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1.
Neuroimage ; 214: 116678, 2020 07 01.
Artigo em Inglês | MEDLINE | ID: mdl-32119986

RESUMO

Increasing the reproducibility of neuroimaging measurement addresses a central impediment to the advancement of human neuroscience and its clinical applications. Recent efforts demonstrating variance in functional brain organization within and between individuals shows a need for improving reproducibility of functional parcellations without long scan times. We apply bootstrap aggregation, or bagging, to the problem of improving reproducibility in functional parcellation. We use two large datasets to demonstrate that compared to a standard clustering framework, bagging improves the reproducibility and test-retest reliability of both cortical and subcortical functional parcellations across a range of sites, scanners, samples, scan lengths, clustering algorithms, and clustering parameters (e.g., number of clusters, spatial constraints). With as little as 6 â€‹min of scan time, bagging creates more reproducible group and individual level parcellations than standard approaches with twice as much data. This suggests that regardless of the specific parcellation strategy employed, bagging may be a key method for improving functional parcellation and bringing functional neuroimaging-based measurement closer to clinical impact.


Assuntos
Mapeamento Encefálico/métodos , Encéfalo/anatomia & histologia , Neuroimagem Funcional/métodos , Processamento de Imagem Assistida por Computador/métodos , Humanos , Imageamento por Ressonância Magnética/métodos
3.
Nat Hum Behav ; 2024 Aug 05.
Artigo em Inglês | MEDLINE | ID: mdl-39103610

RESUMO

When fields lack consensus standard methods and accessible ground truths, reproducibility can be more of an ideal than a reality. Such has been the case for functional neuroimaging, where there exists a sprawling space of tools and processing pipelines. We provide a critical evaluation of the impact of differences across five independently developed minimal preprocessing pipelines for functional magnetic resonance imaging. We show that, even when handling identical data, interpipeline agreement was only moderate, critically shedding light on a factor that limits cross-study reproducibility. We show that low interpipeline agreement can go unrecognized until the reliability of the underlying data is high, which is increasingly the case as the field progresses. Crucially we show that, when interpipeline agreement is compromised, so too is the consistency of insights from brain-wide association studies. We highlight the importance of comparing analytic configurations, because both widely discussed and commonly overlooked decisions can lead to marked variation.

4.
Gigascience ; 5: 16, 2016.
Artigo em Inglês | MEDLINE | ID: mdl-27042293

RESUMO

Brainhack events offer a novel workshop format with participant-generated content that caters to the rapidly growing open neuroscience community. Including components from hackathons and unconferences, as well as parallel educational sessions, Brainhack fosters novel collaborations around the interests of its attendees. Here we provide an overview of its structure, past events, and example projects. Additionally, we outline current innovations such as regional events and post-conference publications. Through introducing Brainhack to the wider neuroscience community, we hope to provide a unique conference format that promotes the features of collaborative, open science.


Assuntos
Pesquisa Biomédica/métodos , Encéfalo/fisiologia , Educação/métodos , Neurociências/métodos , Pesquisa Biomédica/educação , Encéfalo/anatomia & histologia , Biologia Computacional/educação , Biologia Computacional/métodos , Congressos como Assunto/organização & administração , Congressos como Assunto/estatística & dados numéricos , Comportamento Cooperativo , Educação/organização & administração , Humanos , Cooperação Internacional , Neurociências/educação , Pesquisadores/educação , Pesquisadores/organização & administração , Pesquisadores/estatística & dados numéricos
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