Literature DB >> 27716955

Computation of Femoral Canine Morphometric Parameters in Three-Dimensional Geometrical Models.

Gianpaolo Savio1, Teresa Baroni2, Gianmaria Concheri3, Ermenegildo Baroni2, Roberto Meneghello4, Federico Longo5, Maurizio Isola5.   

Abstract

OBJECTIVE: To define and validate a method for the measurement of 3-dimensional (3D) morphometric parameters in polygonal mesh models of canine femora. STUDY
DESIGN: Ex vivo/computerized model. SAMPLE POPULATION: Sixteen femora from 8 medium to large-breed canine cadavers (mean body weight 28.3 kg, mean age 5.3 years).
METHODS: Femora were measured with a 3D scanner, obtaining 3D meshes. A computer-aided design-based (CAD) software tool was purposely developed, which allowed automatic calculation of morphometric parameters on a mesh model. Anatomic and mechanical lateral proximal femoral angles (aLPFA and mLPFA), anatomic and mechanical lateral distal femoral angles (aLDFA and mLDFA), femoral neck angle (FNA), femoral torsion angle (FTA), and femoral varus angle (FVA) were measured in 3D space. Angles were also measured onto projected planes and radiographic images.
RESULTS: Mean (SD) femoral angles (degrees) measured in 3D space were: aLPFA 115.2 (3.9), mLPFA 105.5 (4.2), aLDFA 88.6 (4.5), mLDFA 93.4 (3.9), FNA 129.6 (4.3), FTA 45 (4.5), and FVA -1.4 (4.5). Onto projection planes, aLPFA was 103.7 (5.9), mLPFA 98.4 (5.3), aLDFA 88.3 (5.5), mLDFA 93.6 (4.2), FNA 132.1 (3.5), FTA 19.1 (5.7), and FVA -1.7 (5.5). With radiographic imaging, aLPFA was 109.6 (5.9), mLPFA 105.3 (5.2), aLDFA 92.6 (3.8), mLDFA 96.9 (2.9), FNA 120.2 (8.0), FTA 30.2 (5.7), and FVA 2.6 (3.8).
CONCLUSION: The proposed method gives reliable and consistent information about 3D bone conformation. Results are obtained automatically and depend only on femur morphology, avoiding any operator-related bias. Angles in 3D space are different from those measured with standard radiographic methods, mainly due to the different definition of femoral axes. © Copyright 2016 by The American College of Veterinary Surgeons.

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Year:  2016        PMID: 27716955     DOI: 10.1111/vsu.12550

Source DB:  PubMed          Journal:  Vet Surg        ISSN: 0161-3499            Impact factor:   1.495


  1 in total

1.  Three dimensional modeling and quantitative analysis of long bone parameters of rabbit using micro-computed tomography.

Authors:  C Bakici; R O Akgun; O Ekim; B Batur; M Bakici; D Ozen; C Soydal
Journal:  Iran J Vet Res       Date:  2021       Impact factor: 1.376

  1 in total

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