Cargando…

Patient-specific 3D models aid planning for triplane proximal femoral osteotomy in slipped capital femoral epiphysis

PURPOSE: Slipped capital femoral epiphysis (SCFE) can result in a complex three-dimensional (3D) deformity of the proximal femur. A three-plane proximal femoral osteotomy (TPFO) has been described to improve hip mechanics. The purpose of this study was to evaluate the benefits of using 3D print tech...

Descripción completa

Detalles Bibliográficos
Autores principales: Cherkasskiy, L., Caffrey, J. P., Szewczyk, A. F., Cory, E., Bomar, J. D., Farnsworth, C. L., Jeffords, M., Wenger, D. R., Sah, R. L., Upasani, V. V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The British Editorial Society of Bone and Joint Surgery 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5421346/
https://www.ncbi.nlm.nih.gov/pubmed/28529664
http://dx.doi.org/10.1302/1863-2548-11-170277
_version_ 1783234571415846912
author Cherkasskiy, L.
Caffrey, J. P.
Szewczyk, A. F.
Cory, E.
Bomar, J. D.
Farnsworth, C. L.
Jeffords, M.
Wenger, D. R.
Sah, R. L.
Upasani, V. V.
author_facet Cherkasskiy, L.
Caffrey, J. P.
Szewczyk, A. F.
Cory, E.
Bomar, J. D.
Farnsworth, C. L.
Jeffords, M.
Wenger, D. R.
Sah, R. L.
Upasani, V. V.
author_sort Cherkasskiy, L.
collection PubMed
description PURPOSE: Slipped capital femoral epiphysis (SCFE) can result in a complex three-dimensional (3D) deformity of the proximal femur. A three-plane proximal femoral osteotomy (TPFO) has been described to improve hip mechanics. The purpose of this study was to evaluate the benefits of using 3D print technology to aid in surgical planning. PATIENTS AND METHODS: Fifteen children treated with TPFO for symptomatic proximal femoral deformity due to SCFE were included in this study. Ten patients were treated by a single surgeon with (model group, n = 5) or without (no-model group, n = 5) a 3D model for pre-operative planning, and compared with patients treated by two senior partners without the use of a model (senior group, n = 5) to evaluate for a learning curve. Peri-operative data including patient body mass index (BMI), surgical time and fluoroscopy time were recorded. RESULTS: Children in all three groups had similar BMIs at the time of the TPFO. Post-operative radiographic parameters were equally improved in all three groups. On average, surgical time decreased by 45 minutes and 38 minutes, and fluoroscopy time decreased by 50% and 25%, in the model group compared with the no-model and senior groups, respectively. CONCLUSIONS: Patient-specific 3D models aid in surgical planning for complex 3D orthopaedic deformities by enabling practice of osteotomies. Results suggest that 3D models may decrease surgical time and fluoroscopy time while allowing for similar deformity correction. These models may be especially useful to overcome steep learning curves for complex procedures or in trainee education through mock surgical procedures.
format Online
Article
Text
id pubmed-5421346
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher The British Editorial Society of Bone and Joint Surgery
record_format MEDLINE/PubMed
spelling pubmed-54213462017-05-19 Patient-specific 3D models aid planning for triplane proximal femoral osteotomy in slipped capital femoral epiphysis Cherkasskiy, L. Caffrey, J. P. Szewczyk, A. F. Cory, E. Bomar, J. D. Farnsworth, C. L. Jeffords, M. Wenger, D. R. Sah, R. L. Upasani, V. V. J Child Orthop Original Clinical Articles PURPOSE: Slipped capital femoral epiphysis (SCFE) can result in a complex three-dimensional (3D) deformity of the proximal femur. A three-plane proximal femoral osteotomy (TPFO) has been described to improve hip mechanics. The purpose of this study was to evaluate the benefits of using 3D print technology to aid in surgical planning. PATIENTS AND METHODS: Fifteen children treated with TPFO for symptomatic proximal femoral deformity due to SCFE were included in this study. Ten patients were treated by a single surgeon with (model group, n = 5) or without (no-model group, n = 5) a 3D model for pre-operative planning, and