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Topic:Metaphysis

The metaphysis in horses is the region of a long bone located between the epiphysis and the diaphysis. It is characterized by its role in bone growth and development, particularly during the juvenile stages. This area contains the growth plate, or physis, which is responsible for longitudinal bone growth through endochondral ossification. The metaphysis is a site of active metabolic activity and is susceptible to various conditions such as growth plate injuries and osteochondrosis. Research on the equine metaphysis explores its anatomical structure, physiological functions, and its involvement in orthopedic conditions. This page compiles peer-reviewed research studies and scholarly articles that examine the development, pathology, and clinical implications of the metaphysis in horses.
In this issue – April 2014: Perceptions of 2007 equine influenza outbreak · Hyperinsulinaemia in ponies · Hydration and perennial ryegrass toxicosis · Travel history needed for possible canine leishmaniosis · Complications of arthroscopy · Metaphyseal osteopathy in Kelpies · Infectious bronchitis virus and egg quality.
Australian veterinary journal    March 29, 2014   Volume 92, Issue 4 89-90 doi: 10.1111/avj.12171
Jackson A.No abstract available
Mild exercise early in life produces changes in bone size and strength but not density in proximal phalangeal, third metacarpal and third carpal bones of foals.
Veterinary journal (London, England : 1997)    December 24, 2010   Volume 190, Issue 3 383-389 doi: 10.1016/j.tvjl.2010.11.016
Firth EC, Rogers CW, van Weeren PR, Barneveld A, McIlwraith CW, Kawcak CE, Goodship AE, Smith RK.Exercise or lack of it in early life affects chondro-osseous development. Two groups of horses were used to investigate the effects of age and exercise regimen on bone parameters of diaphyseal, metaphyseal, epiphyseal and cuboidal bones of the distal limb of Thoroughbreds. One group had exercised only spontaneously from an early age at pasture (PASTEX group), while the other group of horses were exposed to a 30% greater workload through additional defined exercise (CONDEX). Longitudinal data from peripheral quantitative computed tomography (pQCT) were obtained from eight scan sites of the left...
Effect of age on bone mineral density and micro architecture in the radius and tibia of horses: an Xtreme computed tomographic study.
BMC veterinary research    January 25, 2008   Volume 4 3 doi: 10.1186/1746-6148-4-3
Fürst A, Meier D, Michel S, Schmidlin A, Held L, Laib A.The effect of age on the bone mineral density and microarchitecture of the equine radius and tibia was investigated. Fifty-six bones from 15 horses aged four to 21 years were used. There were nine geldings and six mares, and none of the horses had any disease influencing bone properties. Xtreme computed tomography was used to evaluate a 9-mm segment of the diaphysis and metaphysis of each bone. The following variables were determined: length of the bone, circumference and diameter in the frontal and sagittal planes in the middle of the bone.Diaphysis: total volume, bone volume, bone volume rat...
Transphyseal vessel involvement in repair of metaphyseal retained cartilage.
Australian veterinary journal    December 1, 1995   Volume 72, Issue 12 452-455 doi: 10.1111/j.1751-0813.1995.tb03487.x
Firth EC, Klarenbeek A.A foal with retained cartilage in the distal metaphysis of the right and left radii and third metacarpal bones had abnormal physeal vasculature. In areas where cartilage was retained, vessels crossed the physis, and branched at the physeal-metaphyseal junction or at the site of retained cartilage. Vessels appeared to be involved in re-initiation of endochondral ossification and in the repair reponse to the presence of retained cartilage. In areas where the physis was radiographically and histologically normal, no vessels crossed the physis. A function of transphyseal vessels may be as a reserv...
Bilateral tibial metaphyseal stress fractures associated with physitis in a foal.
Journal of the American Veterinary Medical Association    July 1, 1994   Volume 205, Issue 1 76-78 
Frankeny RL, Johnson PJ, Messer NT, Keegan KG, Corwin LA.A 7-month-old Appaloosa foal had bilateral hind limb lameness and was unable to rise from recumbency without assistance. Lameness could be exacerbated by tarsal flexion and a firm swelling at the distomedial aspect of the tibias was associated with a marked pain response when palpated. Radiography revealed enlargement of the distal tibial metaphysis physis (compared with normal), and radiolucent fissure lines extending proximally from the physis into the metaphysis at its medial aspect. Treatment included rest and dietary adjustment. Although clinical signs initially resolved following treatme...
What is your diagnosis? Osteomyelitis of the distal metatarsal physis, metaphysis, and epiphysis.
Journal of the American Veterinary Medical Association    March 1, 1994   Volume 204, Issue 5 721-722 
Rook JS, Stickle RL, Mayer RA.No abstract available
Retained cartilage in the distal radial physis of foals.
Veterinary pathology    January 1, 1984   Volume 21, Issue 1 10-17 doi: 10.1177/030098588402100103
Firth EC, Poulos PW.Examination of growth plate defects in the distal radial physis of 13 foals three to 70 days of age revealed lesions in the lateral and medial aspects of the distal radial physis; the lateral defects were more numerous and obvious. Lesions consisted of widening of the zone of hypertrophying cells of the metaphyseal growth plate (retained cartilage), retained cartilage with discontinuity of cartilage and primary spongiosa, and microfracture of the primary spongiosa. In some foals, the cartilage retention was thought to be due to primary spongiosa microfracture, although fracture subsequent to c...
Microangiographic studies of metaphyseal vessels in young foals.
Research in veterinary science    March 1, 1983   Volume 34, Issue 2 231-235 
Firth EC, Poulos PW.Selective perfusion and microangiographic examination of the radius and metacarpus of 30 foals were performed. Vessels of extraosseous origin supplying the peripheral part of the metaphysis were not demonstrated in young foals, but became more obvious in older animals. The development of this vessel system coincided with the reduction of transphyseal vessels from the epiphysis crossing the growth plate.