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Research ArticleBrain
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Generation of Individualized Thalamus Target Maps by Using Statistical Shape Models and Thalamocortical Tractography

A. Jakab, R. Blanc, E.L. Berényi and G. Székely
American Journal of Neuroradiology June 2012, DOI: https://doi.org/10.3174/ajnr.A3140
A. Jakab
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R. Blanc
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E.L. Berényi
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G. Székely
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Abstract

BACKGROUND AND PURPOSE: Neurosurgical interventions of the thalamus rely on transferring stereotactic coordinates from an atlas onto the patient's MR brain images. We propose a prototype application for performing thalamus target map individualization by fusing patient-specific thalamus geometric information and diffusion tensor tractography.

MATERIALS AND METHODS: Previously, our workgroup developed a thalamus atlas by fusing anatomic information from 7 histologically processed thalami. Thalamocortical connectivity maps were generated from DTI scans of 40 subjects by using a previously described procedure and were mapped to a standard neuroimaging space. These data were merged into a statistical shape model describing the morphologic variability of the thalamic outline, nuclei, and connectivity landmarks. This model was used to deform the atlas to individual images. Postmortem MR imaging scans were used to quantify the accuracy of nuclei predictions.

RESULTS: Reliable tractography-based markers were located in the ventral lateral thalamus, with the somatosensory connections coinciding with the VPLa and VPLp nuclei; and motor/premotor connections, with the VLpv and VLa nuclei. Prediction accuracy of thalamus outlines was higher with the SSM approach than the ACPC alignment of data (0.56 mm versus 1.24; Dice overlap: 0.87 versus 0.7); for individual nuclei: 0.65 mm, Dice: 0.63 (SSM); 1.24 mm, Dice: 0.4 (ACPC).

CONCLUSIONS: Previous studies have already applied DTI to the thalamus. As a further step in this direction, we demonstrate a hybrid approach by using statistical shape models, which have the potential to cope with intersubject variations in individual thalamus geometry.

Abbreviations

ACPC
anterior/posterior commissure
COM
center of mass
MNI
Montreal Neurological Institute
SSM
statistical shape model
STN
subthalamic nucleus
VA
ventral anterior nucleus, parvocellular part
VL
ventral lateral nucleus
VLa
ventral lateral nucleus, anterior part
VPLa
ventral posterior lateral nucleus, anterior part
VPLp
ventral posterior lateral nucleus, posterior part
VLpv
ventral lateral nucleus, posteroventral part
  • © 2012 American Society of Neuroradiology

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Cite this article
A. Jakab, R. Blanc, E.L. Berényi, G. Székely
Generation of Individualized Thalamus Target Maps by Using Statistical Shape Models and Thalamocortical Tractography
American Journal of Neuroradiology Jun 2012, DOI: 10.3174/ajnr.A3140

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Generation of Individualized Thalamus Target Maps by Using Statistical Shape Models and Thalamocortical Tractography
A. Jakab, R. Blanc, E.L. Berényi, G. Székely
American Journal of Neuroradiology Jun 2012, DOI: 10.3174/ajnr.A3140
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