Lijun Heng

RFUMS-The Chicago Medical School, North Chicago, IL, United States 
prefrontal cortex, plasticity, electrophysiology
"Lijun Heng"
Mean distance: 17.3 (cluster 6)
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Jianchao W, Dongning L, Yongjian C, et al. (2015) Stress triggering of the 2012 Sumatra Mw 8.2 earthquake by the 2012 Sumatra Mw 8.6 earthquake Electronic Journal of Geotechnical Engineering. 20: 213-219
Wang XQ, Ma J, Cui W, et al. (2014) The endocannabinoid system regulates synaptic transmission in nucleus accumbens by increasing DAGL-α expression following short-term morphine withdrawal. British Journal of Pharmacology
Heng LJ, Huang B, Guo H, et al. (2014) Blocking TRPV1 in nucleus accumbens inhibits persistent morphine conditioned place preference expression in rats. Plos One. 9: e104546
Jia D, Heng LJ, Yang RH, et al. (2014) Fish oil improves learning impairments of diabetic rats by blocking PI3K/AKT/nuclear factor-κB-mediated inflammatory pathways. Neuroscience. 258: 228-37
Flores-Barrera E, Thomases DR, Heng LJ, et al. (2014) Late adolescent expression of GluN2B transmission in the prefrontal cortex is input-specific and requires postsynaptic protein kinase A and D1 dopamine receptor signaling. Biological Psychiatry. 75: 508-16
Yuan WX, Heng LJ, Ma J, et al. (2013) Increased expression of cannabinoid receptor 1 in the nucleus accumbens core in a rat model with morphine withdrawal. Brain Research. 1531: 102-12
Yang C, Ge SN, Zhang JR, et al. (2013) Systemic blockade of dopamine D2-like receptors increases high-voltage spindles in the globus pallidus and motor cortex of freely moving rats. Plos One. 8: e64637
Ma J, Cui W, He SM, et al. (2012) Human U87 astrocytoma cell invasion induced by interaction of βig-h3 with integrin α5β1 involves calpain-2. Plos One. 7: e37297
Heng LJ, Yang RH, Jia D. (2011) Diabetes impairs learning performance through affecting membrane excitability of hippocampal pyramidal neurons. Behavioural Brain Research. 224: 250-8
Heng LJ, Markham JA, Hu XT, et al. (2011) Concurrent upregulation of postsynaptic L-type Ca(2+) channel function and protein kinase A signaling is required for the periadolescent facilitation of Ca(2+) plateau potentials and dopamine D1 receptor modulation in the prefrontal cortex. Neuropharmacology. 60: 953-62
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