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Dissociable Forms of Inhibitory Control Within Prefrontal Cortex with an Analog of the Wisconsin Card Sort Test: Restriction to Novel Situations and Independence from "on-line" Processing

Overview
Journal J Neurosci
Specialty Neurology
Date 1997 Dec 31
PMID 9364074
Citations 175
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Abstract

Attentional set-shifting and discrimination reversal are sensitive to prefrontal damage in the marmoset in a manner qualitatively similar to that seen in man and Old World monkeys, respectively (Dias et al., 1996b). Preliminary findings have demonstrated that although lateral but not orbital prefrontal cortex is the critical locus in shifting an attentional set between perceptual dimensions, orbital but not lateral prefrontal cortex is the critical locus in reversing a stimulus-reward association within a particular perceptual dimension (Dias et al., 1996a). The present study presents this analysis in full and extends the results in three main ways by demonstrating that (1) mechanisms of inhibitory control and "on-line" processing are independent within the prefrontal cortex, (2) impairments in inhibitory control induced by prefrontal damage are restricted to novel situations, and (3) those prefrontal areas involved in the suppression of previously established response sets are not involved in the acquisition of such response sets. These findings suggest that inhibitory control is a general process that operates across functionally distinct regions within the prefrontal cortex. Although damage to lateral prefrontal cortex causes a loss of inhibitory control in attentional selection, damage to orbitofrontal cortex causes a loss of inhibitory control in affective processing. These findings provide an explanation for the apparent discrepancy between human and nonhuman primate studies in which disinhibition as measured on the Wisconsin Card Sort Test is associated with dorsolateral prefrontal damage, whereas disinhibition as measured on discrimination reversal is associated with orbitofrontal damage.

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References
1.
Wise S, Murray E, Gerfen C . The frontal cortex-basal ganglia system in primates. Crit Rev Neurobiol. 1996; 10(3-4):317-56. DOI: 10.1615/critrevneurobiol.v10.i3-4.30. View

2.
Petrides M . Specialized systems for the processing of mnemonic information within the primate frontal cortex. Philos Trans R Soc Lond B Biol Sci. 1996; 351(1346):1455-61; discussion 1461-2. DOI: 10.1098/rstb.1996.0130. View

3.
Nauta W . The problem of the frontal lobe: a reinterpretation. J Psychiatr Res. 1971; 8(3):167-87. DOI: 10.1016/0022-3956(71)90017-3. View

4.
Eslinger P, Damasio A . Severe disturbance of higher cognition after bilateral frontal lobe ablation: patient EVR. Neurology. 1985; 35(12):1731-41. DOI: 10.1212/wnl.35.12.1731. View

5.
Courtney S, Ungerleider L, Keil K, Haxby J . Object and spatial visual working memory activate separate neural systems in human cortex. Cereb Cortex. 1996; 6(1):39-49. DOI: 10.1093/cercor/6.1.39. View