Journal Papers

  • Brain Wearables: Validation Toolkit for Ear-Level EEG Sensors

    Correia G, Crosse MJ, Lopez Valdes A. Brain Wearables: Validation Toolkit for Ear-Level EEG Sensors. Sensors. 2024; 24(4):1226. https://doi.org/10.3390/s24041226

  • Age-friendly initiatives: Mexico

    Sara Solis-López , Aníbal Gutiérrez-Torres, Alejandro López-Valdés, José Alberto Ávila-Funes, Carmen García-Peña, Brian Lawlor, Roman Romero-Ortuno (2023). Age-friendly initiatives: Mexico. Journal of Nutrition, Health and Aging. Doi : 10.1016/j.jnha.2023.100007

  • Editorial: Bridging the gap between integrative neuroscience and translational neuroscience

    Manjarrez E, Curia G, Stecina K and Lopez Valdes A (2023) Editorial: Bridging the gap between integrative neuroscience and translational neuroscience. Front. Integr. Neurosci. 17:1296701. doi: 10.3389/fnint.2023.1296701

  • Effects of spectral and temporal modulation degradation on intelligibility and cortical tracking of speech signals

    Calderon De Palma, I., Lopez, L.S., Lopez Valdes, A. (2023) Effects of spectral and temporal modulation degradation on intelligibility and cortical tracking of speech signals. Proc. INTERSPEECH 2023, 5192-5196, doi: 10.21437/Interspeech.2023-964

  • ‘The Mind’ promotes brain synchronization: an ecological evaluation of brain synchronization in co-operative tasks

    S. Farrell and A. L. Valdes, "‘The Mind’ promotes brain synchronization: an ecological evaluation of brain synchronization in co-operative tasks," 2023 45th Annual International Conference of the IEEE Engineering in Medicine & Biology Society (EMBC), Sydney, Australia, 2023, pp. 1-4, doi: 10.1109/EMBC40787.2023.10340212.

  • The impact of temporal synchronisation imprecision on TRF analyses

    Carta S, Mangiacotti AMA, Valdes AL, Reilly RB, Franco F, Di Liberto GM. The impact of temporal synchronisation imprecision on TRF analyses. J Neurosci Methods. 2023 Feb 1;385:109765. doi: 10.1016/j.jneumeth.2022.109765. Epub 2022 Dec 5. PMID: 36481165.

  • How Do We Allocate Our Resources When Listening and Memorizing Speech in Noise? A Pupillometry Study

    Lyxell, B., Riis, S. K., Ng, E., Valdes, A. L., Büchner, A., & Wendt, D. (2021). How Do We Allocate Our Resources When Listening and Memorizing Speech in Noise? A Pupillometry Study. Ear and hearing, 42(4), 846–859. https://doi.org/10.1097/AUD.0000000000001002

  • Sequential bilateral implantation in older children: Inter-implant map differences and their effects on functional outcomes

    Simões-Franklin, C., Flood, I., Sechler, S., Lopez-Valdes, A., Waechter, S. M., Thapa, J., Glynn, F., Walshe, P., Reilly, R. B., & Viani, L. (2020). Sequential bilateral implantation in older children: Inter-implant map differences and their effects on functional outcomes. Clinical otolaryngology : official journal of ENT-UK ; official journal of Netherlands Society for Oto-Rhino-Laryngology & Cervico-Facial Surgery, 45(4), 459–465. https://doi.org/10.1111/coa.13523

  • Depth matters - Towards finding an objective neurophysiological measure of behavioral amplitude modulation detection based on neural threshold determination

    Waechter, S. M., Lopez Valdes, A., Simoes-Franklin, C., Viani, L., & Reilly, R. B. (2018). Depth matters - Towards finding an objective neurophysiological measure of behavioral amplitude modulation detection based on neural threshold determination. Hearing research, 359, 13–22. https://doi.org/10.1016/j.heares.2017.12.005

  • Virtual reality sound localization testing in cochlear implant users

    S. D. Sechler, A. Lopez Valdes, S. M. Waechter, C. Simoes-Franklin, L. Viani and R. B. Reilly, "Virtual reality sound localization testing in cochlear implant users," 2017 8th International IEEE/EMBS Conference on Neural Engineering (NER), 2017, pp. 379-382, doi: 10.1109/NER.2017.8008369.

  • An approach to develop an objective measure of temporal processing in cochlear implant users based on Schroeder-phase harmonic complexes

    A. M. Leijsen et al., "An approach to develop an objective measure of temporal processing in cochlear implant users based on Schroeder-phase harmonic complexes," 2015 7th International IEEE/EMBS Conference on Neural Engineering (NER), 2015, pp. 699-702, doi: 10.1109/NER.2015.7146719.

  • Electrophysiological correlates of spectral discrimination for cochlear implant users

    A. Lopez Valdes et al., "Electrophysiological correlates of spectral discrimination for cochlear implant users," 2015 7th International IEEE/EMBS Conference on Neural Engineering (NER), 2015, pp. 671-674, doi: 10.1109/NER.2015.7146712.

  • Objective assessment of spectral ripple discrimination in cochlear implant listeners using cortical evoked responses to an oddball paradigm

    Lopez Valdes, A., Mc Laughlin, M., Viani, L., Walshe, P., Smith, J., Zeng, F. G., & Reilly, R. B. (2014). Objective assessment of spectral ripple discrimination in cochlear implant listeners using cortical evoked responses to an oddball paradigm. PloS one, 9(3), e90044. https://doi.org/10.1371/journal.pone.0090044

  • Cochlear implant artifact attenuation in late auditory evoked potentials: a single channel approach

    Mc Laughlin, M., Lopez Valdes, A., Reilly, R. B., & Zeng, F. G. (2013). Cochlear implant artifact attenuation in late auditory evoked potentials: a single channel approach. Hearing research, 302, 84–95. https://doi.org/10.1016/j.heares.2013.05.006

  • Auditory mismatch negativity in cochlear implant users: a window to spectral discrimination

    Lopez-Valdes, A., Mc Laughlin, M., Viani, L., Walshe, P., Smith, J., Zeng, F. G., & Reilly, R. B. (2013). Auditory mismatch negativity in cochlear implant users: a window to spectral discrimination. Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference, 2013, 3555–3558. https://doi.org/10.1109/EMBC.2013.6610310

 Books and Book Chapters

  • Origin and Dynamics of Biomedical Signals

    Nahiyan, K.M.T., Arefin, A.S.M.S., Rabbani, M., Valdes, A.L. (2021). Origin and Dynamics of Biomedical Signals. In: Ahad, M.A.R., Ahmed, M.U. (eds) Signal Processing Techniques for Computational Health Informatics. Intelligent Systems Reference Library, vol 192. Springer, Cham. https://doi.org/10.1007/978-3-030-54932-9_1