Variability of the proximal phalanx in warmblood and coldblood horses – morphological and structural analyses

Authors

  • Małgorzata Dzierzęcka Department of Morphological Science, Faculty of Veterinary Medicine, Warsaw University of Life Sciences, Nowoursynowska 166, 02-776 Warsaw, Poland
  • Marcin Komosa Department of Animal Anatomy – Institute of Zoology, Poznań University of Life Sciences, Wojska Polskiego 71C, 60-625 Poznań, Poland

DOI:

https://doi.org/10.26496/bjz.2013.130

Keywords:

bone, computed tomography, horses, proximal phalanx

Abstract

Anatomical shape as well as bone geometry are important factors for the mechanical properties of stiffness and strength in bones. In the light of this statement, the primary aim of the study was to evaluate the variable forms of the proximal phalanx in different types of horses. Multivariate analyses of data from 81 horses revealed that the proximal phalanx has diverse spatial forms. Differences were observed particularly in the length of the bone and the breadth of its diaphysis. In horses with lighter morphotype, the phalanx is significantly narrower in its middle section. In the second stage of the study, geometrical parameters of the phalanx were analysed with the use of peripheral quantitative computed tomography (pQCT). Tomographic analysis was conducted at three levels: at 15%, 50% and 85% of the bone length. Based on the analysis, we concluded that most of the geometric parameters have higher values in coldbloods but only at the mid-diaphysis (50%) and at 85% of the bone length. Moreover, in coldblood horses, higher strength of the phalanx at these levels, expressed by Strength Strain Index, was observed. We did not observe any significant differences between warmblood and coldblood horses in the metaphyseal proximal region which is located at 15 % of the bone length.

References

Alho A (1993). Mineral and mechanics of bone fragility fractures. Acta Orthop., 64:227-232.

Bartosik A (1957). The structure of metacarpal bones of some breeds and types of horses (in Polish: Struktura kości nadpęcia koni niektórych ras i typów użytkowych). Rocz. Nauk Roln., 71: 155-209.

Biewener AA (1991). Musculoskeletal design in relation to body size. J. Biomech., 24:19-29.

Brooks SA, Makvandi-Nejad S, Chu E, Allen JJ, Streeter C, GU E, McClerry B, Murphy BA, Bellone R & Sutter NB (2010). Morphological variation in the horse: defining complex traits of body size and shape. Anim. Genet., 41:159-165.

Charuta A, Dzierzęcka M & Biesiada – Drzazga B (2012). Evaluation of densitometric and geometric parameters of tibiotarsal bones in turkeys. Bull. Vet. Inst. Pulawy., 56:379 - 384.

Claes LE, Wilke HJ & Kiefer H (1995). Osteonal structure better predicts tensile strength of healing bone than volume fraction. J. Biomech., 28:1377-1390.

Clegg PD (2011). Musculoskeletal disease and injury, now and in the future. Part 1: fractures and fatalities. Equine Vet. J,. 43:643-649.

Czerwinski E (1994). Quantitative evaluation of changes occurring in the spongious cortical bone under the influence of fluor and their diagnostic meaning. Collegium Medicum UJ, Kraków.

Davies HMS (2002). Dorsal metacarpal cortex ultrasound speed and bone size and shape. Equine Exercise Physiology 6 in Equine Vet. J. Suppl., 34:337-339.

Driesch A (1976). A guide to the measurements of animal bones from archaeological sites. Peabody Museum Bulletin, 1:1-136.

Dubs B & Nemeth F (1975). Therapie und Prognose der Fesselbeinfrakturen. Schweizer Archiv für Tierheilkunde, 117:299-309.

Dzierzęcka M & Charuta A (2012). The analysis of densitometric and geometric parameters of bilateral proximal phalanges in horses with the use of peripheral quantitative computed tomography. Acta Vet. Scand., 54 41-51.

Dzierzęcka M, Charuta A, Wąsowski AJ, Bartyzel BJ & Janiuk I (2008). Injuries of limb joints during race training of 2-year-old Thoroughbred horses. Bull. Vet. Inst. Pulawy., 52:175-178.

Dzierzęcka M, Wąsowski AJ & Kobryń H (2007). The leg bones injuries during race training in two–year old thoroughbred horses. Med. Wet., 63:574-577.

Dzierzęcka M, Wąsowski AJ, Skubiszewska D, Bartyzel BJ & Karbowicz M (2006). Injuries of limb structures of locomotion apparatus in two – year old thoroughbreds being in racing training. Veterinarija ir Zootechnika, 35:41-43.

Ellis DR, Simpson DJ, Greenwood RE & Crowchurst JS (1987). Observations and management of fractures of the proximal phalanx in young Thoroughbreds. Equine Vet. J., 19:43-49.

Ferretti JL, Capozza RF & Zanchetta JR (1996). Mechanical validation of a tomographic (pQCT) index for noninvasive estimation of rat femur bending strength. Bone, 18:97-102.

