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Scientific Reports|September 24, 2020
Optokinetic stimulation induces vertical vergence, possibly through a non-visual pathwayTobias Wibble, Tony PansellInvestigative Ophthalmology & Visual Science|March 22, 2019
Vestibular Eye Movements Are Heavily Impacted by Visual Motion and Are Sensitive to Changes in Visual IntensitiesTobias Wibble, Tony PansellScientific Reports|July 29, 2024
Human proprioceptive gaze stabilization during passive body rotations underneath a fixed headTobias Wibble, Tony PansellExperimental Brain Research|June 21, 2023
Clinical characteristics of visual motion hypersensitivity: a systematic reviewTobias Wibble, Tony PansellAnnals of Medicine|March 10, 2023
Translation and validation of a Swedish version of the Visual Vertigo Analogue ScaleTobias Wibble, Tony PansellJournal of Visualized Experiments : Jove|September 8, 2025
Using Eye-tracking to Assess the Relative Importance of Visual and Vestibular Input to Subcortical Motion Processing in the Roll PlaneTobias Wibble, Tony PansellInvestigative Ophthalmology & Visual Science|May 12, 2020
Visual and Vestibular Integration Express Summative Eye Movement Responses and Reveal Higher Visual Acceleration Sensitivity than Previously DescribedTobias Wibble, Johanna Engström, Tony PansellBritish Journal of Clinical Pharmacology|February 21, 2020
The effects of meclizine on motion sickness revisitedTobias Wibble, Johanna Engström, Luca Verrecchia, et al.Plos One|January 5, 2020
Intensified visual clutter induces increased sympathetic signalling, poorer postural control, and faster torsional eye movements during visual rotationTobias Wibble, Ulrika Södergård, Frank Träisk, et al.Nature Communications|August 10, 2022
Conserved subcortical processing in visuo-vestibular gaze controlTobias Wibble, Tony Pansell, Sten Grillner, et al.Pageof 6