Analyze Diet
Equine veterinary journal2021; 53(3); 630-631; doi: 10.1111/evj.13441

Response to Letter to the Editor: Validation of standing cone beam computed tomography for diagnosing subchondral fetlock pathology in the Thoroughbred racehorse.

Abstract: No abstract available
Publication Date: 2021-04-10 PubMed ID: 33834535DOI: 10.1111/evj.13441Google Scholar: Lookup
The Equine Research Bank provides access to a large database of publicly available scientific literature. Inclusion in the Research Bank does not imply endorsement of study methods or findings by Mad Barn.
  • Letter
  • Comment

Cite This Article

APA
Wulster K, Ortved K, Curtiss A, Richardson D. (2021). Response to Letter to the Editor: Validation of standing cone beam computed tomography for diagnosing subchondral fetlock pathology in the Thoroughbred racehorse. Equine Vet J, 53(3), 630-631. https://doi.org/10.1111/evj.13441

Publication

ISSN: 2042-3306
NlmUniqueID: 0173320
Country: United States
Language: English
Volume: 53
Issue: 3
Pages: 630-631

Researcher Affiliations

Wulster, Kathryn
  • Department of Clinical Studies, New Bolton Center, University of Pennsylvania, Kennett Square, PA, USA.
Ortved, Kyla
  • Department of Clinical Studies, New Bolton Center, University of Pennsylvania, Kennett Square, PA, USA.
Curtiss, Alexandra
  • Department of Clinical Studies, New Bolton Center, University of Pennsylvania, Kennett Square, PA, USA.
Richardson, Dean
  • Department of Clinical Studies, New Bolton Center, University of Pennsylvania, Kennett Square, PA, USA.

MeSH Terms

  • Animals
  • Cone-Beam Computed Tomography
  • Extremities
  • Horses
  • Joints

References

This article includes 19 references
  1. Ramzan PHL. Letter to the Editor: Validation of standing cone beam computed tomography for diagnosing subchondral fetlock pathology in the Thoroughbred racehorse.. Equine Vet J 2021;53:628-29.
    doi: 10.1111/evj.13433google scholar: lookup
  2. Curtiss AL, Ortved KF, Dallap-Schaer B. Validation of standing cone beam computed tomography for diagnosing subchondral fetlock pathology in the Thoroughbred racehorse.. Equine Vet J 2021;53:510-23.
    doi: 10.1111/evj.13414google scholar: lookup
  3. Avci M, Kozaci N. Comparison of X-ray imaging and computed tomography scan in the evaluation of knee trauma.. Med 2019;55(10).
    doi: 10.3390/medicina55100623google scholar: lookup
  4. Mustonen AOT, Koskinen SK, Kiuru MJ. Acute knee trauma: Analysis of multidetector computed tomography findings and comparison with conventional radiography.. Acta radiol 2005;46(8):866-74.
    doi: 10.1080/02841850500335135google scholar: lookup
  5. Wicky S, Blaser PF, Blanc CH, Leyvraz PF, Schnyder P, Meuli RA. Comparison between standard radiography and spiral CT with 3D reconstruction in the evaluation, classification and management of tibial plateau fractures.. Eur Radiol 2000;10(8):1227-32.
    doi: 10.1007/s003300000326google scholar: lookup
  6. Hwang JS, Koury KL, Gorgy G. Evaluation of intra-articular fracture extension after gunshot wounds to the lower extremity: Plain radiographs versus computer tomography.. J Orthop Trauma 2017;31(6):334-8.
  7. Neubauer J, Benndorf M, Ehritt-Braun C. Comparison of the diagnostic accuracy of cone beam computed tomography and radiography for scaphoid fractures.. Sci Rep 2018;8(1):1-6.
  8. Nuñez DB, Zuluaga A, Fuentes-Bernardo DA, Rivas LA, Becerra JL. Cervical spine trauma: how much more do i we learn by routinely using helical CT?. Radiographics 1996;16(6):1307-18.
  9. Shelmerdine SC, Langan D, Hutchinson JC. Chest radiographs versus CT for the detection of rib fractures in children (DRIFT): a diagnostic accuracy observational study.. Lancet Child Adolesc Health 2018;2(11):802-11.
  10. Welling RD, Jacobson JA, Jamadar DA, Chong S, Caoili EM, Jebson PJL. MDCT and radiography of wrist fractures: Radiographic sensitivity and fracture patterns.. Am J Roentgenol 2008;190(1):10-6.
    doi: 10.2214/ajr.07.2699google scholar: lookup
  11. Ramzan PHL, Palmer L, Powell SE. Unicortical condylar fracture of the Thoroughbred fetlock: 45 cases (2006-2013).. Equine Vet J 2015;47(6):680-3.
    doi: 10.1111/evj.12349google scholar: lookup
  12. Ramzan PHL, Wylie CE. Nonsurgical and surgical management of metacarpo/metatarsophalangeal joint dorsal chip fracture in the Thoroughbred racehorse.. Equine Vet J 2020;52(3):399-403.
    doi: 10.1111/evj.13185google scholar: lookup
  13. Ramzan PHL, Wylie CE. Career outcome of Thoroughbred racehorses with metacarpo/metatarsophalangeal joint dorsal chip fracture managed nonsurgically and surgically: a retrospective cohort study.. Equine Vet J 2020;52(6):823-31.
    doi: 10.1111/evj.13253google scholar: lookup
  14. Powell SE. 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 Vet J 2012;44(2):169-77.
  15. Ramzan PHL. Mind the gaps: The science of POD and the racehorse fetlock.. Equine Vet J 2020;2020:217-20.
    doi: 10.1111/evj.13369google scholar: lookup
  16. Pinchbeck GL, Clegg PD, Boyde A, Riggs CM. Pathological and clinical features associated with palmar/plantar osteochondral disease of the metacarpo/metatarsophalangeal joint in Thoroughbred racehorses.. Equine Vet J 2013;45(5):587-92.
    doi: 10.1111/evj.12036google scholar: lookup
  17. Pool RR, Meagher DM. Pathologic findings and pathogenesis of racetrack injuries.. Vet Clin North Am Equine Pract 1990;6(1):1-30.
  18. Radtke CL, Danova NA, Scollay MC. Macroscopic changes in the distal ends of the third metacarpal and metatarsal bones of Thoroughbred racehorses with condylar fractures.. Am J Vet Res 2003;64(9):1110-6.
    doi: 10.2460/ajvr.2003.64.1110google scholar: lookup
  19. Riggs CM, Whitehouse GH, Boyde A. Structural variation of the distal condyles of the third metacarpal and third metatarsal bones in the horse.. Equine Vet J 1999;31(2):130-9.

Citations

This article has been cited 1 times.
  1. Johnston GCA, Ahern BJ, Palmieri C, Young AC. Imaging and Gross Pathological Appearance of Changes in the Parasagittal Grooves of Thoroughbred Racehorses.. Animals (Basel) 2021 Nov 24;11(12).
    doi: 10.3390/ani11123366pubmed: 34944142google scholar: lookup