Comparison of Cervical Stabilization with Transpedicular Pins and Polymethylmethacrylate versus Transvertebral Body Polyaxial Screws with or without an Interbody Distractor in Dogs

Author:

Marinho Paulo V.T.1,Ferrigno Cassio R.A.2,Costa Ronaldo C. da3,Pereira César A.M.4,Rego Mário A.F.5,Bregadioli Thales5,Paes Fernanda5

Affiliation:

1. Department of Veterinary Medicine, Federal Institute of Education, Science, and Technology of Southern Minas Gerais, IFSULDEMINAS, Muzambinho, MG, Brazil

2. Small Animal Clinical Science, University of Tennessee, Knoxville, United States

3. Department of Veterinary Clinical Sciences, The Ohio State University, Columbus, Ohio, United States

4. Biomechanics Laboratory LIM-41/HC-FMUSP, Hospital das Clínicas, College of Medicine, University of São Paulo, São Paulo, Brazil

5. Department of Surgery, University of São Paulo, São Paulo, Brazil

Abstract

Abstract Objective The main aim of this study was to compare the biomechanical properties of caudal cervical vertebral stabilization using bicortical transpedicular pins with polymethylmethacrylate (PMMA) versus transvertebral body polyaxial screws and connecting rods with or without an interbody distractor. Study Design Ten canine cervical vertebral columns (C2–T3) were used. Four models (intact, transvertebral body polyaxial screw with interbody distractor [polyaxial + distractor], transvertebral body polyaxial screw without interbody distractor [polyaxial − distractor] and bicortical transpedicular pins/polymethylmethacrylate [pin-PMMA]) were applied to C6–7 sequentially on the same specimens. Angular range of motion (AROM) in the form of flexion and extension was measured at C4–5, C5–6 and C6–7 in all groups. Results Treated vertebral specimens had significantly less AROM than unaltered specimens. There was no significant difference in AROM between the experimental groups at C6 and C7. Angular range of motion ratio in flexion–extension was 80.8, 72.7 and 78.3% for polyaxial + distractor, polyaxial − distractor and pin-PMMA groups, respectively, which were less than the intact group. There was no significant increase in the range of motion of the adjacent vertebrae after stabilization. Conclusion Stabilization obtained with transvertebral body polyaxial screws was comparable to that from the well-established bicortical pins/PMMA construct. Association of an intervertebral distractor did not change AROM of the polyaxial screw constructs.

Publisher

Georg Thieme Verlag KG

Subject

General Veterinary,Animal Science and Zoology

Reference44 articles.

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2. Modified distraction-stabilization technique using an interbody polymethyl methacrylate plug in dogs with caudal cervical spondylomyelopathy;B C Dixon;J Am Vet Med Assoc,1996

3. Caudal cervical intervertebral disk disease in the small dog: role of distraction and stabilization in ventral slot decompression;R B Fitch;J Am Anim Hosp Assoc,2000

4. Effect of a ventral slot procedure and of smooth or positive-profile threaded pins with polymethylmethacrylate fixation on intervertebral biomechanics at treated and adjacent canine cervical vertebral motion units;C L Koehler;Am J Vet Res,2005

5. Use of the ComPact UniLock System for ventral stabilization procedures of the cervical spine: a retrospective study;K Voss;Vet Comp Orthop Traumatol,2006

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