 (AUTHOR), Bartsch, Ronny P11 (AUTHOR)
Source: Journal of Cerebral Blood Flow & Metabolism. Jun2026, p1.
Database: Academic Search Ultimate
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