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Virtual Reality in Children With and Without Vestibular Deficits

Validation and Comparison of a Virtual Reality Protocol in Children Without Vestibular Pathology and Children With Chronic Vestibular déficits : Prospective Study ReViCHILD

Status
Recruiting
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04791748
Acronym
ReViCHILD
Enrollment
140
Registered
2021-03-10
Start date
2021-04-12
Completion date
2027-02-01
Last updated
2026-04-03

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Vestibular Diseases

Keywords

Chronic vestibular deficit in children, Virtual reality protocol, Multisensory integration, Hand-eye coordination

Brief summary

Vestibular information is important in establishing a child's static and dynamic postural control. Any vestibular deficit can have major consequences on development, spatial cognition and quality of life. In order to interact with the world around us, we must simultaneously integrate different sources of sensory informations (vision, hearing, perception of the body...). The brain integrates these different sensory components to form a unified and coherent perception: this is multisensory integration. Multisensory integration has been studied using virtual reality in adults, in the "spatial orientation" team of the Center for Integrative Neurosciences and Cognition. These experiments were carried out on healthy subjects and in weightless situations (international space station or parabolic flight). However, no protocol has been developed in children or in subjects with vestibular deficit. Virtual reality is interesting for developing such a protocol because it creates multisensory stimulation capable of promoting visual and proprioceptive compensation of the vestibular deficit. It induces an immersion of the patient in a virtual spatial and temporal environment difficult to carry out with traditional vestibular rehabilitation techniques. Its main advantage is that it is a fun and safe interactive diagnostic and therapeutic tool, which is particularly suitable for children. Being able to modulate certain sensory information using virtual reality, in children without vestibular function deficit and in children with vestibular function deficit, will make it possible to better understand the role of the vestibule in the construction of the self in relation to space and environment. In addition to the scientific aspect, the diagnostic and therapeutic benefits are potentially numerous. The objective of the study is to determine a reliable, well-tolerated and age-appropriate virtual reality protocol in children without vestibular deficit and in children with chronic vestibular deficit, making it possible to study the hand-eye coordination.

Detailed description

Vestibular information is important in establishing a child's static and dynamic postural control. Any vestibular deficit can have major consequences on development, spatial cognition and quality of life. In order to interact with the world around us, we must simultaneously integrate different sources of sensory informations (vision, hearing, perception of the body ...). The brain integrates these different sensory components to form a unified and coherent perception: this is multisensory integration. It is particularly important in children for the acquisition of sitting, standing and then walking. When a congenital vestibular deficit exists, adaptive behaviors using visual and proprioceptive inputs are set up. Multisensory integration has been studied using virtual reality in adults, in the "spatial orientation" team of the Center for Integrative Neurosciences and Cognition. These experiments were carried out on healthy subjects and in weightless situations (international space station or parabolic flight). However, no protocol has been developed in children or in subjects with vestibular deficit. Virtual reality is interesting for developing such a protocol because it creates multisensory stimulation capable of promoting visual and proprioceptive compensation of the vestibular deficit. It induces an immersion of the patient in a virtual spatial and temporal environment difficult to carry out with traditional vestibular rehabilitation techniques. Its main advantage is that it is a fun and safe interactive diagnostic and therapeutic tool, which is particularly suitable for children. Being able to modulate certain sensory information using virtual reality, in children without vestibular function deficit and in children with vestibular function deficit, will make it possible to better understand the role of the vestibule in the construction of the self in relation to space and environment. In addition to the scientific aspect, the diagnostic and therapeutic benefits are potentially numerous. The objective of the study is to determine a reliable, well-tolerated and age-appropriate virtual reality protocol in children without vestibular deficit and in children with chronic vestibular deficit, making it possible to study the hand-eye coordination.

Interventions

DIAGNOSTIC_TESTVestibular tests

Screening vestibular test for patients without chronic vestibular deficits Complete vestibular test if not done yet in care of patients with chronic vestibular deficits

OTHERVirtual reality

Virtual reality protocol : doing tasks involving hand-eye coordination, in virtual reality, and in different sensory situations

Sponsors

Assistance Publique - Hôpitaux de Paris
Lead SponsorOTHER
URC-CIC Paris Descartes Necker Cochin
CollaboratorOTHER

Study design

Allocation
NON_RANDOMIZED
Intervention model
PARALLEL
Primary purpose
OTHER
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
7 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Minors aged 7 to 17 years (inclusive) * Volunteers adult * Information and consent of holders of parental authority of minors, minors and of adult subjects Patients : * Presence of unilateral or bilateral chronic vestibular pathology * Minor patients followed in consultation at Necker Hospital in the Pediatric ENT department * Adult patients followed at adult vestibulometry services (Lariboisière and Pitié Salpêtrière Hospitals) Controls: * No history of otological surgery and absence of vestibular pathology * Patients followed in consultation at Necker Hospital, siblings or adult parents

Exclusion criteria

* Presence of an ophthalmological pathology (including refractive errors) * Presence of neurological pathology including epilepsy or any pathology that can alter mobility and interfere with the performance of tasks

Design outcomes

Primary

MeasureTime frameDescription
Degree of reproducibilityDay 0Doing a task involving hand-eye coordination, in virtual reality, and in different sensory situations. Success rate for each task is measured
Degree of precisionDay 0Doing a task involving hand-eye coordination, in virtual reality, and in different sensory situations. Rate of errors during the test

Secondary

MeasureTime frameDescription
Compare the success rate in eye-hand coordinationDay 0Compare eye-hand coordination in : * children without vestibular pathology and in children with vestibular déficits. * children with vestibular deficits and in adults with vestibular déficits. * children without vestibular pathology and in adults without vestibular déficits. * adults without vestibular pathology and in adults with vestibular déficits. Success rate for each task will be measured and compared between groups.
Correlate virtual reality results with vestibular test resultsDay 0Correlation between success rate during virtual reality and vestibular function (normal vestibular function or not in both ears).
Stratify responses to virtual reality by ageDay 0Patients without chronic vestibular déficits. Comparison of success rate according to age.
Occurrence of side effects of virtual realityDay 0Possible side effects of virtual reality.
Children's satisfaction concerning the virtual reality protocolDay 0Open satisfaction questionnaire analysis

Countries

France

Contacts

CONTACTFrançoise Denoyelle, MD, PhD
f.denoyelle@aphp.fr1 71 39 67 85
CONTACTHélène Morel
helene.morel@aphp.fr1 71 19 63 46
PRINCIPAL_INVESTIGATORFrançoise Denoyelle, MD, PhD

Assistance Publique - Hôpitaux de Paris

STUDY_DIRECTORFrançois SIMON, MD, PhD

Assistance Publique - Hôpitaux de Paris

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Apr 4, 2026