Literature DB >> 10088901

Automatic activation of the medial temporal lobe during encoding: lateralized influences of meaning and novelty.

A Martin1.   

Abstract

In contrast to early failures, recent functional brain imaging studies have shown that medial temporal lobe (MTL) structures are active during performance of a variety of tasks. These studies have revealed three properties of the MTL that are consistent with its critical role in establishing new declarative memories. First, the MTL is automatically engaged whenever an event is experienced, with the side of activation (left, right) dependent on the nature of the material presented (verbal, nonverbal). Second, the strength or amount of activity depends on how well the material is encoded. Deep encoding will produce more MTL activity than shallow encoding. Depth of encoding-related increases in activity are more commonly seen on the left, because deep encoding is nearly always synonymous with encoding for meaning, and, therefore, depends on left-lateralized language mechanisms. Third, the amount of MTL activity depends on novelty. Unfamiliar events and contexts will produce more MTL activity than familiar events and contexts. Novelty-related increases are more commonly seen on the right, perhaps reflecting the greater role of the right hemisphere in maintaining tonic attention and arousal. These findings suggest a hemispheric division of labor involving encoding for meaning (left) and novelty detection (right), both of which lead to better remembering.

Entities:  

Mesh:

Year:  1999        PMID: 10088901     DOI: 10.1002/(SICI)1098-1063(1999)9:1<62::AID-HIPO7>3.0.CO;2-K

Source DB:  PubMed          Journal:  Hippocampus        ISSN: 1050-9631            Impact factor:   3.899


  38 in total

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8.  Spatiotemporal distribution of cortical processing of first and second languages in bilinguals. II. Effects of phonologic and semantic priming.

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9.  Latent profiles of executive functioning in healthy young adults: evidence of individual differences in hemispheric asymmetry.

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10.  Cognitive functions in low-grade gliomas: disease and treatment effects.

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