Literature DB >> 15166103

3-D diffusion tensor axonal tracking shows distinct SMA and pre-SMA projections to the human striatum.

Stéphane Lehéricy1, Mathieu Ducros, Alexandre Krainik, Chantal Francois, Pierre-François Van de Moortele, Kamil Ugurbil, Dae-Shik Kim.   

Abstract

Studies in non-human primates have shown that medial premotor projections to the striatum are characterized as a set of distinct circuits conveying different type of information. This study assesses the anatomical projections from the supplementary motor area (SMA), pre-SMA and motor cortex (MC) to the human striatum using diffusion tensor imaging (DTI) axonal tracking. Eight right-handed volunteers were studied at 1.5 T using DTI axonal tracking. A connectivity matrix was computed, which tested for connections between cortical areas (MC, SMA and pre-SMA) and subcortical areas (posterior, middle and anterior putamen and the head of the caudate nucleus) in each hemisphere. Pre-SMA projections to the striatum were located rostral to SMA projections to the striatum. The SMA and the MC were similarly connected to the posterior and middle putamen and not to the anterior striatum. These data show that the MC and SMA have connections with similar parts of the sensorimotor compartment of the human striatum, whereas the pre-SMA sends connections to more rostral parts of the striatum, including the associative compartment.

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Year:  2004        PMID: 15166103     DOI: 10.1093/cercor/bhh091

Source DB:  PubMed          Journal:  Cereb Cortex        ISSN: 1047-3211            Impact factor:   5.357


  108 in total

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8.  Distinct basal ganglia territories are engaged in early and advanced motor sequence learning.

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