Ferretti JL, Gaffuri O, Capozza RF, Cointry G, Bozzini C, Olivera M, Zanchetta JR & Bozzini CE (1995). Dexamethasone effects on mechanical, geometric and densitometric properties of rat femur diaphyses as described by peripheral quantitative computerized tomography and bending tests. Bone, 16:119-124.

Firth EC, Rogers CW, Double M & Jopson NB (2005). Musculoskeletal responses of 2-year-old thoroughbred horses to early training. Bone parameters in the third metacarpal and third metatarsal bones. N. Z. Vet. J., 53:101-112.

Hildebrand M (1987). The mechanics of horse legs. Amer. Scient., 75:594-601.

Jacklin BD & Wright IM (2012). Frequency distributions of 174 fractures of the distal condyles of the third metacarpal and metatarsal bones in 167 Thoroughbred racehorses (1999-2009). Equine Vet. J., 44:707-713.

Jee WSS, Li XJ & Schaffer MB (1991). Adaptation of diaphyseal structure with aging and increased mechanical usage in the adult rat: A histomorphometrical and biomechanical study. Anat. Rec., 230:332-338.

Khan K, McKay H, Kannus P, Bailey D, Wark J & Bennell K (2001). Physical activity and bone health. Human Kinetics, Illinois, USA.

Komosa M, Moliński K & Godynicki S (2006). The variability of cranial morphology in modern horses. Zoolog. Sci., 23:289-298.

Komosa M & Purzyc H (2009). Konik and Hucul horses: A comparative study of exterior measurements. J. Anim. Sci., 87:2245-2254.

Markel MD & Richardson DW (1985). Noncominuted fractures of the proxy mal phalanx in 69 horses. JAVMA, 186:573.

Meulen MCH, Jepsen KJ & Mikic B (2001). Understanding bone strength: size isn’t everything. Bone, 29:101-104.

Mow VC, Hades WC (1991). Basic orthopedics biomechanics. Raven Press, New York.

Nauwelaerts S, Allen WA, Lane JM & Clayton HM (2011). Inertial properties of equine limb segments. J. Anat., 218:500-509.

Nicholson CL & Firth EC (2010). Assessment of bone response to conditioning exercise in the radius and tibia of young thoroughbred horses using pQCT. Journal of Musculoskeletal and Neuronal Interactions, 10:199-206.

Parkin TD, Clegg PD, French NP, Proudman CJ, Riggs CM, Singer ER, Webbon PM & Morgan KL (2004). Risk of fatal distal limb fractures among Thoroughbreds involved in the five types of racing in the United Kingdom. Vet. Rec., 154:493-497.

Pieszka M, Łuszczyński J & Baranowska A (2011). Frequency of limb injures between thoroughbred and Arabian horses. Iran. J. Applied Anim. Sci., 1:69-71.

Powell SE (2012). Low-field standing magnetic resonance imaging findings of the metacarpo/metatarsophalangeal joint of racing Thoroughbreds with lameness localised to the region: a retrospective study of 131 horses. Equine Veterinary Journal, 44:169-177

Radzki RP, Bieńko M, Kapica M, Puzio I, Dobrowolski P & Filip R (2006). Effect of β2-adrenergic receptor agonist clenbuterol on the mineralization of tibiae in rats with established osteopenia. Med. Wet., 62:824-826.

Radzki RP, Bieńko M & Filip R (2007). Influence of strontium ranelate on mineral and mechanical properties of the femur in orchidectomized rats. Med. Wet., 63:1630-1634.

Ramzan PH & Palmer L (2011). Musculoskeletal injuries in Thoroughbred racehorses: a study of three large training yards in Newmarket, UK (2005-2007). Veterinary Journal, 187:325-329.

Rauch F & Schoenau E (2001). The developing bone: slave or master of its cells and molecules? Pediatr. Res., 50:309-314.

Sobczuk D & Komosa M (2012). Morphological differentiation of Polish Arabian horses - multivariate analysis. Bull. Vet. Inst. Pulawy, 56:623-629.

Verheyen K, Price J, Lanyon L & Wood J (2006). Exercise distance and speed affect the risk of fracture in racehorses. Bone, 39:1322-1330.

Yovich JV & McIlwraith CW (1986). Arthroscopic surgery for osteochondral fractures of the proximal phalanx of the metacarpophalangeal and metatarsophalangeal (fetlock) joints in horses. J. Am. Vet. Med. Assoc., 188:273-279.

Downloads

Published

2024-03-13

How to Cite

Dzierzęcka, M., & Komosa, M. (2024). Variability of the proximal phalanx in warmblood and coldblood horses – morphological and structural analyses. Belgian Journal of Zoology, 143(2), 119–130. https://doi.org/10.26496/bjz.2013.130

Issue

Section

Articles