TY - JOUR
T1 - Dose-dependent white matter changes associated with repetitive head impacts in former American football players
AU - DIAGNOSE CTE Research Project
AU - Arciniega, Hector
AU - Wickham, Alana
AU - Szekely, Brian
AU - Kim, Nicholas
AU - Cho, Kang I.
AU - Carrington, Holly
AU - Knyazhanskaya, Evdokiya E.
AU - John, Omar
AU - Jung, Leonard B.
AU - Breedlove, Katherine
AU - Mirmajlesi, Anya S.
AU - Stearns, Jared
AU - Rushmore, Richard Jarrett
AU - Daneshvar, Daniel H.
AU - Wiegand, Tim L.T.
AU - Billah, Tashrif
AU - Pasternak, Ofer
AU - Cetin-Karayumak, Suheyla
AU - Rathi, Yogesh
AU - Coleman, Michael J.
AU - Adler, Charles H.
AU - Bernick, Charles
AU - Balcer, Laura J.
AU - Im, Brian S.
AU - Datta, Shae
AU - Alosco, Michael L.
AU - Koerte, Inga K.
AU - Lin, Alexander P.
AU - Cummings, Jeffrey L.
AU - Reiman, Eric M.
AU - Stern, Robert A.
AU - Shenton, Martha E.
AU - Bouix, Sylvain
AU - Reiman, Eric
AU - Su, Yi
AU - Chen, Kewei
AU - Protas, Hillary
AU - Boker, Connie
AU - Alosco, Michael L.
AU - Au, Rhoda
AU - Cantu, Robert C.
AU - Farrer, Lindsay
AU - Helm, Robert
AU - Katz, Douglas I.
AU - Kowall, Neil
AU - Mez, Jesse
AU - Mercier, Gustavo
AU - Otis, James
AU - Stern, Robert A.
AU - Weller, Jason
N1 - Publisher Copyright:
© The Author(s) 2026. Published by Oxford University Press on behalf of the Guarantors of Brain. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
PY - 2026
Y1 - 2026
N2 - Repetitive head impacts sustained during American football have been associated with neuropathological changes such as white matter shear injuries. However, the impact of specific factors, such as age of first exposure and cumulative head impact burden, on white matter integrity remains unclear. This study investigated in vivo white matter microstructural changes using diffusion tensor imaging and tract-based spatial statistics in 165 male former American football players (mean age 57.3 years, range 45–74) and 52 unexposed asymptomatic male controls (mean age 59.4 years, range 45–74) in the DIAGNOSE CTE Research Project. Compared to controls, former football players exhibited significantly higher fractional anisotropy (FA) in 1.97% of the white matter skeleton (1552 voxels; Cohen’s d = 0.587) and higher tissue-corrected FA (FAt) in 1.48% of the white matter skeleton (1004 voxels; Cohen’s d = 0.616). No significant differences were observed for mean diffusivity, axial diffusivity, radial diffusivity, or free water between football players and controls. Among football players, there were no significant differences in the white matter microstructure between players diagnosed with traumatic encephalopathy syndrome and those without the diagnosis. Lower FA was significantly associated with older age (P < 0.00001) and an earlier age of first exposure to tackle football (P < 0.01), while lower FAt was associated with greater cumulative head impact burden, specifically higher linear acceleration (P < 0.04) and rotational force (P < 0.02). This study highlights the influential role of exposure factors on white matter microstructure in former American football players, as well as the utility of diffusion tensor imaging to aid in characterizing the long-term effects of repetitive head impacts in contact sport athletes.
AB - Repetitive head impacts sustained during American football have been associated with neuropathological changes such as white matter shear injuries. However, the impact of specific factors, such as age of first exposure and cumulative head impact burden, on white matter integrity remains unclear. This study investigated in vivo white matter microstructural changes using diffusion tensor imaging and tract-based spatial statistics in 165 male former American football players (mean age 57.3 years, range 45–74) and 52 unexposed asymptomatic male controls (mean age 59.4 years, range 45–74) in the DIAGNOSE CTE Research Project. Compared to controls, former football players exhibited significantly higher fractional anisotropy (FA) in 1.97% of the white matter skeleton (1552 voxels; Cohen’s d = 0.587) and higher tissue-corrected FA (FAt) in 1.48% of the white matter skeleton (1004 voxels; Cohen’s d = 0.616). No significant differences were observed for mean diffusivity, axial diffusivity, radial diffusivity, or free water between football players and controls. Among football players, there were no significant differences in the white matter microstructure between players diagnosed with traumatic encephalopathy syndrome and those without the diagnosis. Lower FA was significantly associated with older age (P < 0.00001) and an earlier age of first exposure to tackle football (P < 0.01), while lower FAt was associated with greater cumulative head impact burden, specifically higher linear acceleration (P < 0.04) and rotational force (P < 0.02). This study highlights the influential role of exposure factors on white matter microstructure in former American football players, as well as the utility of diffusion tensor imaging to aid in characterizing the long-term effects of repetitive head impacts in contact sport athletes.
KW - American football
KW - diffusion tensor imaging
KW - neuroimaging
KW - repetitive head impact
KW - sports-related head injury
UR - https://www.scopus.com/pages/publications/105041601399
U2 - 10.1093/braincomms/fcag195
DO - 10.1093/braincomms/fcag195
M3 - Journal Article
AN - SCOPUS:105041601399
SN - 2632-1297
VL - 8
JO - Brain Communications
JF - Brain Communications
IS - 3
M1 - fcag195
ER -