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The vestibular system, which reports on motion and gravity, is essential to postural control, balance, and egocentric representations of movement and space. The motion needed to stimulate the vestibular system complicates studying its circuitry, so we previously developed a method for fictive vestibular stimulation in zebrafish, using optical trapping to apply physical forces to the otoliths. Here, we combine this approach with whole-brain calcium imaging at cellular resolution, delivering a comprehensive map of the brain regions and cellular responses involved in basic vestibular processing. We find responses broadly distributed across the brain, with unique profiles of cellular responses and topography in each region. The most widespread and abundant responses involve excitation that is graded to the stimulus strength. Other responses, localized to the telencephalon and habenulae, show excitation that is only weakly correlated to stimulus strength and that is sensitive to weak stimuli. Finally, numerous brain regions contain neurons that are inhibited by vestibular stimuli, and these neurons are often tightly localized spatially within their regions. By exerting separate control over the left and right otoliths, we explore the laterality of brain-wide vestibular processing, distinguishing between neurons with unilateral and bilateral vestibular sensitivity and revealing patterns whereby conflicting signals from the ears mutually cancel. Our results confirm previously identified vestibular responses in specific regions of the larval zebrafish brain while revealing a broader and more extensive network of vestibular responsive neurons than has previously been described. This provides a departure point for more targeted studies of the underlying functional circuits.
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http://dx.doi.org/10.1016/j.cub.2018.09.060 | DOI Listing |
J Vis Exp
August 2025
Marianne Bernadotte Centrum, Department for Clinical Neuroscience, Karolinska Institutet; St Erik Eye Hospital.
The present protocol evaluates the relative impact of visual and vestibular inputs during roll plane rotations using optokinetic, vestibular, and combined visuovestibular stimulations. Subjects underwent isolated visual rotations, whole-body vestibular rotations in darkness, and visuovestibular stimulations combining static visual scenes with head rotations. Dynamic and static eye movement gains, absolute amplitudes, velocities, and accelerations were measured alongside perceptual responses.
View Article and Find Full Text PDFFront Pain Res (Lausanne)
August 2025
University Otolaryngology, Providence, RI, United States.
Background: Rhinosinusitis (RS) is a leading reason for antibiotic prescriptions but treatment satisfaction is low. Misdiagnosis may contribute to poor outcomes, as migraine-often underrecognized-can mimic RS symptoms, with studies showing overlap between RS and migraine diagnoses. Our aims were to explore the demographics and clinical features of facial pain or pressure (FPP), its relationship with migraine and RS, and distinguish symptoms between these overlapping conditions.
View Article and Find Full Text PDFAppl Neuropsychol Child
September 2025
Department of Psychology and Education of Exceptional Children, Faculty of Psychology and Educational Sciences, Allameh Tabataba'i University, Tehran, Iran.
Objective: This study aimed to evaluate the effectiveness of vestibular exercises in enhancing auditory memory and auditory discrimination in high-functioning children diagnosed with autism spectrum disorder (ASD).
Methods: Employing a quasi-experimental pretest-posttest design, the study recruited 20 children aged 6-8 years with confirmed diagnoses of high-functioning autism from psychology clinics in Tehran in 2024, using convenience sampling. Participants were randomly assigned to either an experimental group (n = 10), which underwent vestibular training, or a control group (n = 10) that received no intervention.
Neuroscience
September 2025
Department of Human Movement Sciences, Faculty of Behavioral and Movement Sciences, Vrije Universiteit Amsterdam, Amsterdam Movement Sciences, Amsterdam, the Netherlands. Electronic address:
Walking without falling requires correcting the deviations of the centre of mass (CoM) trajectory relative to the base of support. This process is partially under feedback control. We investigated whether vestibular afference contributes to estimating CoM state to stabilize walking.
View Article and Find Full Text PDFActa Otolaryngol
August 2025
Department of Audiology, Faculty of Health Sciences, Inonu University, Malatya, Turkey.
Background: The vestibular system is crucial for balance and gaze stability. Proprioceptive inputs from the musculoskeletal system significantly contribute to vestibular processing, especially under postural challenge.
Objectives: To examine how proprioceptive inputs in various body positions affect the vestibulo-ocular reflex (VOR) and otolith organ function.