Epiphyseal cartilage vascular architecture at the distal humeral osteochondritis dissecans predilection site in juvenile pigs

Author:

Tóth Ferenc1ORCID,Nissi Mikko J.2ORCID,Armstrong Alexandra R.1ORCID,Buko Erick O.13ORCID,Johnson Casey P.13ORCID

Affiliation:

1. Department of Veterinary Clinical Sciences, College of Veterinary Medicine University of Minnesota Saint Paul Minnesota USA

2. Department of Technical Physics University of Eastern Finland Kuopio Finland

3. Center for Magnetic Resonance Research, Department of Radiology University of Minnesota Minneapolis Minnesota USA

Abstract

AbstractFailure of endochondral ossification due to interruption of the vascular supply to the epiphyseal cartilage is a critical step in the development of osteochondritis dissecans (OCD). Herein we describe the vascular architecture of the distal humeral epiphyseal cartilage in pigs and identify characteristic features that have been associated with sites predisposed to OCD development across species. Distal humeral specimens were harvested from pigs (n = 5, ages = 1, 10, 18, 30, and, 42 days old) and imaged at 9.4T magnetic resonance imaging (MRI) using a 3D gradient recalled echo sequence. The MRI data were processed using a quantitative susceptibility mapping (QSM) pipeline to visualize the vascular architecture. Specimens were also evaluated histologically to identify the presence of ischemic epiphyseal cartilage necrosis (osteochondrosis [OC]‐latens) and associated failure of endochondral ossification (OC‐manifesta). The QSM data enabled visualization of two distinct vascular beds arising from the perichondrium at the lateral and medial aspects of the distal humeral epiphysis. Elongated vessels originating from these beds coursed axially to supply the lateral and medial thirds of epiphyseal cartilage. At 18 days of age and older, a shift from perichondrial to transosseous blood supply was noted axially, which appeared more pronounced on the lateral side. This shift coincided with histologic identification of OC‐latens (30‐ and 42‐day‐old specimens) and OC‐manifesta (18‐ and 42‐day‐old specimens) lesions in the corresponding regions. The vascular anatomy and its evolution at the distal humeral epiphysis closely resembles that previously reported at predilection sites of knee OCD, suggesting a shared pathophysiology between the knee and elbow joints.

Funder

Academy of Finland

Publisher

Wiley

Subject

Orthopedics and Sports Medicine

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