Brenda J. Anderson

Stony Brook University, Stony Brook, NY, United States 
"Brenda Anderson"
Mean distance: 13.92 (cluster 19)
Cross-listing: PsychTree

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Thanos PK, Stamos J, Robison LS, et al. (2013) Daily treadmill exercise attenuates cocaine cue-induced reinstatement and cocaine induced locomotor response but increases cocaine-primed reinstatement. Behavioural Brain Research. 239: 8-14
Anderson BJ. (2011) Plasticity of gray matter volume: the cellular and synaptic plasticity that underlies volumetric change. Developmental Psychobiology. 53: 456-65
Anderson BJ, Greenwood SJ, McCloskey D. (2010) Exercise as an intervention for the age-related decline in neural metabolic support. Frontiers in Aging Neuroscience. 2
Thanos PK, Kim R, Cho J, et al. (2010) Obesity-resistant S5B rats showed greater cocaine conditioned place preference than the obesity-prone OM rats. Physiology & Behavior. 101: 713-8
Thanos PK, Tucci A, Stamos J, et al. (2010) Chronic forced exercise during adolescence decreases cocaine conditioned place preference in Lewis rats. Behavioural Brain Research. 215: 77-82
Thanos PK, Habibi R, Michaelides M, et al. (2010) Dopamine D4 receptor (D4R) deletion in mice does not affect operant responding for food or cocaine. Behavioural Brain Research. 207: 508-11
Tata DA, Anderson BJ. (2010) The effects of chronic glucocorticoid exposure on dendritic length, synapse numbers and glial volume in animal models: implications for hippocampal volume reductions in depression. Physiology & Behavior. 99: 186-93
Blackshear A, Yamamoto M, Anderson BJ, et al. (2007) Intracerebroventricular administration of galanin or galanin receptor subtype 1 agonist M617 induces c-Fos activation in central amygdala and dorsomedial hypothalamus. Peptides. 28: 1120-4
Tata DA, Marciano VA, Anderson BJ. (2006) Synapse loss from chronically elevated glucocorticoids: relationship to neuropil volume and cell number in hippocampal area CA3. The Journal of Comparative Neurology. 498: 363-74
Anderson BJ, Eckburg PB, Relucio KI. (2002) Alterations in the thickness of motor cortical subregions after motor-skill learning and exercise. Learning & Memory (Cold Spring Harbor, N.Y.). 9: 1-9
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