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Brain charts for the human lifespan

Adamson C; Adler S; Alexander-Bloch AF; Alexopoulos GS; Anagnostou E; Anderson KM; Areces-Gonzalez A; Astle DE; Auyeung B; Ayub M; Bae J; Ball G; Baron-Cohen S; Beare R; Bedford SA; Benegal V; Bethlehem RAI; Beyer F; Binette AP; Blangero J; Boardman JP; Borzage M; Bosch-Bayard JF; Bourke N; Bullmore ET; Cabez MB; Calhoun VD; Chakravarty MM; Chen C; Chertavian C; Chetelat G; Chong YS; Cole JH; Corvin A; Costantino M; Courchesne E; Crivello F; Cropley VL; Crosbie J; Crossley N; Delarue M; Delorme R; Desrivieres S; Devenyi GA; Di Biase MA; Dolan R; Donald KA; Donohoe G; Dunlop K; Edwards AD; Elison JT; Ellis CT; Elman JA; Eyler L; Fair DA; Feczko E; Fletcher PC; Fonagy P; Franz CE; Galan-Garcia L; Gholipour A; Giedd J; Gilmore JH; Glahn DC; Goodyer IM; Grant PE; Groenewold NA; Gunning FM; Gur RC; Gur RE; Hammill CF; Hansson O; Hedden T; Heinz A; Henson RN; Heuer K; Hoare J; Holla B; Holmes AJ; Holt R; Huang H; Im K; Ipser J; Jack CR; Jackowski AP; Jia T; Johnson KA; Jones DT; Jones PB; Kahn RS; Karlsson Hasse; Karlsson Linda; Kawashima R; Kelley EA; Kern S; Kim KW; Kitzbichler MG; Kremen WS; Lalonde F; Landeau B; Lee S; Lerch J; Lewis JD; Li J; Liao W; Liston C; Lombardo MV; Lv J; Lynch C; Mallard TT; Marcelis M; Markello RD; Mathias SR; Mazoyer B; McGuire P; Meaney MJ; Mechelli A; Medic N; Misic B; Morgan SE; Mothersill D; Nigg J; Ong MQW; Ortinau C; Ossenkoppele R; Ouyang M; Palaniyappan L; Paly L; Pan PM; Pantelis C; Park MM; Paus T; Pausova Z; Paz-Linares D; Pierce K; Qian X; Qiu A; Qiu J; Raznahan A; Rittman T; Rodrigue A; Rollins CK; Romero-Garcia R; Ronan L; Rosenberg MD; Rowitch DH; Salum GA; Satterthwaite TD; Schaare HL; Schachar RJ; Scholl M; Schultz AP; Schumann G; Seidlitz J; Sharp D; Shinohara RT; Skoog I; Smyser CD; Sperling RA; Stein DJ; Stolicyn A; Suckling J; Sullivan G; Taki Y; Thyreau B; Toro R; Traut N; Tsvetanov KA; Turk-Browne NB; Tuulari Jetro J; Tzourio C; Vachon-Presseau E; Valdes-Sosa MJ; Valdes-Sosa PA; Valk SL; Vandekar SN; Vasung L; Vertes PE; Victoria LW; Villeneuve S; Villringer A; Vogel JW; Wagstyl K; Wang YS; Warfield SK; Warrier V; Westman E; Westwater ML; Whalley HC; White SR; Witte AV; Yang N; Yeo B; Yun H; Zalesky A; Zar HJ; Zettergren A; Zhou JH; Ziauddeen H; Zugman A; Zuo XN; van Amelsvoort T