compared with patients treated by two senior partners without the use of a model (senior group, n = 5) to evaluate for a learning curve. Peri-operative data including patient body mass index (BMI), surgical time and fluoroscopy time were recorded. RESULTS: Children in all three groups had similar BMIs at the time of the TPFO. Post-operative radiographic parameters were equally improved in all three groups. On average, surgical time decreased by 45 minutes and 38 minutes, and fluoroscopy time decreased by 50% and 25%, in the model group compared with the no-model and senior groups, respectively. CONCLUSIONS: Patient-specific 3D models aid in surgical planning for complex 3D orthopaedic deformities by enabling practice of osteotomies. Results suggest that 3D models may decrease surgical time and fluoroscopy time while allowing for similar deformity correction. These models may be especially useful to overcome steep learning curves for complex procedures or in trainee education through mock surgical procedures. The British Editorial Society of Bone and Joint Surgery 2017-04 /pmc/articles/PMC5421346/ /pubmed/28529664 http://dx.doi.org/10.1302/1863-2548-11-170277 Text en Copyright © 2017, The British Editorial Society of Bone and Joint Surgery: All rights reserved http://creativecommons.org/licenses/by-nc/4.0/ Open Access This article is distributed under the terms of the Creative Commons Attribution-Non Commercial 4.0 International (CC BY-NC 4.0) licence (http://creativecommons.org/licenses/by-nc/4.0/) which permits non-commercial use, reproduction and distribution of the work without further permission provided the original work is attributed.
spellingShingle Original Clinical Articles
Cherkasskiy, L.
Caffrey, J. P.
Szewczyk, A. F.
Cory, E.
Bomar, J. D.
Farnsworth, C. L.
Jeffords, M.
Wenger, D. R.
Sah, R. L.
Upasani, V. V.
Patient-specific 3D models aid planning for triplane proximal femoral osteotomy in slipped capital femoral epiphysis
title Patient-specific 3D models aid planning for triplane proximal femoral osteotomy in slipped capital femoral epiphysis
title_full Patient-specific 3D models aid planning for triplane proximal femoral osteotomy in slipped capital femoral epiphysis
title_fullStr Patient-specific 3D models aid planning for triplane proximal femoral osteotomy in slipped capital femoral epiphysis
title_full_unstemmed Patient-specific 3D models aid planning for triplane proximal femoral osteotomy in slipped capital femoral epiphysis
title_short Patient-specific 3D models aid planning for triplane proximal femoral osteotomy in slipped capital femoral epiphysis
title_sort patient-specific 3d models aid planning for triplane proximal femoral osteotomy in slipped capital femoral epiphysis
topic Original Clinical Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5421346/
https://www.ncbi.nlm.nih.gov/pubmed/28529664
http://dx.doi.org/10.1302/1863-2548-11-170277
work_keys_str_mv AT cherkasskiyl patientspecific3dmodelsaidplanningfortriplaneproximalfemoralosteotomyinslippedcapitalfemoralepiphysis
AT caffreyjp patientspecific3dmodelsaidplanningfortriplaneproximalfemoralosteotomyinslippedcapitalfemoralepiphysis
AT szewczykaf patientspecific3dmodelsaidplanningfortriplaneproximalfemoralosteotomyinslippedcapitalfemoralepiphysis
AT corye patientspecific3dmodelsaidplanningfortriplaneproximalfemoralosteotomyinslippedcapitalfemoralepiphysis
AT bomarjd patientspecific3dmodelsaidplanningfortriplaneproximalfemoralosteotomyinslippedcapitalfemoralepiphysis
AT farnsworthcl patientspecific3dmodelsaidplanningfortriplaneproximalfemoralosteotomyinslippedcapitalfemoralepiphysis
AT jeffordsm patientspecific3dmodelsaidplanningfortriplaneproximalfemoralosteotomyinslippedcapitalfemoralepiphysis
AT wengerdr patientspecific3dmodelsaidplanningfortriplaneproximalfemoralosteotomyinslippedcapitalfemoralepiphysis
AT sahrl patientspecific3dmodelsaidplanningfortriplaneproximalfemoralosteotomyinslippedcapitalfemoralepiphysis
AT upasanivv patientspecific3dmodelsaidplanningfortriplaneproximalfemoralosteotomyinslippedcapitalfemoralepiphysis