Ultrasound elastography in pediatric care: bridging innovation and noninvasive diagnostics

Martina Piersanti1, Federica Ferrari2, Marisa Piccirillo1

  • 1Pediatrics Unit, Neuroscience, Mental Health and Sense Organs (NESMOS) Department, Faculty of Medicine and Psychology, Sapienza University of Rome, Via Di Grottarossa 1035-1039, 00189, Rome, Italy.

Insights

Ultrasound elastography (USE) shows promise for noninvasive pediatric diagnostics, particularly in liver fibrosis assessment. Further research is needed to standardize protocols and expand its use across more organs.

Area of Science:

  • Pediatric Imaging
  • Medical Diagnostics
  • Ultrasound Technology

Background:

  • Ultrasound elastography (USE) is a noninvasive imaging technique used to assess tissue stiffness.
  • Its application in the pediatric population is growing, with potential benefits in reducing invasive procedures.
  • Established uses include liver fibrosis assessment, with emerging applications in other organs.

Purpose of the Study:

  • To review the current applications and limitations of USE in pediatric patients.
  • To evaluate its diagnostic value across various organs, including the liver, kidney, bowel, pancreas, muscle, and lung.
  • To suggest future research directions and clinical practice improvements for pediatric USE.

Main Methods:

  • A literature review was conducted using PubMed.
  • Studies published between 2010 and 2025 focusing on pediatric USE applications were included.
  • The review encompassed applications in the liver, kidney, bowel, pancreas, muscle, connective tissue, and lung.

Main Results:

  • Two-dimensional shear wave elastography (2D-SWE) shows high accuracy for liver disease.
  • USE shows potential in kidney diseases, inflammatory bowel disease, cystic fibrosis, and muscle disorders.
  • Challenges include operator dependency, lack of standardization, and poor reproducibility in certain organs.

Conclusions:

  • USE has significant potential for noninvasive pediatric diagnostics, aiding in reduced invasive procedures and improved follow-up.
  • Further studies are essential to establish standardized protocols, reliable cut-off values, and broader organ system applications.
  • Integrating USE with other imaging modalities and AI may enhance its diagnostic capabilities.

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