State-transition dynamics of resting-state functional magnetic resonance imaging data: model comparison and test-to-retest analysis.

Authors:
Islam S; Khanra P; Nakuci J; Muldoon SF; Watanabe T and 1 more

Journal:
BMC Neurosci

Publication Year: 2024

DOI:
10.1186/s12868-024-00854-3

PMCID:
PMC10913599

PMID:
38438838

Journal Information

Full Title: BMC Neurosci

Abbreviation: BMC Neurosci

Country: Unknown

Publisher: Unknown

Language: N/A

Publication Details

Subject Category: Neurology

Available in Europe PMC: Yes

Available in PMC: Yes

PDF Available: No

Transparency Score
5/6
83.3% Transparent
Transparency Indicators
Click on green indicators to view evidence text
Core Indicators
Evidence found in paper:

"availability of data and materials two publicly available data sets were used in this work. the first data set was provided by the midnight scan club (msc) project funded by nih grants ns088590"

Evidence found in paper:

"code for computing dynamics of discrete states and their test-retest reliability used in the present paper is available on github [ ].; our code is publicly available on github [ ].; code availability the source code used for the computation of discrete state dynamics and the evaluation of their test-retest reliability used in this research paper can be accessed on the github [ 49 ]."

Evidence found in paper:

"Declarations Ethics approval and consent to participateNot applicable. Consent for publicationNot applicable. Competing interestsAll the authors have read and understood the BMC Neuroscience policy on declaration of interests and they declare that they have no competing interests. Competing interests All the authors have read and understood the BMC Neuroscience policy on declaration of interests and they declare that they have no competing interests."

Evidence found in paper:

"Funding This project is supported by grants from Japan Society for Promotion of Sciences (TW, 19H03535, 21H05679, 23H04217) awarded to Takamitsu Watanabe; and grants from Japan Science and Technology Agency (JST) Moonshot R &D (under Grant No. JPMJMS2021), the National Science Foundation (under Grant No. 2204936), and JSPS KAKENHI (under Grant Nos. JP 21H04595 and 23H03414) awarded to Naoki Masuda. The funding agencies had no involvement on the study design, data collection, analysis, interpretation, report writing, and article submission for publication."

Protocol Registration
Open Access
Paper is freely available to read
Additional Indicators
Replication
Novelty Statement
Assessment Info

Tool: rtransparent

OST Version: N/A

Last Updated: Aug 05, 2025