Martinus Richter1, Bernd Seidl2, Stefan Zech2, Sarah Hahn2. 1. Department for Foot and Ankle Surgery Rummelsberg and Nuremberg, Germany. Electronic address: martinus.richter@sana.de. 2. Department for Foot and Ankle Surgery Rummelsberg and Nuremberg, Germany.
Abstract
BACKGROUND: PedCAT (Curvebeam, Warrington, USA) is a new technology that allows 3D-imaging with full weight bearing which is not influenced by projection and/or foot orientation (as radiographs). The aim of this study was to compare time spent of the image acquisition, and comparison of specific bone position (angle) measurements between three imaging methods (radiographs, CT, pedCAT), and to analyze and compare measurement differences and inter- and intraobserver reliability. METHODS: In a prospective consecutive controlled study, 30 patients in which standard digital radiographs with full weight bearing in standing position (feet bilateral dorsoplantar and lateral views and Saltzman hindfoot view), CT without weight bearing, and pedCAT scan with full weight bearing in standing position were included, starting July 1, 2013. The following angles were measured for the right foot by three different investigators three times: 1st - 2nd intermetatarsal angle, talo-metatarsal 1-angle (TMT) both dorsoplantar and lateral projection, hindfoot angle, calcaneal pitch. The angles were digitally measured and compared (ANOVA with Post Hoc Scheffe test). RESULTS: The angles differed between radiographs, CT and pedCAT (ANOVA, all p≤.01). The angles differed between pedCAT and both radiographs and CT (Post Hoc Scheffe test, each p≤.05 except for TMT dorsoplantar and calcaneal pitch angels versus radiographs). CONCLUSIONS: The angles differed between radiographs, CT and pedCAT, indicating that only pedCAT is able to detect the correct angles. PedCAT includes weight bearing in contrast to CT. PedCAT prevents inaccuracies of projection and foot orientation in contrast to radiographs due to the 3D dataset which is principally independent from projection and foot orientation.
BACKGROUND: PedCAT (Curvebeam, Warrington, USA) is a new technology that allows 3D-imaging with full weight bearing which is not influenced by projection and/or foot orientation (as radiographs). The aim of this study was to compare time spent of the image acquisition, and comparison of specific bone position (angle) measurements between three imaging methods (radiographs, CT, pedCAT), and to analyze and compare measurement differences and inter- and intraobserver reliability. METHODS: In a prospective consecutive controlled study, 30 patients in which standard digital radiographs with full weight bearing in standing position (feet bilateral dorsoplantar and lateral views and Saltzman hindfoot view), CT without weight bearing, and pedCAT scan with full weight bearing in standing position were included, starting July 1, 2013. The following angles were measured for the right foot by three different investigators three times: 1st - 2nd intermetatarsal angle, talo-metatarsal 1-angle (TMT) both dorsoplantar and lateral projection, hindfoot angle, calcaneal pitch. The angles were digitally measured and compared (ANOVA with Post Hoc Scheffe test). RESULTS: The angles differed between radiographs, CT and pedCAT (ANOVA, all p≤.01). The angles differed between pedCAT and both radiographs and CT (Post Hoc Scheffe test, each p≤.05 except for TMT dorsoplantar and calcaneal pitch angels versus radiographs). CONCLUSIONS: The angles differed between radiographs, CT and pedCAT, indicating that only pedCAT is able to detect the correct angles. PedCAT includes weight bearing in contrast to CT. PedCAT prevents inaccuracies of projection and foot orientation in contrast to radiographs due to the 3D dataset which is principally independent from projection and foot orientation.
Authors: A Burssens; J Peeters; M Peiffer; R Marien; T Lenaerts; G Vandeputte; J Victor Journal: Int J Comput Assist Radiol Surg Date: 2018-03-09 Impact factor: 2.924
Authors: Eli Schmidt; Thiago Silva; Daniel Baumfeld; Kevin N Dibbern; Hee Young Lee; John Femino; Nacime Salomao Barbachan Mansur; Cesar de Cesar Netto Journal: Iowa Orthop J Date: 2021
Authors: Edward O Rojas; Nacime Salomao Barbachan Mansur; Kevin Dibbern; Matthieu Lalevee; Elijah Auch; Eli Schmidt; Victoria Vivtcharenko; Shuyuan Li; Phinit Phisitkul; John Femino; Cesar de Cesar Netto Journal: Iowa Orthop J Date: 2021
Authors: Molly A Day; Michael Ho; Kevin Dibbern; Karan Rao; Qiang An; Donald D Anderson; J Lawrence Marsh Journal: Foot Ankle Int Date: 2020-07-10 Impact factor: 2.827
Authors: Alexandre Leme Godoy-Santos; Alessio Bernasconi; Marcelo Bordalo-Rodrigues; François Lintz; Carlos Felipe Teixeira Lôbo; Cesar de Cesar Netto Journal: Radiol Bras Date: 2021 May-Jun
Authors: Arne B M Burssens; Kris Buedts; Alexej Barg; Elizabeth Vluggen; Patrick Demey; Charles L Saltzman; Jan M K Victor Journal: Clin Orthop Relat Res Date: 2020-01 Impact factor: 4.755