Efficacy of diffusion weighted imaging in sacroiliac joint MRI in children

Sevinc Tasar1, Saliha Ciraci1, Pinar Diydem Yilmaz2

  • 1Department of Pediatric Radiology, University of Health Sciences, Istanbul Umraniye Training and Research Hospital, Istanbul, Turkiye.

Insights

Diffusion-weighted imaging (DWI) offers an objective method for diagnosing sacroiliitis in children. By utilizing apparent diffusion coefficient (ADC) measurements, DWI reduces diagnostic errors associated with immature bone marrow, unlike traditional STIR sequences.

Area of Science:

  • Pediatric Radiology
  • Medical Imaging
  • Orthopedics

Background:

  • Assessing sacroiliac joint inflammation in children is challenging due to immature bone marrow signals on MRI.
  • Traditional sequences like STIR can yield false positives in pediatric patients.

Purpose of the Study:

  • To evaluate the efficacy of diffusion-weighted imaging (DWI) for diagnosing sacroiliitis in pediatric patients.
  • To compare DWI with conventional MRI sequences in assessing the sacroiliac joint.

Main Methods:

  • Retrospective analysis of sacroiliac joint MRI scans, including DWI, in 54 patients with sacroiliitis and 85 controls.
  • Evaluation of subchondral bone marrow edema and contrast enhancement for active sacroiliitis.
  • Apparent diffusion coefficient (ADC) measurements were taken from DWI sequences.

Main Results:

  • STIR sequences showed 88% sensitivity and 92% specificity but produced false positives in immature bone marrow.
  • ADC values differed significantly between sacroiliitis (1.35x10⁻³ mm²/s), normal marrow (0.44x10⁻³ mm²/s), and immature marrow (0.72x10⁻³ mm²/s).
  • DWI with ADC measurements provided objective assessment without contrast enhancement.

Conclusions:

  • DWI, through ADC measurements, is a reliable and objective tool for diagnosing pediatric sacroiliitis.
  • It overcomes limitations of STIR imaging in immature bone marrow, reducing diagnostic errors.
  • DWI is a valuable, contrast-free MRI sequence for pediatric sacroiliac joint assessment.
Abstract

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