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Researcher
Philip Joris
- Disciplines:Neurosciences, Biological and physiological psychology, Cognitive science and intelligent systems, Developmental psychology and ageing
Affiliations
- Laboratory of Auditory Neurophysiology (Lab)
Member
From1 Sep 2014 → 30 Sep 2022 - Research Group Neurophysiology (Division)
Member
From1 Oct 1999 → 31 Aug 2014
Projects
1 - 10 of 24
- Physiological and anatomical mechanisms of temporal sharpening in the auditory brainstemFrom1 Jan 2021 → TodayFunding: FWO research project (including WEAVE projects)
- BIO-SERVPrecision Medical Instrument Servoing based on In Vivo Biological SignalsFrom1 Oct 2020 → 30 Aug 2022Funding: IOF - technology validation in lab
- Single-cell computation in auditory brainstem and its impact on cortical coding and behaviorFrom30 Sep 2020 → TodayFunding: Foreign public sponsor
- Determinants of age-induced hearing loss (ARHL) and reversal strategiesFrom1 Mar 2020 → 31 Mar 2021Funding: Foreign public sponsor
- CODING OF PITCH AT THE BRAINSTEM LEVELFrom10 Sep 2018 → 17 Jan 2023Funding: Own budget, for example: patrimony, inscription fees, gifts
- Brainstem cues to pitchFrom1 Jan 2017 → 31 Dec 2020Funding: FWO research project (including WEAVE projects)
- Temporal effects in forward masking, suppression, and simultaneous maskingFrom1 Apr 2016 → 31 Mar 2020Funding: Other international institutions, not mentioned elsewhere
- Neural mechanisms of spectral context effects on auditory processingFrom1 Mar 2015 → 28 Feb 2017Funding: H2020 - Skills and Career Development (Marie Skłodowska-Curie) actions
- Functional circuits in the early auditory system: structure and function.From1 Oct 2014 → 30 Sep 2018Funding: BOF - Concerted Research Project from 1994
- Neural coding of pitch in the lateral lemniscus.From1 Oct 2014 → 1 Aug 2016Funding: FWO fellowships
Publications
1 - 10 of 59
- Midbrain sensitivity to auditory motion studied with dichotic sweeps of broadband noise(2024)
Authors: Philip Joris, Eric Verschooten
- Case reopened: A temporal basis for harmonic pitch templates in the early auditory system?(2023)
Authors: Philip Joris
Pages: 3986 - 4003 - Physiological Motion Compensation for Neuroscience Research based on Electrical Bio-Impedance Sensing(2023)
Authors: Eric Verschooten, Mouloud Ourak, Kaat Van Assche, Gianni Borghesan, Di Wu, Philip Joris, Emmanuel Vander Poorten
Pages: 25377 - 25389 - Enhancement of phase-locking in rodents. II. An axonal recording study in chinchilla(2023)
Authors: Eric Verschooten, Philip Joris
Pages: 751 - 767 - Use of reverse noise to measure ongoing delay(2023)
Authors: Philip Joris
Pages: 926 - 937 - Physiological Motion Compensation in Patch Clamping using Electrical Bio-impedance Sensing(2023)
Authors: Kaat Van Assche, Mouloud Ourak, Eric Verschooten, Philip Joris, Emmanuel Vander Poorten
- In praise of adventitious sounds(2022)
Authors: Philip Joris
- Mammalian octopus cells are direction selective to frequency sweeps by excitatory synaptic sequence detection(2022)
Authors: Hsin-wei Lu, Philip Joris
- Intrinsic mechanical sensitivity of mammalian auditory neurons as a contributor to sound-driven neural activity(2022)
Authors: Eric Verschooten, Philip Joris
- Temporal Correlates to Monaural Edge Pitch in the Distribution of Interspike Interval Statistics in the Auditory Nerve(2021)
Authors: Yi-Hsuan Li, Philip Joris