Association of Working Memory With Distributed Executive Control Networks in Schizophrenia

被引:7
作者
Wylie, Korey P. [1 ]
Harris, Josette G. [1 ]
Ghosh, Debashis [2 ]
Olincy, Ann [1 ]
Tregellas, Jason R. [1 ,3 ]
机构
[1] Univ Colorado, Dept Psychiat, Anschutz Med Campus, Aurora, CO 80045 USA
[2] Colorado Sch Publ Hlth, Dept Biostat & Informat, Aurora, CO USA
[3] Eastern Colorado Hlth Syst, Res Serv, Denver VA Med Ctr, Denver, CO USA
关键词
CONSENSUS COGNITIVE BATTERY; NEUROPSYCHOLOGICAL DYSFUNCTION; NEUROCOGNITIVE DEFICITS; METAANALYSIS; COMPONENTS; SELECTION; NUMBER; BACK; FMRI;
D O I
10.1176/appi.neuropsych.18060131
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Objective: Working memory impairments represent a core cognitive deficit in schizophrenia, predictive of patients' daily functioning, and one that is unaffected by current treatments. To address this, working memory is included in the MATRICS Consensus Cognitive Battery (MCCB), a standardized cognitive battery designed to facilitate drug development targeting cognitive symptoms. However, the neurobiology underlying these deficits in MCCB working memory is currently unknown, mirroring the poor understanding in general of working memory deficits in schizophrenia. Methods: Twenty-eight participants with schizophrenia were administered working memory tests from the MCCB and examined with resting-state functional MRI. Intrinsic connectivity networks were estimated with independent component analysis. Each voxel's time series was correlated with each network time series, creating a feature vector for voxel-level connectivity analysis. This feature vector was associated with working memory by using the distance covariance statistic. Results: The neurobiology of MCCB working memory tests largely followed the multicomponent model of working memory but revealed unexpected differences. The dorsolateral prefrontal cortex was not associated with working memory. The central executive system was instead associated with delocalized right and left executive control networks. The phonologic loop within the multicomponent model, a subsystem involved in storing linguistic information, was associated with connectivity to the left temporoparietal junction and inferior frontal gyrus. However, connections to the language network did not predict working memory test performance. Conclusions: These results provide supporting evidence for the multicomponent model of working memory in terms of the biology underlying MCCB findings.
引用
收藏
页码:368 / 377
页数:10
相关论文
共 43 条
[1]  
Andrade Jackie., 2001, WORKING MEMORY PERSP, DOI [10.4324/9780203194157, DOI 10.4324/9780203194157]
[2]   Frontal cortex as the central executive of working memory:: Time to revise our view [J].
Andrés, P .
CORTEX, 2003, 39 (4-5) :871-895
[3]   Unified segmentation [J].
Ashburner, J ;
Friston, KJ .
NEUROIMAGE, 2005, 26 (03) :839-851
[4]   Working memory: Looking back and looking forward [J].
Baddeley, A .
NATURE REVIEWS NEUROSCIENCE, 2003, 4 (10) :829-839
[5]   The central executive: A concept and some misconceptions [J].
Baddeley, A .
JOURNAL OF THE INTERNATIONAL NEUROPSYCHOLOGICAL SOCIETY, 1998, 4 (05) :523-526
[6]   Binding in visual working memory: The role of the episodic buffer [J].
Baddeley, Alan D. ;
Allen, Richard J. ;
Hitch, Graham J. .
NEUROPSYCHOLOGIA, 2011, 49 (06) :1393-1400
[7]   CNTRICS Imaging Biomarkers Selection: Working Memory [J].
Barch, Deanna M. ;
Moore, Holly ;
Nee, Derek E. ;
Manoach, Dara S. ;
Luck, Steven J. .
SCHIZOPHRENIA BULLETIN, 2012, 38 (01) :43-52
[8]   AN INFORMATION MAXIMIZATION APPROACH TO BLIND SEPARATION AND BLIND DECONVOLUTION [J].
BELL, AJ ;
SEJNOWSKI, TJ .
NEURAL COMPUTATION, 1995, 7 (06) :1129-1159
[9]   The economy of brain network organization [J].
Bullmore, Edward T. ;
Sporns, Olaf .
NATURE REVIEWS NEUROSCIENCE, 2012, 13 (05) :336-349
[10]   A method for making group inferences from functional MRI data using independent component analysis [J].
Calhoun, VD ;
Adali, T ;
Pearlson, GD ;
Pekar, JJ .
HUMAN BRAIN MAPPING, 2001, 14 (03) :140-151