“Papers of School of Cognitive Sciences”

 

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  271. M. Ramezanpour and H. Seyed-Allaei,
A molecular dynamics study on SSRI antidepressant drugs,
Biophysical Journal 108(2015), p469a  [abstract]

   272. H. Seyed-Allaei,
Phase diagram of spiking neural networks,
Frontiers in Computational Neuroscience 9(2015), 1-9  [abstract]

   273. M.A. Shaeri and A.M. Sodagar,
A Method for Compression of Intra-Cortically- Recorded Neural Signals Dedicated to Implantable Brain–Machine Interfaces,
IEEE Trans Neural Syst Rehabil Eng 23(2015), 485 - 497  [abstract]

   274. M. Mohammadi, M. Nasehi and M.R. Zarrindast,
Modulation of the effects of the cannabinoid agonist, ACPA, on spatial and non-spatial novelty detection in mice by dopamine D1 receptor drugs infused into the basolateral amygdala,
Behavioural Brain Research 280(2015), 36-44  [abstract]

   275. M. Nasehi, F. Kafi, F. Khakpai and M.R. Zarrindast,
Involvement of the serotonergic system of the ventral hippocampus (CA3) on amnesia induced by ACPA in mice,
Behavioural Brain Research 286(2015), 356-363  [abstract]

   276. M. Nasehi, M. Tabatabaie, F. Khakpai and M.R. Zarrindast,
The effects of CA1 5HT4 receptors in MK801-induced amnesia and hyperlocomotion,
Neuroscience Letters 587(2015), 73-78  [abstract]

   277. A. Torkaman-Boutorabi, H. Sheidadoust, S.M. Hashemi-Hezaveh and M.R. Zarrindast,
Influence of morphine on medial prefrontal cortex alpha2 adrenergic system in passive avoidance learning in rats,
Pharmacology, Biochemistry and Behavior 133(2015), 92-98  [abstract]

   278. M. Nasehi, S. Amin-Yavari , M. Ebrahimi-Ghiri, M. Torabi-Nami and M.R. Zarrindast,
The dual effect of CA1 NMDA receptor modulation on ACPA-induced amnesia in step-down passive avoidance learning task,
European Neuropsychopharmacology 25(2015), 557-565  [abstract]

   279. M. Nasehi, M. Ketabchi, F. Khakpai and M.R. Zarrindast,
The effect of CA1 dopaminergic system in harmaline-induced amnesia,
Neuroscience 285(2015), 47-59  [abstract]

   280. H. Ghazvini, A. Rezayof, Z. Ghasemzadeh and M.R. Zarrindast,
u-Opioid and N-methyl-D-aspartate receptors in the amygdala contribute to minocycline-induced potentiation of morphine analgesia in rats,
Behavioral Pharmacology 26(2015), 383-92  [abstract]

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