Cognitive disorganization is a fundamental aspect of the psychopathology of schizophrenia, contributing to the overall morbidity of the disease process and greatly impacting outcome. Current antipsychotic medications have minimal beneficial effects on cognitive deficits of schizophrenia, and design of novel treatments is contingent upon translational research that will lead to a better understanding of the neural basis of these deficits. However, feasibility of such translational studies has been limited, primarily because of the scarcity of cognitive tasks for laboratory animals that assess similar cognitive constructs as those assessed in the routinely used clinical test paradigms. One such construct is """"""""behavioral flexibility"""""""" or attentional set-shifting, which is assessed commonly in patients with schizophrenia using the Wisconsin Card Sort Test (WCST). While the limited cognitive capacity of laboratory animals, in particular rodents, hinders the design of cognitive tasks that would be considered entirely """"""""analogous"""""""" to complex tasks such as the WCST, it is possible to design behavioral paradigms that can evaluate cognitive constructs that are """"""""comparable"""""""" to those measured in many clinical test paradigms. However, while studies with laboratory animals have primarily relied on validating a task based on """"""""theoretical homology"""""""" with human tasks, to carry out clinically relevant mechanistic studies, we believe, it is crucial that """"""""functional homology"""""""" also be established. The principal aim of this application is to initiate collaborations between basic and clinical researchers and work toward standardizing quantitative measures that can be used to establish functional homology between human and animal cognitive tasks that are relevant to schizophrenia. The initial aspect of this collaboration will involve the use of parallel basic and clinical quantitative measures to establish the construct validity of a newly developed rodent task that has theoretical homology with WCST.
Specific aims are designed to characterize the structural and neurochemical homology between these tasks.

Agency
National Institute of Health (NIH)
Institute
National Institute of Mental Health (NIMH)
Type
Exploratory/Developmental Grants (R21)
Project #
5R21MH065026-02
Application #
6528995
Study Section
Special Emphasis Panel (ZMH1-NRB-W (02))
Program Officer
Anderson, Kathleen C
Project Start
2001-09-28
Project End
2004-08-31
Budget Start
2002-09-01
Budget End
2003-08-31
Support Year
2
Fiscal Year
2002
Total Cost
$362,500
Indirect Cost
Name
Yale University
Department
Psychiatry
Type
Schools of Medicine
DUNS #
082359691
City
New Haven
State
CT
Country
United States
Zip Code
06520
Jackson, Mark E; Moghaddam, Bita (2006) Distinct patterns of plasticity in prefrontal cortex neurons that encode slow and fast responses to stress. Eur J Neurosci 24:1702-10
Lewis, David A; Moghaddam, Bita (2006) Cognitive dysfunction in schizophrenia: convergence of gamma-aminobutyric acid and glutamate alterations. Arch Neurol 63:1372-6
Stefani, Mark R; Moghaddam, Bita (2006) Rule learning and reward contingency are associated with dissociable patterns of dopamine activation in the rat prefrontal cortex, nucleus accumbens, and dorsal striatum. J Neurosci 26:8810-8
Stefani, Mark Renato; Moghaddam, Bita (2005) Transient N-methyl-D-aspartate receptor blockade in early development causes lasting cognitive deficits relevant to schizophrenia. Biol Psychiatry 57:433-6
Smith, Anne C; Stefani, Mark R; Moghaddam, Bita et al. (2005) Analysis and design of behavioral experiments to characterize population learning. J Neurophysiol 93:1776-92
Stefani, Mark R; Moghaddam, Bita (2005) Systemic and prefrontal cortical NMDA receptor blockade differentially affect discrimination learning and set-shift ability in rats. Behav Neurosci 119:420-8
Homayoun, Houman; Jackson, Mark E; Moghaddam, Bita (2005) Activation of metabotropic glutamate 2/3 receptors reverses the effects of NMDA receptor hypofunction on prefrontal cortex unit activity in awake rats. J Neurophysiol 93:1989-2001
Homayoun, Houman; Stefani, Mark R; Adams, Barbara W et al. (2004) Functional Interaction Between NMDA and mGlu5 Receptors: Effects on Working Memory, Instrumental Learning, Motor Behaviors, and Dopamine Release. Neuropsychopharmacology 29:1259-69
Stefani, Mark R; Groth, Karyn; Moghaddam, Bita (2003) Glutamate receptors in the rat medial prefrontal cortex regulate set-shifting ability. Behav Neurosci 117:728-37