TY - JOUR
T1 - Global Validation of the AO Spine Upper Cervical Injury Classification
AU - AO Spine Upper Cervical Injury Classification International Members
AU - Vaccaro, Alexander R.
AU - Lambrechts, Mark J.
AU - Karamian, Brian A.
AU - Canseco, Jose A.
AU - Oner, Cumhur
AU - Benneker, Lorin M.
AU - Bransford, Richard
AU - Kandziora, Frank
AU - Shanmuganathan, Rajasekaran
AU - El-Sharkawi, Mohammad
AU - Kanna, Rishi
AU - Joaquim, Andrei
AU - Schnake, Klaus
AU - Kepler, Christopher K.
AU - Schroeder, Gregory D.
AU - Asif, Dewan
AU - Borkar, Sachin
AU - Bakar, Joseph
AU - Zagorac, Slavisa
AU - Wimalachandra, Welege
AU - Garashchuk, Oleksandr
AU - Verdu-Lopez, Francisco
AU - Lofrese, Giorgio
AU - Bhatt, Pragnesh
AU - Obadaseraye, Oke
AU - Partenheimer, Axel
AU - Riehle, Marion
AU - Popescu, Eugen Cesar
AU - Konrads, Christian
AU - Senan, Nur Aida Faruk
AU - Toluse, Adetunji
AU - Neves, Nuno
AU - Sunami, Takahiro
AU - Kuipers, Bart
AU - Subbiah, Jayakumar
AU - Dyab, Anas
AU - Loughenbury, Peter
AU - Cawley, Derek
AU - Schmidt, René
AU - Kumar, Loya
AU - Karim, Farhan
AU - Silk, Zacharia
AU - Parolin, Michele
AU - Robijn, Hisco
AU - Kalbani, Al
AU - Rasschaert, Ricky
AU - Müller, Christian
AU - Nieuwenhuijse, Marc
AU - Ayhan, Selim
AU - Menachem, Shay
AU - Dhatt, Sarvdeep
AU - Khan, Nasser
AU - Haribabu, Subramaniam
AU - Kimani, Moses
AU - Alarcon, Olger
AU - Alor, Nnaemeka
AU - Iyer, Dinesh
AU - Ziga, Michal
AU - Gousias, Konstantinos
AU - Murray, Gisela
AU - Triffaux, Michel
AU - Hartmann, Sebastian
AU - Yuh, Sung Joo
AU - Lang, Siegmund
AU - Linn, Kyaw
AU - Dhillon, Charanjit Singh
AU - Hamouda, Waeel
AU - Carnesecchi, Stefano
AU - Kumar, Vishal
AU - Cari, Lady Lozano
AU - Shah, Gyanendra
AU - Takeo, Furuya
AU - Sartor, Federico
AU - Gonzalez, Fernando
AU - Dabasia, Hitesh
AU - Liawrungrueang, Wongthawat
AU - Liu, Lincoln
AU - El Moudni, Younes
AU - Yurak, Ratko
AU - Aceituno, Héctor
AU - Karthigeyan, Madhivanan
AU - Demetriades, Andreas
AU - Muthu, Sathish
AU - Scholz, Matti
AU - Alsammak, Wael
AU - Chandrachari, Komal
AU - Shan, Khoh Phaik
AU - Trungu, Sokol
AU - Dejaegher, Joost
AU - Marroquin, Omar
AU - Alexandru, Moisa Horatiu
AU - Diez-Ulloa, Máximo Alberto
AU - Pereira, Paulo
AU - Bernucci, Claudio
AU - Hohaus, Christian
AU - Georgiopoulos, Miltiadis
AU - Heuer, Annika
AU - Atan, Ahmed Arieff
AU - Murerwa, Mark
AU - Lindtner, Richard
AU - Tripathi, Manjul
AU - Kim, Huynh Hieu
AU - Hassan, Ahmed
AU - Foster, Norah
AU - O’Halloran, Amanda
AU - Kabir, Koroush
AU - Ganau, Mario
AU - Cruz, Daniel
AU - Henine, Amin
AU - Milano, Jeronimo
AU - Mbarak, Abeid
AU - Sousa, Arnaldo
AU - Munjal, Satyashiva
AU - Alkharsawi, Mahmoud
AU - Mirza, Muhammad
AU - Tsitsopoulos, Parmenion
AU - Tsuang, Fon Yih
AU - Risenbeck, Oliver
AU - Viswanadha, Arun Kumar
AU - Samy, Samer
AU - Orosco, David
AU - Zambito-Brondo, Gerardo
