Literature DB >> 2010836

Ischemic necrosis of cartilage in spontaneous and experimental lesions of osteochondrosis.

C S Carlson1, D J Meuten, D C Richardson.   

Abstract

This study was designed to examine the association of spontaneous lesions of osteochondrosis with vascular supply to epiphyseal cartilage, and to determine whether similar lesions could be experimentally reproduced by selective interruption of cartilage canal blood supply. The vascular supply to the articular-epiphyseal cartilage complex of the distal end of the femur was studied in 27 microfil- or barium-injected and cleared specimens and 24 serially sectioned microangiographic specimens from 27 clinically normal female swine (3.6 to 71.0 kg). Blood vessels supplying the articular-epiphyseal cartilage complex were consistently restricted to the epiphyseal region and the number of vessels decreased as the pigs increased in weight (p less than 0.001). Spontaneous lesions of osteochondrosis (i.e., cartilage necrosis) were initially seen in the first areas of epiphyseal cartilage to become avascular and were associated with necrotic blood vessels. The number and size of foci of necrotic cartilage increased as the pigs increased in weight (p less than 0.001). Blood supply to epiphyseal cartilage from cartilage canal vessels was surgically interrupted in a highly vascular area of the medial femoral condyle in eight additional 23-kg female swine. This procedure resulted in necrosis of blood vessels within cartilage canals followed by necrosis of surrounding cartilage, lesions that appeared to be identical to early spontaneous lesions of osteochondrosis. These results suggest that the viability of epiphyseal cartilage in the articular-epiphyseal cartilage complex is highly dependent on an adequate blood supply from cartilage canal vessels, and strongly implicates a defect in blood supply in the pathogenesis of osteochondrosis.

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Year:  1991        PMID: 2010836     DOI: 10.1002/jor.1100090303

Source DB:  PubMed          Journal:  J Orthop Res        ISSN: 0736-0266            Impact factor:   3.494


  29 in total

Review 1.  Articular osteochondrosis: a comparison of naturally-occurring human and animal disease.

Authors:  A M McCoy; F Toth; N I Dolvik; S Ekman; J Ellermann; K Olstad; B Ytrehus; C S Carlson
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2.  Identification of Areas of Epiphyseal Cartilage Necrosis at Predilection Sites of Juvenile Osteochondritis Dissecans in Pediatric Cadavers.

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3.  Is VEGF under-expressed in Indian children with Perthes disease?

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4.  Interobserver reliability in the histopathological diagnosis of cartilaginous tumors in patients with multiple osteochondromas.

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5.  Susceptibility weighted imaging of cartilage canals in porcine epiphyseal growth cartilage ex vivo and in vivo.

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6.  Novel Application of Magnetic Resonance Imaging Demonstrates Characteristic Differences in Vasculature at Predilection Sites of Osteochondritis Dissecans.

Authors:  Ferenc Tóth; Mikko J Nissi; Jutta M Ellermann; Luning Wang; Kevin G Shea; John Polousky; Cathy S Carlson
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7.  [Microfracture technique for the treatment of articular cartilage lesions of the talus].

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Journal:  Orthopade       Date:  2008-03       Impact factor: 1.087

8.  Blood vessels in epiphyseal cartilage of human fetal femoral bone: a scanning electron microscopic study of corrosion casts.

Authors:  A Skawina; J A Litwin; J Gorczyca; A J Miodoński
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9.  Does dynamic immobilization reduce chondrocyte apoptosis and disturbance to the femoral head perfusion?

Authors:  Lian-Yong Li; Li-Jun Zhang; Jing-Yu Jia; Qun Zhao; En-Bo Wang; Qi-Wei Li
Journal:  Int J Clin Exp Pathol       Date:  2013-01-15

10.  In vivo visualization using MRI T2 mapping of induced osteochondrosis and osteochondritis dissecans lesions in goats undergoing controlled exercise.

Authors:  Ferenc Tóth; Frédéric H David; Elizabeth LaFond; Luning Wang; Jutta M Ellermann; Cathy S Carlson
Journal:  J Orthop Res       Date:  2016-06-19       Impact factor: 3.494

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