Assessment of functional development of the otolithic system in growing children: a review
1Department of Otolaryngology, National Taiwan University Hospital, 1 Chang-te St., Taipei 100, Taiwan.
Insights
Otolithic function in children develops earliest with ocular VEMP (oVEMP) tests, followed by foam posturography, and finally cervical VEMP (cVEMP) tests, reaching adult levels at different ages. This review highlights key developmental milestones for these balance function assessments.
Area of Science:
- Pediatric Vestibular Assessment
- Neuroscience of Balance
- Otolithic System Development
Background:
- Conventional balance tests predate otolithic organ assessments.
- Clinicians often lack familiarity with pediatric otolithic function development.
- Otolithic (saccular and utricular) function is crucial for balance.
Purpose of the Study:
- To review electrophysiological tests for assessing otolithic system functional development in children.
- To establish developmental timelines for key otolithic function tests in pediatric populations.
- To compare the maturation of cervical and ocular VEMP, and foam posturography.
Main Methods:
- Literature review of cervical vestibular-evoked myogenic potential (cVEMP) and ocular VEMP (oVEMP) studies in children (newborns to adolescents).
- Inclusion of studies on foam posturography in pediatric populations.
- Analysis of age-related changes and parameter development for each test.
Main Results:
- Ocular VEMPs (oVEMPs) emerge by age 2 (eyes closed) and mature by age 3+ (eyes up), while cervical VEMPs (cVEMPs) are present from day 5 but require consideration of neck length until adolescence.
- Foam posturography, reflecting otolithic function, reaches adult levels around age 12.
- oVEMPs show the earliest signs of functional development towards adult levels.
Conclusions:
- Ocular VEMP (oVEMP) testing demonstrates the earliest functional development of the otolithic system in children.
- Foam posturography follows oVEMP in developmental maturation.
- Cervical VEMP (cVEMP) testing matures later, with adult-like parameters achieved in adolescence.
Objectives:
Although the caloric test, rotational test, and posturography have been used to investigate balance function conventionally, and they are older than tests of otolithic organs, yet it seems that most clinicians are less familiar with the development of otolithic (saccular and utricular) function in children. This study reviewed the electrophysiological testing used to assess the functional development of the otolithic system in growing children.
Methods:
Based on the literature, studies of cervical vestibular-evoked myogenic potential (cVEMP) and ocular VEMP (oVEMP) tests in children ranging from newborns, small children to adolescents were reviewed. Papers concerning foam posturography in children were also included.
Results:
The cVEMPs can be elicited in newborns at day 5, whereas the oVEMPs are absent in neonatal period. When children grow to 2 years old, the oVEMPs can be induced with eyes closed condition, while the oVEMPs with eyes up condition can be elicited in children aged >3 years old, with the characteristic parameters similar to adult levels. In contrast with cVEMPs, it is until the neck length >15.3cm (aldolesence), one need not account for neck length in evaluating cVEMP latency. Additionally, foam posturography indicated by the Romberg quotient of the sway velocity/area on foam pad is considered to reflect the otolithic function, which reached adult levels when the children at 12 years old.
Conclusions:
For the functional development of the otolithic system in growing children to approach adult levels, the earliest occurrence is the oVEMP test, followed by the foam posturography, and cVEMP test.
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