Associations evoked during memory encoding recruit the context-network.

Standard

Associations evoked during memory encoding recruit the context-network. / Peters, Jan; Daum, Irene; Gizewski, Elke; Forsting, Michael; Suchan, Boris.

In: HIPPOCAMPUS, Vol. 19, No. 2, 2, 2009, p. 141-151.

Research output: SCORING: Contribution to journalSCORING: Journal articleResearchpeer-review

Harvard

Peters, J, Daum, I, Gizewski, E, Forsting, M & Suchan, B 2009, 'Associations evoked during memory encoding recruit the context-network.', HIPPOCAMPUS, vol. 19, no. 2, 2, pp. 141-151. <http://www.ncbi.nlm.nih.gov/pubmed/18777560?dopt=Citation>

APA

Peters, J., Daum, I., Gizewski, E., Forsting, M., & Suchan, B. (2009). Associations evoked during memory encoding recruit the context-network. HIPPOCAMPUS, 19(2), 141-151. [2]. http://www.ncbi.nlm.nih.gov/pubmed/18777560?dopt=Citation

Vancouver

Peters J, Daum I, Gizewski E, Forsting M, Suchan B. Associations evoked during memory encoding recruit the context-network. HIPPOCAMPUS. 2009;19(2):141-151. 2.

Bibtex

@article{5f0659f605864a3383f2d3653c6f1eff,
title = "Associations evoked during memory encoding recruit the context-network.",
abstract = "An extensive cortical network consisting of structures in the medial temporal lobe (hippocampus and parahippocampal cortex), lateral parietal cortex, retrosplenial cortex, and medial prefrontal cortex has recently attracted attention in cognitive neuroscience research, linking the network to both episodic memory and spatial processing. It has been suggested that its function may be best characterized as supporting the processing of contextual associations (context network). In this study, we explored whether the role of this network in contextual processing extends to associations that are evoked in a spontaneous manner. In a novel memory encoding task, participants indicated whether they encoded pictures (objects and novel faces) based on an evoked association or based on a perceptual feature. Memory encoding with subjective associations enhanced memory formation relative to feature-based encoding, and this effect was more pronounced for rapidly evoked associations. Functional magnetic resonance imaging during encoding yielded significant activations in all regions of the context network, i.e., medial prefrontal cortex, lateral parietal cortex, retrosplenial cortex, and posterior medial temporal lobe for the associative vs. feature-based comparisons. The low number of misses did not permit the analysis of a subsequent memory contrast. Our data suggest that the context network, which includes the posterior hippocampus and parahippocampal cortex, might support the linkage of external stimuli to long-term memory representations.",
author = "Jan Peters and Irene Daum and Elke Gizewski and Michael Forsting and Boris Suchan",
year = "2009",
language = "Deutsch",
volume = "19",
pages = "141--151",
journal = "HIPPOCAMPUS",
issn = "1050-9631",
publisher = "Wiley-Liss Inc.",
number = "2",

}

RIS

TY - JOUR

T1 - Associations evoked during memory encoding recruit the context-network.

AU - Peters, Jan

AU - Daum, Irene

AU - Gizewski, Elke

AU - Forsting, Michael

AU - Suchan, Boris

PY - 2009

Y1 - 2009

N2 - An extensive cortical network consisting of structures in the medial temporal lobe (hippocampus and parahippocampal cortex), lateral parietal cortex, retrosplenial cortex, and medial prefrontal cortex has recently attracted attention in cognitive neuroscience research, linking the network to both episodic memory and spatial processing. It has been suggested that its function may be best characterized as supporting the processing of contextual associations (context network). In this study, we explored whether the role of this network in contextual processing extends to associations that are evoked in a spontaneous manner. In a novel memory encoding task, participants indicated whether they encoded pictures (objects and novel faces) based on an evoked association or based on a perceptual feature. Memory encoding with subjective associations enhanced memory formation relative to feature-based encoding, and this effect was more pronounced for rapidly evoked associations. Functional magnetic resonance imaging during encoding yielded significant activations in all regions of the context network, i.e., medial prefrontal cortex, lateral parietal cortex, retrosplenial cortex, and posterior medial temporal lobe for the associative vs. feature-based comparisons. The low number of misses did not permit the analysis of a subsequent memory contrast. Our data suggest that the context network, which includes the posterior hippocampus and parahippocampal cortex, might support the linkage of external stimuli to long-term memory representations.

AB - An extensive cortical network consisting of structures in the medial temporal lobe (hippocampus and parahippocampal cortex), lateral parietal cortex, retrosplenial cortex, and medial prefrontal cortex has recently attracted attention in cognitive neuroscience research, linking the network to both episodic memory and spatial processing. It has been suggested that its function may be best characterized as supporting the processing of contextual associations (context network). In this study, we explored whether the role of this network in contextual processing extends to associations that are evoked in a spontaneous manner. In a novel memory encoding task, participants indicated whether they encoded pictures (objects and novel faces) based on an evoked association or based on a perceptual feature. Memory encoding with subjective associations enhanced memory formation relative to feature-based encoding, and this effect was more pronounced for rapidly evoked associations. Functional magnetic resonance imaging during encoding yielded significant activations in all regions of the context network, i.e., medial prefrontal cortex, lateral parietal cortex, retrosplenial cortex, and posterior medial temporal lobe for the associative vs. feature-based comparisons. The low number of misses did not permit the analysis of a subsequent memory contrast. Our data suggest that the context network, which includes the posterior hippocampus and parahippocampal cortex, might support the linkage of external stimuli to long-term memory representations.

M3 - SCORING: Zeitschriftenaufsatz

VL - 19

SP - 141

EP - 151

JO - HIPPOCAMPUS

JF - HIPPOCAMPUS

SN - 1050-9631

IS - 2

M1 - 2

ER -