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Ten recommendations for reducing the carbon footprint of research computing in human neuroimaging

Authors :
Souter, Nicholas E.
Lannelongue, Loïc
Samuel, Gabrielle
Racey, Chris
Colling, Lincoln J.
Bhagwat, Nikhil
Selvan, Raghavendra
Rae, Charlotte L.
Souter, Nicholas E.
Lannelongue, Loïc
Samuel, Gabrielle
Racey, Chris
Colling, Lincoln J.
Bhagwat, Nikhil
Selvan, Raghavendra
Rae, Charlotte L.
Source :
Souter , N E , Lannelongue , L , Samuel , G , Racey , C , Colling , L J , Bhagwat , N , Selvan , R & Rae , C L 2023 , ' Ten recommendations for reducing the carbon footprint of research computing in human neuroimaging ' , Imaging Neuroscience , vol. 1 , pp. 1-15 .
Publication Year :
2023

Abstract

Given that scientific practices contribute to the climate crisis, scientists should reflect on the planetary impact of their work. Research computing can have a substantial carbon footprint in cases where researchers employ computationally expensive processes with large amounts of data. Analysis of human neuroimaging data, such as Magnetic Resonance Imaging brain scans, is one such case. Here, we consider ten ways in which those who conduct human neuroimaging research can reduce the carbon footprint of their research computing, by making adjustments to the ways in which studies are planned, executed, and analysed; as well as where and how data are stored.

Details

Database :
OAIster
Journal :
Souter , N E , Lannelongue , L , Samuel , G , Racey , C , Colling , L J , Bhagwat , N , Selvan , R & Rae , C L 2023 , ' Ten recommendations for reducing the carbon footprint of research computing in human neuroimaging ' , Imaging Neuroscience , vol. 1 , pp. 1-15 .
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1439555269
Document Type :
Electronic Resource