Liver Elastography in Healthy Children Using Three Different Systems - How Many Measurements Are Necessary?

Anders Batman Mjelle1, Anesa Mulabecirovic2, Roald Flesland Havre3

  • 1Pediatric and Adolescent Medicine, Haukeland University Hospital, Bergen, Norway.

Ultraschall in Der Medizin (Stuttgart, Germany : 1980)
|December 21, 2020
PubMed

Insights

Fewer liver elastography acquisitions can yield reliable results in children. Three acquisitions are sufficient for two-dimensional shear wave elastography (2D-SWE), while point shear wave elastography (pSWE) and transient elastography (TE) require four.

Area of Science:

  • Pediatric Gastroenterology
  • Medical Imaging
  • Hepatology

Background:

  • Liver elastography is crucial for diagnosing and monitoring pediatric liver diseases.
  • Established protocols often recommend multiple acquisitions, potentially increasing examination time for children.

Purpose of the Study:

  • To determine the minimum number of acquisitions needed for reliable liver stiffness measurements (LSM) in children using different elastography techniques.
  • To assess if fewer acquisitions impact diagnostic accuracy in pediatric liver disease assessment.

Main Methods:

  • 243 healthy children (4-17 years) underwent two-dimensional shear wave elastography (2D-SWE) and point shear wave elastography (pSWE).
  • A subset (87 children, 8-17 years) also had transient elastography (TE).
  • Median LSM from 3-8 acquisitions were compared to 10 acquisitions (reference) using intraclass correlation coefficients (ICCs) and outlier analysis.

Main Results:

  • No significant difference in LSM was found between 3 and 10 acquisitions for all systems (ICCs ≥ 0.97).
  • Four acquisitions were sufficient for all systems to achieve LSM within 1.0 kPa of the median of ten.
  • Point shear wave elastography (pSWE) and transient elastography (TE) required 4 acquisitions for <20% deviation, while 2D-SWE needed 6.

Conclusions:

  • Current recommendations for 10 acquisitions for pSWE and TE, and 3 for 2D-SWE, may not be optimal for pediatric populations.
  • Fewer acquisitions can provide reliable liver stiffness measurements in children, potentially shortening examination times.
  • This study supports optimizing elastography protocols for pediatric patients to improve efficiency without compromising accuracy.
Abstract