Naturally occurring osteochondrosis latens lesions identified by quantitative and morphological 10.5T MRI in pigs

Alexandra R Armstrong1, Štefan Zbýň2, Abdul Wahed Kajabi2

  • 1Department of Veterinary Clinical Sciences, University of Minnesota Twin Cities, Minneapolis, Minnesota, USA.

Insights

High-field MRI successfully identified early juvenile osteochondritis dissecans (JOCD) lesions in juvenile pigs. This advanced imaging technique shows promise for diagnosing cartilage-confined osteochondrosis latens (OCL) and osteochondrosis manifesta (OCM) in pediatric orthopedic patients.

Area of Science:

  • Orthopedic Research
  • Pediatric Musculoskeletal Imaging
  • Veterinary Radiology

Background:

  • Juvenile osteochondritis dissecans (JOCD) is a pediatric orthopedic condition affecting cartilage and bone.
  • Early JOCD stages, osteochondrosis latens (OCL) and osteochondrosis manifesta (OCM), precede visible osteochondral fragments.
  • Noninvasive imaging of early, cartilage-confined OCL lesions remains challenging.

Purpose of the Study:

  • To determine if 10.5 Tesla (T) MRI can detect naturally occurring OCL lesions in intact joints of juvenile pigs.
  • To correlate MRI findings with histological assessments for early JOCD diagnosis.

Main Methods:

  • Harvested juvenile pig elbows and knees (stifles) from 4, 8, and 12-week-old animals.
  • Utilized 10.5 T MRI to acquire morphological 3D DESS images and quantitative T2/T1ρ relaxation time maps.
  • Performed histological analysis to confirm or refute MRI-identified lesions.

Main Results:

  • MRI detected areas of increased T2 and T1ρ relaxation times in distal femora and humeri, suggestive of OCL/OCM.
  • Histology confirmed OCL or OCM lesions at all MRI-identified sites, with no additional lesions found.
  • Histological findings included chondronecrosis and delayed endochondral ossification, consistent with OCL/OCM stages.

Conclusions:

  • 10.5 T MRI is capable of identifying early JOCD lesions (OCL/OCM) in juvenile pigs.
  • This study demonstrates the potential of advanced MRI techniques for diagnosing early-stage JOCD.
  • Further research with clinical MRI systems (≤7 T) is required to validate these findings for human in vivo diagnosis.

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