Elsevier

NeuroImage

Volume 235, 15 July 2021, 117996
NeuroImage

The Subcortical Atlas of the Rhesus Macaque (SARM) for neuroimaging

https://doi.org/10.1016/j.neuroimage.2021.117996Get rights and content
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Highlights

  • We present the Subcortical Atlas of the Rhesus Macaque (SARM).

  • Digital maps at multiple spatial scales allow for flexible analysis and labeling.

  • The maps are based on 210 primary regions-of-interest (ROIs) and composites thereof.

  • SARM facilitates subcortical neuroimaging analysis and experimental planning.

  • SARM is in the NMT v2 template space and complements the CHARM atlas for the cortex.

Abstract

Digitized neuroanatomical atlases that can be overlaid onto functional data are crucial for localizing brain structures and analyzing functional networks identified by neuroimaging techniques. To aid in functional and structural data analysis, we have created a comprehensive parcellation of the rhesus macaque subcortex using a high-resolution ex vivo structural imaging scan. This anatomical scan and its parcellation were warped to the updated NIMH Macaque Template (NMT v2), an in vivo population template, where the parcellation was refined to produce the Subcortical Atlas of the Rhesus Macaque (SARM) with 210 primary regions-of-interest (ROIs). The subcortical parcellation and nomenclature reflect those of the 4th edition of the Rhesus Monkey Brain in Stereotaxic Coordinates (Paxinos et al., in preparation), rather than proposing yet another novel atlas. The primary ROIs are organized across six spatial hierarchical scales from small, fine-grained ROIs to broader composites of multiple ROIs, making the SARM suitable for analysis at different resolutions and allowing broader labeling of functional signals when more accurate localization is not possible. As an example application of this atlas, we have included a functional localizer for the dorsal lateral geniculate (DLG) nucleus in three macaques using a visual flickering checkerboard stimulus, identifying and quantifying significant fMRI activation in this atlas region. The SARM has been made openly available to the neuroimaging community and can easily be used with common MRI data processing software, such as AFNI, where the atlas has been embedded into the software alongside cortical macaque atlases.

Keywords

Segmentation
Anatomy
Subcortex
Cerebellum
Thalamus
Brainstem

Abbreviations

fMRI
functional Magnetic Resonance Imaging
DLG
Dorsal Lateral Geniculate
NHP
non-human primate
NMT v2
NIMH Macaque Template version 2
RMBSC4
4th edition of the Rhesus Monkey Brain in Stereotaxic Coordinates
ROIs
regions of interest
SARM
Subcortical Atlas of the Rhesus Macaque
CHARM
Cortical Hierarchy Atlas of the Rhesus Macaque

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