Brain charts for the human lifespan

Adamson C
Adler S
Alexander-Bloch AF
Alexopoulos GS
Anagnostou E
Anderson KM
Areces-Gonzalez A
Astle DE
Auyeung B
Ayub M
Bae J
Ball G
Baron-Cohen S
Beare R
Bedford SA
Benegal V
Bethlehem RAI
Beyer F
Binette AP
Blangero J
Boardman JP
Borzage M
Bosch-Bayard JF
Bourke N
Bullmore ET
Cabez MB
Calhoun VD
Chakravarty MM
Chen C
Chertavian C
Chetelat G
Chong YS
Cole JH
Corvin A
Costantino M
Courchesne E
Crivello F
Cropley VL
Crosbie J
Crossley N
Delarue M
Delorme R
Desrivieres S
Devenyi GA
Di Biase MA
Dolan R
Donald KA
Donohoe G
Dunlop K
Edwards AD
Elison JT
Ellis CT
Elman JA
Eyler L
Fair DA
Feczko E
Fletcher PC
Fonagy P
Franz CE
Galan-Garcia L
Gholipour A
Giedd J
Gilmore JH
Glahn DC
Goodyer IM
Grant PE
Groenewold NA
Gunning FM
Gur RC
Gur RE
Hammill CF
Hansson O
Hedden T
Heinz A
Henson RN
Heuer K
Hoare J
Holla B
Holmes AJ
Holt R
Huang H
Im K
Ipser J
Jack CR
Jackowski AP
Jia T
Johnson KA
Jones DT
Jones PB
Kahn RS
Karlsson Hasse
Karlsson Linda
Kawashima R
Kelley EA
Kern S
Kim KW
Kitzbichler MG
Kremen WS
Lalonde F
Landeau B
Lee S
Lerch J
Lewis JD
Li J
Liao W
Liston C
Lombardo MV
Lv J
Lynch C
Mallard TT
Marcelis M
Markello RD
Mathias SR
Mazoyer B
McGuire P
Meaney MJ
Mechelli A
Medic N
Misic B
Morgan SE
Mothersill D
Nigg J
Ong MQW
Ortinau C
Ossenkoppele R
Ouyang M
Palaniyappan L
Paly L
Pan PM
Pantelis C
Park MM
Paus T
Pausova Z
Paz-Linares D
Pierce K
Qian X
Qiu A
Qiu J
Raznahan A
Rittman T
Rodrigue A
Rollins CK
Romero-Garcia R
Ronan L
Rosenberg MD
Rowitch DH
Salum GA
Satterthwaite TD
Schaare HL
Schachar RJ
Scholl M
Schultz AP
Schumann G
Seidlitz J
Sharp D
Shinohara RT
Skoog I
Smyser CD
Sperling RA
Stein DJ
Stolicyn A
Suckling J
Sullivan G
Taki Y
Thyreau B
Toro R
Traut N
Tsvetanov KA
Turk-Browne NB
Tuulari Jetro J
Tzourio C
Vachon-Presseau E
Valdes-Sosa MJ
Valdes-Sosa PA
Valk SL
Vandekar SN
Vasung L
Vertes PE
Victoria LW
Villeneuve S
Villringer A
Vogel JW
Wagstyl K
Wang YS
Warfield SK
Warrier V
Westman E
Westwater ML
Whalley HC
White SR
Witte AV
Yang N
Yeo B
Yun H
Zalesky A
Zar HJ
Zettergren A
Zhou JH
Ziauddeen H
Zugman A
Zuo XN
van Amelsvoort T
Katso/Avaa
Karlsson_etAl2022_Article_BrainChartsForTheHumanLifespan.pdf (7.599Mb)
Lataukset: 

SPRINGER NATURE
doi:10.1038/s41586-022-04554-y
URI
https://www.nature.com/articles/s41586-022-04554-y
Näytä kaikki kuvailutiedot
Julkaisun pysyvä osoite on:
https://urn.fi/URN:NBN:fi-fe2022081153707
Tiivistelmä

Over the past few decades, neuroimaging has become a ubiquitoustool in basic research and clinical studies of the human brain. However, no reference standards currently exist to quantify individual differences in neuroimaging metrics overtime, in contrast to growth charts for anthropometric traits such as height and weight. Here we assemble an interactive open resource to benchmark brain morphology derived from any current or future sample of MRI data (http://www.brainchart.io/). With the goal of basing these reference charts on the largest and most inclusive dataset available, acknowledging limitations due to known biases of MRI studies relative to the diversity of the global population, we aggregated 123,984 MRI scans, across more than 100 primary studies, from 101,457 human participants between 115 days post-conception to 100 years of age. MRI metrics were quantified by centile scores, relative to non-linear trajectories of brain structural changes, and rates of change, over the lifespan. Brain charts identified previously unreported neurodevelopmental milestones, showed high stability of individuals across longitudinal assessments, and demonstrated robustness to technical and methodological differences between primary studies. Centile scores showed increased heritability compared with non-centiled MRI phenotypes, and provided a standardized measure of atypical brain structure that revealed patterns of neuroanatomical variation across neurological and psychiatric disorders. In summary, brain charts are an essential step towards robust quantification of individual variation benchmarked to normative trajectories in multiple, commonly used neuroimaging phenotypes.

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