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Brain Research|February 8, 2005
The consequences of uncontrollable stress are sensitive to duration of prior wheel runningBenjamin N Greenwood, Teresa E Foley, Dan Burhans, et al.Behavioural Brain Research|May 22, 2012
The protective effects of voluntary exercise against the behavioral consequences of uncontrollable stress persist despite an increase in anxiety following forced cessation of exerciseBenjamin N Greenwood, Alice B Loughridge, Nouara Sadaoui, et al.Journal of Applied Physiology (Bethesda, Md. : 1985)|March 26, 2003
B-1 cell (CD5+/CD11b+) numbers and nIgM levels are elevated in physically active vs. sedentary ratsGwendolyn F Elphick, Julie Wieseler-Frank, Benjamin N Greenwood, et al.Brain, Behavior, and Immunity|October 30, 2012
The inflammasome and danger associated molecular patterns (DAMPs) are implicated in cytokine and chemokine responses following stressor exposureThomas Maslanik, Lucas Mahaffey, Kate Tannura, et al.Behavioural Brain Research|January 26, 2011
Voluntary wheel running produces resistance to inescapable stress-induced potentiation of morphine conditioned place preferenceRobert R Rozeske, Benjamin N Greenwood, Monika Fleshner, et al.Current Topics in Behavioral Neurosciences|July 30, 2024
Multiple Sex- and Circuit-Specific Mechanisms Underlie Exercise-Induced Stress ResistanceMargaret K Tanner, Simone M Mellert, Isabella P Fallon, et al.Neuroreport|April 11, 2006
Behavioral control of the stressor modulates stress-induced changes in neurogenesis and fibroblast growth factor-2Sondra T Bland, Megan J Schmid, Benjamin N Greenwood, et al.Frontiers in Behavioral Neuroscience|May 30, 2013
Microarray analyses reveal novel targets of exercise-induced stress resistance in the dorsal raphe nucleusAlice B Loughridge, Benjamin N Greenwood, Heidi E W Day, et al.Physiology & Behavior|March 5, 2013
Effects of stressor controllability on diurnal physiological rhythmsRobert S Thompson, John P Christianson, Thomas M Maslanik, et al.Neuroreport|October 15, 2016
Possible mechanisms of hypothermia after inhibition of the median or dorsal raphe nucleus of freely moving ratsTakayuki Ishiwata, Arisa Oshimoto, Takehito Saito, et al.Pageof 7