TY - JOUR
T1 - Cortical excitability is affected by light exposure – Distinct effects in adolescents and young adults
AU - Sharifpour, Roya
AU - Balda, Fermin
AU - Paparella, Ilenia
AU - Read, John
AU - Leysens, Zoé
AU - Letot, Sara
AU - Campbell, Islay
AU - Beckers, Elise
AU - Collette, Fabienne
AU - Phillips, Christophe
AU - Zubkov, Mikhail
AU - Vandewalle, Gilles
N1 - Funding Information:
The study was supported by the Belgian Fonds National de la Recherche Scientifique (FNRS; CDR J.0222.20 & J.0216.24), the European Union's Horizon 2020 research and innovation program under the Marie Sk\u0142odowska-Curie grant agreement No 860613 , the Fondation L\u00E9on Fr\u00E9d\u00E9ricq, ULi\u00E8ge , and the European Regional Development Fund (Biomed-Hub, WALBIOIMAGING). None of these funding sources had any impact on the design of the study or the interpretation of the findings. RS and FB were supported by the European Union#8217; s Horizon 2020 research and innovation program under the Marie Sk\u0142odowska-Curie grant agreement No 860613. RS was supported by the Wallonia-Brussels Federation . EB was supported by Maastricht University - ULi\u00E8ge Imaging Valley. MZ is supported by the Foundation Recherche Alzheimer (SAO-FRA 2022/0014). IC, IP, FB, JR, FC, CP and GV are/were supported by the FRS-FNRS.
Publisher Copyright:
© 2025 The Authors.
PY - 2026/5/1
Y1 - 2026/5/1
N2 - Light, particularly blue-wavelength light exerts a broad range of non-image forming (NIF) effects including the stimulation of cognition and alertness and the regulation of mood, sleep and circadian rhythms. However, its underlying brain mechanisms are not fully elucidated. Likewise, whether adolescents show a different NIF sensitivity to light compared to adults is not established. Here, we investigated whether cortical excitability, a basic aspect of brain function that depends on sleep-wake regulation, is affected by blue light and whether the effect is similar in young adults and adolescents. We used transcranial magnetic stimulation coupled to high-density electroencephalography (TMS–EEG) in healthy young adults (N = 13, 24.2 ± 3.4 y) and in adolescents (N = 15, 16.9 ± 1.1 y). Our results showed that, in young adults, blue light affected cortical excitability following an apparent inverted-U relationship, while adolescents' cortical excitability was not significantly different under blue light compared to orange light. In addition, although light did not affect performance on a visuomotor vigilance task completed during the TMS-EEG recordings, cortical excitability was positively correlated to task performance in both age groups. This study provides valuable insights into the complex interplay between light, cortical excitability, and behavior. Our findings highlight the role of age in NIF effects of light, suggesting that brain responses to light differ during developmental periods.
AB - Light, particularly blue-wavelength light exerts a broad range of non-image forming (NIF) effects including the stimulation of cognition and alertness and the regulation of mood, sleep and circadian rhythms. However, its underlying brain mechanisms are not fully elucidated. Likewise, whether adolescents show a different NIF sensitivity to light compared to adults is not established. Here, we investigated whether cortical excitability, a basic aspect of brain function that depends on sleep-wake regulation, is affected by blue light and whether the effect is similar in young adults and adolescents. We used transcranial magnetic stimulation coupled to high-density electroencephalography (TMS–EEG) in healthy young adults (N = 13, 24.2 ± 3.4 y) and in adolescents (N = 15, 16.9 ± 1.1 y). Our results showed that, in young adults, blue light affected cortical excitability following an apparent inverted-U relationship, while adolescents' cortical excitability was not significantly different under blue light compared to orange light. In addition, although light did not affect performance on a visuomotor vigilance task completed during the TMS-EEG recordings, cortical excitability was positively correlated to task performance in both age groups. This study provides valuable insights into the complex interplay between light, cortical excitability, and behavior. Our findings highlight the role of age in NIF effects of light, suggesting that brain responses to light differ during developmental periods.
KW - Adolescents
KW - Blue-light
KW - Cortical excitability
KW - Non-image forming
KW - TMS-EEG
U2 - 10.1016/j.nbscr.2025.100138
DO - 10.1016/j.nbscr.2025.100138
M3 - Article
SN - 2451-9944
VL - 20
JO - Neurobiology of Sleep and Circadian Rhythms
JF - Neurobiology of Sleep and Circadian Rhythms
M1 - 100138
ER -