A comparison of methods to harmonize cortical thickness measurements across scanners and sites.
- DOI
- 10.1016/j.neuroimage.2022.119509
- Published
- 2022 Nov 1
- Container
- NeuroImage
- Publisher
- Not recorded
- Open access
- yes
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Cite this work
BibTeX
@article{allodium:10.1016/j.neuroimage.2022.119509,
title = {A comparison of methods to harmonize cortical thickness measurements across scanners and sites.},
author = {Sun D and Rakesh G and Haswell CC and Logue M and Baird CL and O'Leary EN and Cotton AS and Xie H and Tamburrino M and Chen T and Dennis EL and Jahanshad N and Salminen LE and Thomopoulos SI and Rashid F and Ching CRK and Koch SBJ and Frijling JL and Nawijn L and van Zuiden M and Zhu X and Suarez-Jimenez B and Sierk A and Walter H and Manthey A and Stevens JS and Fani N and van Rooij SJH and Stein M and Bomyea J and Koerte IK and Choi K and van der Werff SJA and Vermeiren RRJM and Herzog J and Lebois LAM and Baker JT and Olson EA and Straube T and Korgaonkar MS and Andrew E and Zhu Y and Li G and Ipser J and Hudson AR and Peverill M and Sambrook K and Gordon E and Baugh L and Forster G and Simons RM and Simons JS and Magnotta V and Maron-Katz A and du Plessis S and Disner SG and Davenport N and Grupe DW and Nitschke JB and deRoon-Cassini TA and Fitzgerald JM and Krystal JH and Levy I and Olff M and Veltman DJ and Wang L and Neria Y and De Bellis MD and Jovanovic T and Daniels JK and Shenton M and van de Wee NJA and Schmahl C and Kaufman ML and Rosso IM and Sponheim SR and Hofmann DB and Bryant RA and Fercho KA and Stein DJ and Mueller SC and Hosseini B and Phan KL and McLaughlin KA and Davidson RJ and Larson CL and May G and Nelson SM and Abdallah CG and Gomaa H and Etkin A and Seedat S and Harpaz-Rotem I and Liberzon I and van Erp TGM and Quidé Y and Wang X and Thompson PM and Morey RA},
year = {2022},
journal = {NeuroImage},
doi = {10.1016/j.neuroimage.2022.119509},
url = {https://doi.org/10.1016/j.neuroimage.2022.119509}
}RIS
TY - JOUR TI - A comparison of methods to harmonize cortical thickness measurements across scanners and sites. AU - Sun D AU - Rakesh G AU - Haswell CC AU - Logue M AU - Baird CL AU - O'Leary EN AU - Cotton AS AU - Xie H AU - Tamburrino M AU - Chen T AU - Dennis EL AU - Jahanshad N AU - Salminen LE AU - Thomopoulos SI AU - Rashid F AU - Ching CRK AU - Koch SBJ AU - Frijling JL AU - Nawijn L AU - van Zuiden M AU - Zhu X AU - Suarez-Jimenez B AU - Sierk A AU - Walter H AU - Manthey A AU - Stevens JS AU - Fani N AU - van Rooij SJH AU - Stein M AU - Bomyea J AU - Koerte IK AU - Choi K AU - van der Werff SJA AU - Vermeiren RRJM AU - Herzog J AU - Lebois LAM AU - Baker JT AU - Olson EA AU - Straube T AU - Korgaonkar MS AU - Andrew E AU - Zhu Y AU - Li G AU - Ipser J AU - Hudson AR AU - Peverill M AU - Sambrook K AU - Gordon E AU - Baugh L AU - Forster G AU - Simons RM AU - Simons JS AU - Magnotta V AU - Maron-Katz A AU - du Plessis S AU - Disner SG AU - Davenport N AU - Grupe DW AU - Nitschke JB AU - deRoon-Cassini TA AU - Fitzgerald JM AU - Krystal JH AU - Levy I AU - Olff M AU - Veltman DJ AU - Wang L AU - Neria Y AU - De Bellis MD AU - Jovanovic T AU - Daniels JK AU - Shenton M AU - van de Wee NJA AU - Schmahl C AU - Kaufman ML AU - Rosso IM AU - Sponheim SR AU - Hofmann DB AU - Bryant RA AU - Fercho KA AU - Stein DJ AU - Mueller SC AU - Hosseini B AU - Phan KL AU - McLaughlin KA AU - Davidson RJ AU - Larson CL AU - May G AU - Nelson SM AU - Abdallah CG AU - Gomaa H AU - Etkin A AU - Seedat S AU - Harpaz-Rotem I AU - Liberzon I AU - van Erp TGM AU - Quidé Y AU - Wang X AU - Thompson PM AU - Morey RA PY - 2022 JO - NeuroImage DO - 10.1016/j.neuroimage.2022.119509 UR - https://doi.org/10.1016/j.neuroimage.2022.119509 ER -
APA
D, S., G, R., CC, H., M, L., CL, B., EN, O., AS, C., H, X., M, T., T, C., EL, D., N, J., LE, S., SI, T., F, R., CRK, C., SBJ, K., JL, F., L, N., M, V. Z., X, Z., B, S., A, S., H, W., A, M., JS, S., N, F., SJH, V. R., M, S., J, B., IK, K., K, C., SJA, V. D. W., RRJM, V., J, H., LAM, L., JT, B., EA, O., T, S., MS, K., E, A., Y, Z., G, L., J, I., AR, H., M, P., K, S., E, G., L, B., G, F., RM, S., JS, S., V, M., A, M., S, D. P., SG, D., N, D., DW, G., JB, N., TA, D., JM, F., JH, K., I, L., M, O., DJ, V., L, W., Y, N., MD, D. B., T, J., JK, D., M, S., NJA, V. D. W., C, S., ML, K., IM, R., SR, S., DB, H., RA, B., KA, F., DJ, S., SC, M., B, H., KL, P., KA, M., RJ, D., CL, L., G, M., SM, N., CG, A., H, G., A, E., S, S., I, H., I, L., TGM, V. E., Y, Q., X, W., PM, T., & RA, M. (2022). A comparison of methods to harmonize cortical thickness measurements across scanners and sites.. NeuroImage. https://doi.org/10.1016/j.neuroimage.2022.119509
Source records
- pubmed · retrieved 2026-09-26T10:34:50.039Z
- europe-pmc · retrieved 2026-09-26T10:34:49.476Z
- doaj · retrieved 2026-09-26T10:34:49.456Z