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AJNR Awards, New Junior Editors, and more. Read the latest AJNR updates

Research ArticleAdult Brain
Open Access

3T MRI Whole-Brain Microscopy Discrimination of Subcortical Anatomy, Part 2: Basal Forebrain

M.J. Hoch, M.T. Bruno, A. Faustin, N. Cruz, A.Y. Mogilner, L. Crandall, T. Wisniewski, O. Devinsky and T.M. Shepherd
American Journal of Neuroradiology July 2019, 40 (7) 1095-1105; DOI: https://doi.org/10.3174/ajnr.A6088
M.J. Hoch
aFrom the Department of Radiology and Imaging Sciences, (M.J.H.), Emory University, Atlanta, Georgia
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M.T. Bruno
bDepartments of Radiology (M.T.B., N.C., T.M.S.)
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A. Faustin
cPathology (A.F., T.W.)
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N. Cruz
bDepartments of Radiology (M.T.B., N.C., T.M.S.)
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A.Y. Mogilner
dNeurosurgery (A.Y.M.)
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L. Crandall
eNeurology (L.C., T.W., O.D.)
gSUDC Foundation (L.C., O.D.), New York, New York
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T. Wisniewski
cPathology (A.F., T.W.)
eNeurology (L.C., T.W., O.D.)
fPsychiatry (T.W.), New York University, New York, New York
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O. Devinsky
eNeurology (L.C., T.W., O.D.)
gSUDC Foundation (L.C., O.D.), New York, New York
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T.M. Shepherd
bDepartments of Radiology (M.T.B., N.C., T.M.S.)
hCenter for Advanced Imaging Innovation and Research (T.M.S.), New York, New York.
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Abstract

BACKGROUND AND PURPOSE: The basal forebrain contains multiple structures of great interest to emerging functional neurosurgery applications, yet many neuroradiologists are unfamiliar with this neuroanatomy because it is not resolved with current clinical MR imaging.

MATERIALS AND METHODS: We applied an optimized TSE T2 sequence to washed whole postmortem brain samples (n = 13) to demonstrate and characterize the detailed anatomy of the basal forebrain using a clinical 3T MR imaging scanner. We measured the size of selected internal myelinated pathways and measured subthalamic nucleus size, oblique orientation, and position relative to the intercommissural point.

RESULTS: We identified most basal ganglia and diencephalon structures using serial axial, coronal, and sagittal planes relative to the intercommissural plane. Specific oblique image orientations demonstrated the positions and anatomic relationships for selected structures of interest to functional neurosurgery. We observed only 0.2- to 0.3-mm right-left differences in the anteroposterior and superoinferior length of the subthalamic nucleus (P = .084 and .047, respectively). Individual variability for the subthalamic nucleus was greatest for angulation within the sagittal plane (range, 15°–37°), transverse dimension (range, 2–6.7 mm), and most inferior border (range, 4–7 mm below the intercommissural plane).

CONCLUSIONS: Direct identification of basal forebrain structures in multiple planes using the TSE T2 sequence makes this challenging neuroanatomy more accessible to practicing neuroradiologists. This protocol can be used to better define individual variations relevant to functional neurosurgical targeting and validate/complement advanced MR imaging methods being developed for direct visualization of these structures in living patients.

ABBREVIATIONS:

DBS
deep brain stimulation
DRT
dentatorubrothalamic tract
PLIC
posterior limb of the internal capsule
STN
subthalamic nucleus
SUDC
sudden unexplained death of childhood
Vim
thalamic ventrointermedius nucleus
ZI
zona incerta
  • © 2019 by American Journal of Neuroradiology

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American Journal of Neuroradiology: 40 (7)
American Journal of Neuroradiology
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1 Jul 2019
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Cite this article
M.J. Hoch, M.T. Bruno, A. Faustin, N. Cruz, A.Y. Mogilner, L. Crandall, T. Wisniewski, O. Devinsky, T.M. Shepherd
3T MRI Whole-Brain Microscopy Discrimination of Subcortical Anatomy, Part 2: Basal Forebrain
American Journal of Neuroradiology Jul 2019, 40 (7) 1095-1105; DOI: 10.3174/ajnr.A6088

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3T MRI Whole-Brain Microscopy Discrimination of Subcortical Anatomy, Part 2: Basal Forebrain
M.J. Hoch, M.T. Bruno, A. Faustin, N. Cruz, A.Y. Mogilner, L. Crandall, T. Wisniewski, O. Devinsky, T.M. Shepherd
American Journal of Neuroradiology Jul 2019, 40 (7) 1095-1105; DOI: 10.3174/ajnr.A6088
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