Vestibular testing in children - The suppression head impulse (SHIMP) test

J Nguyen1, J Berger1, I Curthoys2

  • 1Department of Otorhinolaryngology, Head and Neck Surgery, University Hospital Mannheim, Germany.

Insights

The suppression of the head impulse test (SHIMPs) is a valuable tool for assessing vestibular function in children, offering a sensitive and well-tolerated diagnostic method for pediatric balance disorders.

Area of Science:

  • Pediatric Neurology
  • Vestibular System Diagnostics
  • Otolaryngology

Background:

  • Childhood vestibular disorders and vertigo are increasingly recognized.
  • Accurate diagnosis of peripheral vestibular hypofunction in children is challenging due to communication difficulties.
  • The suppression of the head impulse test (SHIMPs) is a modified, more sensitive version of the video head impulse test (HIMP) for assessing residual vestibular function.

Purpose of the Study:

  • To investigate the applicability and sensitivity of SHIMPs in healthy children aged 3-18 years.
  • To determine if SHIMPs can provide a sensitive functional analysis of the vestibular system in pediatric populations.

Main Methods:

  • A monocentric, prospective study was conducted.
  • SHIMPs were performed on 40 healthy children aged 3 to 18 years.
  • The study focused on evaluating the ease of performance and test tolerance in children.

Main Results:

  • SHIMPs were found to be easily performable in children aged 3-18 years.
  • Clear explanation of the test procedure is crucial for ensuring adequate test tolerance and compliance in pediatric subjects.
  • The study demonstrated the feasibility of using SHIMPs in a pediatric cohort.

Conclusions:

  • SHIMPs serve as a valuable addition to established vestibular tests like HIMP for diagnosing pediatric balance disorders.
  • SHIMPs can be readily integrated into clinical practice, particularly for children with limited verbal skills or difficulty understanding HIMP instructions.
  • SHIMPs offer a short test duration and high tolerance, similar to HIMP, making them suitable for pediatric use.
Abstract