A Computational Model for Spatial Working Memory Deficits in Schizophrenia

被引:22
作者
Cano-Colino, M. [1 ]
Compte, A. [1 ]
机构
[1] Inst Invest Biomed August Pi i Sunyer IDIBAPS, Barcelona 08036, Spain
关键词
delayed response; prefrontal cortex; NMDA receptor; inhibition; network; attractor; CORTICAL NETWORK MODEL; PREFRONTAL CORTEX; PERSISTENT ACTIVITY; SYNAPTIC MECHANISMS; NMDA RECEPTORS; INHIBITION; INTERNEURONS; PARVALBUMIN; NEURONS; MONKEYS;
D O I
10.1055/s-0032-1306314
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Cognitive deficits in schizophrenia have been hypothesized to be caused by altered synaptic transmission in circuits of the prefrontal cortex. 2 main hypotheses have been put forward: reduced inhibition and hypofunctional NMDA receptors. Recently. Lee et al. (2008) found that spatial working memory deficits in schizophrenic patients include a disproportionately high incidence of high-confidence error responses. Here, we have studied what synaptic dysfunction can generate this specific behavioral deficit using a computational network model of spatial working memory. We developed quantitative behavioral readout from our network simulations, which reflected the qualitative properties of underlying neural dynamics. We then analyzed the behavioral effect of the GABAergic and glutamatergic hypotheses on our network simulations. We found that reduction in inhibitory transmission in the network caused a reduction in performance through an increase of high-confidence errors, as in the experimental data. In contrast, a concerted reduction in NMDA-receptordependent transmission reduced performance via increased low-confidence errors. Only when NMDA receptors were specifically depleted in interneurons did the behavioral read-out of our network mimic the behavioral results for schizophrenic patients. Thus, dynamics in our model network support a role of both global inhibition reduction and hypofunctional NMDA receptors in interneurons in generating the behavioral deficits of simple spatial working memory tasks in schizophrenia.
引用
收藏
页码:S49 / S56
页数:8
相关论文
共 45 条
[1]  
[Anonymous], 2009, Encyclopedia of Neuroscience, DOI [10.1016/B978-008045046-9.01434-0, DOI 10.1016/B978-008045046-9.01434-0]
[2]   Cognition in schizophrenia: core psychological and neural mechanisms [J].
Barch, Deanna M. ;
Ceaser, Alan .
TRENDS IN COGNITIVE SCIENCES, 2012, 16 (01) :27-34
[3]   Postnatal NMDA receptor ablation in corticolimbic interneurons confers schizophrenia-like phenotypes [J].
Belforte, Juan E. ;
Zsiros, Veronika ;
Sklar, Elyse R. ;
Jiang, Zhihong ;
Yu, Gu ;
Li, Yuqing ;
Quinlan, Elizabeth M. ;
Nakazawa, Kazu .
NATURE NEUROSCIENCE, 2010, 13 (01) :76-U240
[4]   Effects of neuromodulation in a cortical network model of object working memory dominated by recurrent inhibition [J].
Brunel, N ;
Wang, XJ .
JOURNAL OF COMPUTATIONAL NEUROSCIENCE, 2001, 11 (01) :63-85
[5]   Synaptic mechanisms and network dynamics underlying spatial working memory in a cortical network model [J].
Compte, A ;
Brunel, N ;
Goldman-Rakic, PS ;
Wang, XJ .
CEREBRAL CORTEX, 2000, 10 (09) :910-923
[6]   Computational and in vitro studies of persistent activity:: Edging towards cellular and synaptic mechanisms of working memory [J].
Compte, A .
NEUROSCIENCE, 2006, 139 (01) :135-151
[7]   A neural circuit basis for spatial working memory [J].
Constantinidis, C ;
Wang, XJ .
NEUROSCIENTIST, 2004, 10 (06) :553-565
[8]   Glutamate and schizophrenia: beyond the dopamine hypothesis. [J].
Joseph T. Coyle .
Cellular and Molecular Neurobiology, 2006, 26 (4) :365-384
[9]   Dopamine-mediated stabilization of delay-period activity in a network model of prefrontal cortex [J].
Durstewitz, D ;
Seamans, JK ;
Sejnowski, TJ .
JOURNAL OF NEUROPHYSIOLOGY, 2000, 83 (03) :1733-1750
[10]   The Dual-State Theory of Prefrontal Cortex Dopamine Function with Relevance to Catechol-O-Methyltransferase Genotypes and Schizophrenia [J].
Durstewitz, Daniel ;
Seamans, Jeremy K. .
BIOLOGICAL PSYCHIATRY, 2008, 64 (09) :739-749