Quality assessment, variability and reproducibility of anatomical measurements derived from T1-weighted brain imaging: The RIN-Neuroimaging Network case study.

Brain Magnetic Resonance Imaging Multicentric study Neurodegeneration Neurodevelopment Reproducibility Standard Operating Procedures T1-weighted MRI

Journal

Physica medica : PM : an international journal devoted to the applications of physics to medicine and biology : official journal of the Italian Association of Biomedical Physics (AIFB)
ISSN: 1724-191X
Titre abrégé: Phys Med
Pays: Italy
ID NLM: 9302888

Informations de publication

Date de publication:
Jun 2023
Historique:
received: 11 07 2022
revised: 01 03 2023
accepted: 05 04 2023
medline: 29 5 2023
pubmed: 2 5 2023
entrez: 1 5 2023
Statut: ppublish

Résumé

Initiatives for the collection of harmonized MRI datasets are growing continuously, opening questions on the reliability of results obtained in multi-site contexts. Here we present the assessment of the brain anatomical variability of MRI-derived measurements obtained from T1-weighted images, acquired according to the Standard Operating Procedures, promoted by the RIN-Neuroimaging Network. A multicentric dataset composed of 77 brain T1w acquisitions of young healthy volunteers (mean age = 29.7 ± 5.0 years), collected in 15 sites with MRI scanners of three different vendors, was considered. Parallelly, a dataset of 7 "traveling" subjects, each undergoing three acquisitions with scanners from different vendors, was also used. Intra-site, intra-vendor, and inter-site variabilities were evaluated in terms of the percentage standard deviation of volumetric and cortical thickness measures. Image quality metrics such as contrast-to-noise and signal-to-noise ratio in gray and white matter were also assessed for all sites and vendors. The results showed a measured global variability that ranges from 11% to 19% for subcortical volumes and from 3% to 10% for cortical thicknesses. Univariate distributions of the normalized volumes of subcortical regions, as well as the distributions of the thickness of cortical parcels appeared to be significantly different among sites in 8 subcortical (out of 17) and 21 cortical (out of 68) regions of i nterest in the multicentric study. The Bland-Altman analysis on "traveling" brain measurements did not detect systematic scanner biases even though a multivariate classification approach was able to classify the scanner vendor from brain measures with an accuracy of 0.60 ± 0.14 (chance level 0.33).

Identifiants

pubmed: 37126963
pii: S1120-1797(23)00054-6
doi: 10.1016/j.ejmp.2023.102577
pii:
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

102577

Informations de copyright

Copyright © 2023 Associazione Italiana di Fisica Medica e Sanitaria. All rights reserved.

Déclaration de conflit d'intérêts

Declaration of Competing Interest The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.

Auteurs

Paolo Bosco (P)

Laboratory of Medical Physics and Magnetic Resonance, IRCCS Stella Maris Foundation, Pisa, Italy.

Marta Lancione (M)

Laboratory of Medical Physics and Magnetic Resonance, IRCCS Stella Maris Foundation, Pisa, Italy.

Alessandra Retico (A)

Pisa Division, INFN - National Institute for Nuclear Physics, Pisa, Italy.

Anna Nigri (A)

Neuroradiology Unit, Fondazione IRCCS Istituto Neurologico Carlo Besta, Milan, Italy.

Domenico Aquino (D)

Neuroradiology Unit, Fondazione IRCCS Istituto Neurologico Carlo Besta, Milan, Italy.

Francesca Baglio (F)

IRCCS Fondazione Don Carlo Gnocchi Onlus, Milan, Italy.

Irene Carne (I)

Neuroradiology Unit, IRCCS Istituti Clinici Scientifici Maugeri, Pavia, Italy.

Stefania Ferraro (S)

Neuroradiology Unit, Fondazione IRCCS Istituto Neurologico Carlo Besta, Milan, Italy; MOE Key Laboratory for Neuroinformation, School of Life Science and Technology, University of Electronic Science and Technology of China, Chengdu, China.

Giovanni Giulietti (G)

Neuroimaging Laboratory, IRCCS Santa Lucia Foundation, Rome, Italy; SAIMLAL Department, Sapienza University of Rome, Rome, Italy.

Antonio Napolitano (A)

Medical Physics, IRCCS Istituto Ospedale Pediatrico Bambino Gesù, Rome, Italy.

Fulvia Palesi (F)

Neuroradiology Unit, IRCCS Mondino Foundation, Pavia, Italy; Department of Brain and Behavioral Sciences, University of Pavia, Pavia, Italy.

Luigi Pavone (L)

IRCCS Neuromed, Pozzilli, Italy.

Giovanni Savini (G)

Neuroradiology Unit, IRCCS Humanitas Research Hospital, Milan, Italy.

Fabrizio Tagliavini (F)

Scientific Direction, Fondazione IRCCS Istituto Neurologico Carlo Besta, Milan, Italy.

Maria Grazia Bruzzone (MG)

Neuroradiology Unit, Fondazione IRCCS Istituto Neurologico Carlo Besta, Milan, Italy.

Claudia A M Gandini Wheeler-Kingshott (CAM)

Neuroradiology Unit, IRCCS Mondino Foundation, Pavia, Italy; Department of Brain and Behavioral Sciences, University of Pavia, Pavia, Italy; NMR Research Unit, Department of Neuroinflammation, Queen Square MS Centre, UCL Queen Square, Institute of Neurology, Faculty of Brain Sciences, University College London, London, United Kingdom.

Michela Tosetti (M)

Laboratory of Medical Physics and Magnetic Resonance, IRCCS Stella Maris Foundation, Pisa, Italy. Electronic address: michela.tosetti@fsm.unipi.it.

Laura Biagi (L)

Laboratory of Medical Physics and Magnetic Resonance, IRCCS Stella Maris Foundation, Pisa, Italy.

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Classifications MeSH