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Development and evaluation of a manual segmentation protocol for deep grey matter in multiple sclerosis: Towards accelerated semi-automated references.

  • A de Sitter
  • , J Burggraaff
  • , F Bartel
  • , M Palotai
  • , Y Liu
  • , J Simoes
  • , S Ruggieri
  • , K Schregel
  • , Stefan Ropele
  • , MA Rocca
  • , C Gasperini
  • , A Gallo
  • , MM Schoonheim
  • , M Amann
  • , M Yiannakas
  • , D Pareto
  • , MP Wattjes
  • , J Sastre-Garriga
  • , L Kappos
  • , M Filippi
  • Christian Enzinger, J Frederiksen, B Uitdehaag, CRG Guttmann, F Barkhof, H Vrenken

Research output: Contribution to journalResearch article

5 Citations (Web of Science)

Abstract

BACKGROUND: Deep grey matter (dGM) structures, particularly the thalamus, are clinically relevant in multiple sclerosis (MS). However, segmentation of dGM in MS is challenging; labeled MS-specific reference sets are needed for objective evaluation and training of new methods.

OBJECTIVES: This study aimed to (i) create a standardized protocol for manual delineations of dGM; (ii) evaluate the reliability of the protocol with multiple raters; and (iii) evaluate the accuracy of a fast-semi-automated segmentation approach (FASTSURF).

METHODS: A standardized manual segmentation protocol for caudate nucleus, putamen, and thalamus was created, and applied by three raters on multi-center 3D T1-weighted MRI scans of 23 MS patients and 12 controls. Intra- and inter-rater agreement was assessed through intra-class correlation coefficient (ICC); spatial overlap through Jaccard Index (JI) and generalized conformity index (CIgen). From sparse delineations, FASTSURF reconstructed full segmentations; accuracy was assessed both volumetrically and spatially.

RESULTS: All structures showed excellent agreement on expert manual outlines: intra-rater JI > 0.83; inter-rater ICC ≥ 0.76 and CIgen ≥ 0.74. FASTSURF reproduced manual references excellently, with ICC ≥ 0.97 and JI ≥ 0.92.

CONCLUSIONS: The manual dGM segmentation protocol showed excellent reproducibility within and between raters. Moreover, combined with FASTSURF a reliable reference set of dGM segmentations can be produced with lower workload.

Original languageEnglish
Article number102659
Pages (from-to)102659
Number of pages8
JournalNeuroImage: Clinical
Volume30
DOIs
Publication statusPublished - 2021

Branches of science

  • 202 Electrical Engineering, Electronics, Information Engineering
  • 301 Medical-Theoretical Sciences, Pharmacy
  • 302 Clinical Medicine
  • 206 Medical Engineering

Research Fields

  • Neuroscience

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