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Research ArticleADULT BRAIN
Open Access

Comparison of Hippocampal Subfield Segmentation Agreement between 2 Automated Protocols across the Adult Life Span

A. Samara, C.A. Raji, Z. Li and T. Hershey
American Journal of Neuroradiology August 2021, DOI: https://doi.org/10.3174/ajnr.A7244
A. Samara
aFrom the Department of Psychiatry (A.S., Z.L., T.H.)
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C.A. Raji
bMallinckrodt Institute of Radiology (C.A.R., T.H.)
cDepartments of Neurology (C.A.R., T.H.)
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Z. Li
aFrom the Department of Psychiatry (A.S., Z.L., T.H.)
dPsychological and Brain Sciences (Z.L.), Washington University School of Medicine, St. Louis, Missouri
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T. Hershey
aFrom the Department of Psychiatry (A.S., Z.L., T.H.)
bMallinckrodt Institute of Radiology (C.A.R., T.H.)
cDepartments of Neurology (C.A.R., T.H.)
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Abstract

BACKGROUND AND PURPOSE: The hippocampus is a frequent focus of quantitative neuroimaging research, and structural hippocampal alterations are related to multiple neurocognitive disorders. An increasing number of neuroimaging studies are focusing on hippocampal subfield regional involvement in these disorders using various automated segmentation approaches. Direct comparisons among these approaches are limited. The purpose of this study was to compare the agreement between two automated hippocampal segmentation algorithms in an adult population.

MATERIALS AND METHODS: We compared the results of 2 automated segmentation algorithms for hippocampal subfields (FreeSurfer v6.0 and volBrain) within a single imaging data set from adults (n = 176, 89 women) across a wide age range (20–79 years). Brain MR imaging was acquired on a single 3T scanner as part of the IXI Brain Development Dataset and included T1- and T2-weighted MR images. We also examined subfield volumetric differences related to age and sex and the impact of different intracranial volume and total hippocampal volume normalization methods.

RESULTS: Estimated intracranial volume and total hippocampal volume of both protocols were strongly correlated (r = 0.93 and 0.9, respectively; both P < .001). Hippocampal subfield volumes were correlated (ranging from r = 0.42 for the subiculum to r = 0.78 for the cornu ammonis [CA]1, all P < .001). However, absolute volumes were significantly different between protocols. volBrain produced larger CA1 and CA4-dentate gyrus and smaller CA2-CA3 and subiculum volumes compared with FreeSurfer v6.0. Regional age- and sex-related differences in subfield volumes were qualitatively and quantitatively different depending on segmentation protocol and intracranial volume/total hippocampal volume normalization method.

CONCLUSIONS: The hippocampal subfield volume relationship to demographic factors and disease states should undergo nuanced interpretation, especially when considering different segmentation protocols.

ABBREVIATIONS:

CA
cornu ammonis
DG
dentate gyrus
HPSF
hippocampal subfield
ICV
intracranial volume
SR-SL-SM
strata radiatum-lacunosum-moleculare
THV
total hippocampal volume

Footnotes

  • A. Samara and C.A. Raji contributed equally to this work.

  • A. Samara was supported by National Institute on Drug Abuse (grant No. 5T32DA007261-29). C.A.R. was supported by Washington University in St. Louis, National Institutes of Health KL2 Grant (KL2 TR000450, Institute of Clinical and Translational Sciences Multidisciplinary Clinical Research Career Development Program), and the Radiological Society of North America Research Scholar Grant.

  • Disclosures: Amjad Samara—RELATED: Grant: National Institutes on Drug Abuse, Comments: Amjad Samara was supported by National Institute on Drug Abuse (grant No. 5T32DA007261-29). Cyrus A. Raji—UNRELATED: Board Membership: Brainreader ApS; Consultancy: Apollo Health; Expert Testimony: Neurevolution Medical; Grants/Grants Pending: National Institutes of Health KL2, Radiological Society of North American Research & Education Foundation Scholar Grant.* Tamara Hershey—RELATED: Grant: National Institutes of Health*; UNRELATED: Employment: Washington University School of Medicine; Grants/Grants Pending: National Institutes of Health.* *Money paid to the institution.

  • © 2021 by American Journal of Neuroradiology

Indicates open access to non-subscribers at www.ajnr.org

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Cite this article
A. Samara, C.A. Raji, Z. Li, T. Hershey
Comparison of Hippocampal Subfield Segmentation Agreement between 2 Automated Protocols across the Adult Life Span
American Journal of Neuroradiology Aug 2021, DOI: 10.3174/ajnr.A7244

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Comparison of Hippocampal Subfield Segmentation Agreement between 2 Automated Protocols across the Adult Life Span
A. Samara, C.A. Raji, Z. Li, T. Hershey
American Journal of Neuroradiology Aug 2021, DOI: 10.3174/ajnr.A7244
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