Can We Reduce Frame Rate to 15 Images per Second in Pediatric Videofluoroscopic Swallow Studies?

Julie Layly1, Franck Marmouset2, Guillaume Chassagnon1

  • 1Pediatric Radiology Department, Clocheville Hospital, CHRU Tours, 49 Boulevard Beranger, 37000, Tours, France.

Dysphagia
|June 6, 2019
PubMed

Insights

Reducing pediatric videofluoroscopic swallow study (VFSS) frame rates to 15 frames per second (fps) is comparable to 30 fps. This approach maintains diagnostic accuracy while reducing radiation exposure for children undergoing swallowing disorder evaluations.

Area of Science:

  • Radiology
  • Pediatric Medicine
  • Speech-Language Pathology

Background:

  • Videofluoroscopic swallow studies (VFSS) are crucial for diagnosing pediatric swallowing disorders.
  • VFSS utilize ionizing radiation, necessitating strategies to minimize patient exposure.
  • Current standard practice often employs a 30 frames per second (fps) frame rate.

Purpose of the Study:

  • To evaluate the diagnostic comparability of pediatric VFSS at 15 fps versus 30 fps.
  • To determine if a reduced frame rate impacts the assessment of swallowing disorders in children.
  • To assess the potential for reducing radiation dose by lowering the VFSS frame rate.

Main Methods:

  • Retrospective analysis of 55 VFSS loops (190 swallows) from 32 pediatric patients, originally recorded at 30 fps.
  • Software modification to create 15 fps loops by omitting every other frame.
  • Blind and random review of all swallows by an otorhinolaryngologist-phoniatrician and a radiologist using the Penetration-Aspiration Scale (PAS).

Main Results:

  • High diagnostic performance at 15 fps: sensitivity 93% (CI 0.82-0.98) and specificity 98% (CI 0.94-0.99).
  • Excellent inter-rater reliability: Cohen's Kappa coefficient of 0.95 (CI 0.88-0.99) between 15 fps and 30 fps interpretations.
  • Identical diagnostic conclusions were reached for each loop regardless of the frame rate.

Conclusions:

  • Reducing the frame rate of pediatric VFSS to 15 fps is diagnostically comparable to 30 fps.
  • The lower frame rate demonstrates acceptable diagnostic performance with no apparent clinical impact.
  • Utilizing 15 fps VFSS offers a viable method for reducing ionizing radiation exposure in pediatric patients.

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