Deepening trochleoplasty may dramatically increase retropatellar contact pressures‐ a pilot study establishing a finite element model

Saved in:
Bibliographic Details
Main Authors: Dominik Kaiser, Tobias Götschi, Elias Bachmann, Jess G. Snedeker, Philippe M. Tscholl, Sandro F. Fucentese
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Journal of Experimental Orthopaedics
Online Access:https://doi.org/10.1186/s40634-022-00512-9
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1849735224723767296
author Dominik Kaiser
Tobias Götschi
Elias Bachmann
Jess G. Snedeker
Philippe M. Tscholl
Sandro F. Fucentese
author_facet Dominik Kaiser
Tobias Götschi
Elias Bachmann
Jess G. Snedeker
Philippe M. Tscholl
Sandro F. Fucentese
author_sort Dominik Kaiser
collection DOAJ
format Article
id doaj-art-3ee6896db34b478dbcba7677cba96f29
institution DOAJ
issn 2197-1153
language English
publishDate 2022-01-01
publisher Wiley
record_format Article
series Journal of Experimental Orthopaedics
spelling doaj-art-3ee6896db34b478dbcba7677cba96f292025-08-20T03:07:37ZengWileyJournal of Experimental Orthopaedics2197-11532022-01-0191n/an/a10.1186/s40634-022-00512-9Deepening trochleoplasty may dramatically increase retropatellar contact pressures‐ a pilot study establishing a finite element modelDominik Kaiser0Tobias Götschi1Elias Bachmann2Jess G. Snedeker3Philippe M. Tscholl4Sandro F. Fucentese5Department of OrthopedicsBalgrist University HospitalUniversity of ZurichForchstrasse 3408008ZurichSwitzerlandDepartment of OrthopedicsBiomechanical Research LaboratoryBalgrist CampusUniversity of ZurichZurichSwitzerlandDepartment of OrthopedicsBiomechanical Research LaboratoryBalgrist CampusUniversity of ZurichZurichSwitzerlandDepartment of OrthopedicsBiomechanical Research LaboratoryBalgrist CampusUniversity of ZurichZurichSwitzerlandDepartment of OrthopedicsBalgrist University HospitalUniversity of ZurichForchstrasse 3408008ZurichSwitzerlandDepartment of OrthopedicsBalgrist University HospitalUniversity of ZurichForchstrasse 3408008ZurichSwitzerlandhttps://doi.org/10.1186/s40634-022-00512-9
spellingShingle Dominik Kaiser
Tobias Götschi
Elias Bachmann
Jess G. Snedeker
Philippe M. Tscholl
Sandro F. Fucentese
Deepening trochleoplasty may dramatically increase retropatellar contact pressures‐ a pilot study establishing a finite element model
Journal of Experimental Orthopaedics
title Deepening trochleoplasty may dramatically increase retropatellar contact pressures‐ a pilot study establishing a finite element model
title_full Deepening trochleoplasty may dramatically increase retropatellar contact pressures‐ a pilot study establishing a finite element model
title_fullStr Deepening trochleoplasty may dramatically increase retropatellar contact pressures‐ a pilot study establishing a finite element model
title_full_unstemmed Deepening trochleoplasty may dramatically increase retropatellar contact pressures‐ a pilot study establishing a finite element model
title_short Deepening trochleoplasty may dramatically increase retropatellar contact pressures‐ a pilot study establishing a finite element model
title_sort deepening trochleoplasty may dramatically increase retropatellar contact pressures a pilot study establishing a finite element model
url https://doi.org/10.1186/s40634-022-00512-9
work_keys_str_mv AT dominikkaiser deepeningtrochleoplastymaydramaticallyincreaseretropatellarcontactpressuresapilotstudyestablishingafiniteelementmodel
AT tobiasgotschi deepeningtrochleoplastymaydramaticallyincreaseretropatellarcontactpressuresapilotstudyestablishingafiniteelementmodel
AT eliasbachmann deepeningtrochleoplastymaydramaticallyincreaseretropatellarcontactpressuresapilotstudyestablishingafiniteelementmodel
AT jessgsnedeker deepeningtrochleoplastymaydramaticallyincreaseretropatellarcontactpressuresapilotstudyestablishingafiniteelementmodel
AT philippemtscholl deepeningtrochleoplastymaydramaticallyincreaseretropatellarcontactpressuresapilotstudyestablishingafiniteelementmodel
AT sandroffucentese deepeningtrochleoplastymaydramaticallyincreaseretropatellarcontactpressuresapilotstudyestablishingafiniteelementmodel