Lucy A. Anderson
Affiliations: | UCL Ear Institute | University College London, London, United Kingdom |
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Parents
Sign in to add mentorJennifer F. Linden | post-doc | UCL | |
Roland Schaette | research scientist | 2016- | UCL Ear Institute |
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Publications
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Bryant D, Pauzuolyte V, Ingham NJ, et al. (2022) The timing of auditory sensory deficits in Norrie disease has implications for therapeutic intervention. Jci Insight. 7 |
Quraishe S, Newman T, Anderson L. (2019) Auditory temporal acuity improves with age in the male mouse auditory thalamus: A role for perineuronal nets? Journal of Neuroscience Research |
Bullen A, Anderson L, Bakay W, et al. (2019) Localized disorganization of the cochlear inner hair cell synaptic region after noise exposure. Biology Open. 8 |
Bakay WMH, Anderson LA, Garcia-Lazaro JA, et al. (2018) Hidden hearing loss selectively impairs neural adaptation to loud sound environments. Nature Communications. 9: 4298 |
Anderson LA, Hesse LL, Pilati N, et al. (2018) Increased spontaneous firing rates in auditory midbrain following noise exposure are specifically abolished by a Kv3 channel modulator. Hearing Research |
Hesse LL, Bakay W, Ong HC, et al. (2016) Non-Monotonic Relation between Noise Exposure Severity and Neuronal Hyperactivity in the Auditory Midbrain. Frontiers in Neurology. 7: 133 |
Anderson LA, Linden JF. (2016) Mind the Gap: Two Dissociable Mechanisms of Temporal Processing in the Auditory System. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 36: 1977-95 |
Malmierca MS, Anderson LA, Antunes FM. (2015) The cortical modulation of stimulus-specific adaptation in the auditory midbrain and thalamus: a potential neuronal correlate for predictive coding. Frontiers in Systems Neuroscience. 9: 19 |
Wallace MN, Grimsley JM, Anderson LA, et al. (2013) Representation of individual elements of a complex call sequence in primary auditory cortex. Frontiers in Systems Neuroscience. 7: 72 |
Anderson LA, Malmierca MS. (2013) The effect of auditory cortex deactivation on stimulus-specific adaptation in the inferior colliculus of the rat. The European Journal of Neuroscience. 37: 52-62 |