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Methods in Enzymology|April 21, 2018
Optoanesthesia: Use of Anesthetic Photolabels In VivoAndrew R McKinstry-Wu, Max B KelzProceedings of the National Academy of Sciences of the United States of America|January 16, 2008
An essential role for orexins in emergence from general anesthesiaMax B Kelz, Yi Sun, Jingqiu Chen, et al.British Journal of Anaesthesia|November 24, 2023
One node among many: sevoflurane-induced hypnosis and the challenge of an integrative network-level view of anaesthetic actionAndrew R McKinstry-Wu, Max B KelzBritish Journal of Anaesthesia|September 24, 2025
Reanimation of rodents: an animal model for cognitive recovery from anaesthesiaAndrew R McKinstry-Wu, Max B KelzMethods in Enzymology|March 29, 2018
The Mouse as a Model Organism for Assessing Anesthetic SensitivityAndrzej Z Wasilczuk, Kaitlyn L Maier, Max B KelzThe Journal of Biological Chemistry|November 28, 2012
In vivo activation of azipropofol prolongs anesthesia and reveals synaptic targetsBrian P Weiser, Max B Kelz, Roderic G EckenhoffThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|December 5, 2014
α2-Adrenergic stimulation of the ventrolateral preoptic nucleus destabilizes the anesthetic stateHilary S McCarren, Michael R Chalifoux, Bo Han, et al.Anesthesiology|July 25, 2014
Distinctive recruitment of endogenous sleep-promoting neurons by volatile anesthetics and a nonimmobilizerBo Han, Hilary S McCarren, Dan O'Neill, et al.British Journal of Anaesthesia|April 26, 2025
A probabilistic model of behavioural emergence from general anaesthesia in miceMartha E Stone, Max B Kelz, Alex Proekt, et al.Anesthesia and Analgesia|March 19, 2019
Escape From Oblivion: Neural Mechanisms of Emergence From General AnesthesiaMax B Kelz, Paul S García, George A Mashour, et al.Pageof 8