AU - Chaudhry, Nauman
AU - Marquez, Luis
AU - Lepard, Jacob
AU - Muñoz, Juan
AU - Corluka, Stipe
AU - Reuben, Soh
AU - Kaen, Ariel
AU - Ampar, Nishanth
AU - Bigdon, Sebastien
AU - Caba, Damián
AU - De Miranda, Francisco
AU - Lay, Loren
AU - Marintschev, Ivan
AU - Imran, Mohammed
AU - Mohindra, Sandeep
AU - Reddycherla, Naga Raju
AU - Bazán, Pedro
AU - Alhammoud, Abduljabbar
AU - Feeley, Iain
AU - Margetis, Konstantinos
AU - Durst, Alexander
AU - Jani, Ashok Kumar
AU - Vieira, Rian Souza
AU - Santos, Felipe
AU - Karlin, Joshua
AU - Montemurro, Nicola
AU - Mlyavykh, Sergey
AU - Sonkwe, Brian
AU - Perovic, Darko
AU - Lourido, Juan
AU - Ramieri, Alessandro
AU - Laos, Eduardo
AU - Hadesberg, Uri
AU - Iencean, Andrei Stefan
AU - Neves, Pedro
AU - Bertolini, Eduardo
AU - Kumar, Naresh
AU - Bancel, Philippe
AU - Sharma, Bishnu
AU - Koerner, John
AU - Neto, Eloy Rusafa
AU - Ostadrahimi, Nima
AU - Morillo, Olga
AU - Kumar, Rakesh
AU - Morakis, Andreas
AU - Godinho, Amauri
AU - Keerthivasan, P.
AU - Menger, Richard
AU - Carius, Louis
AU - Lakhey, Rajesh Bahadur
AU - Shiban, Ehab
AU - Borse, Vishal
AU - Boudreau, Elizabeth
AU - Lacerda, Gabriel
AU - Konstantinos, Paterakis
AU - Saeed, Mubder Mohammed
AU - Hasheela, Toivo
AU - Pereira, Susana Núñez
AU - Reidler, Jay
AU - Rahamimov, Nimrod
AU - Zimny, Mikolaj
AU - Tokala, Devi Prakash
AU - Elgafy, Hossein
AU - Badani, Ketan
AU - Ng, Bing Wui
AU - Juarez, Cesar Sosa
AU - Repantis, Thomas
AU - Fernández-Bances, Ignacio
AU - Kleimeyer, John
AU - Lauper, Nicolas
AU - Romero-Muñoz, Luis María
AU - Yusuf, Ayodeji
AU - Klez, Zdenek
AU - Afolayan, John
AU - Rutges, Joost
AU - Grundshtein, Alon
AU - Zaluski, Rafal
AU - Stavridis, Stavros I.
N1 - Publisher Copyright:
© 2022 Lippincott Williams and Wilkins. All rights reserved.
PY - 2022/11/15
Y1 - 2022/11/15
N2 - Study Design. Global cross-sectional survey. Objective. To determine the classification accuracy, interobserver reliability, and intraobserver reproducibility of the AO Spine Upper Cervical Injury Classification System based on an international group of AO Spine members. Summary of Background Data. Previous upper cervical spine injury classifications have primarily been descriptive without incorporating a hierarchical injury progression within the classification system. Further, upper cervical spine injury classifications have focused on distinct anatomical segments within the upper cervical spine. The AO Spine Upper Cervical Injury Classification System incorporates all injuries of the upper cervical spine into a single classification system focused on a hierarchical progression from isolated bony injuries (type A) to fracture dislocations (type C). Methods. A total of 275 AO Spine members participated in a validation aimed at classifying 25 upper cervical spine injuries through computed tomography scans according to the AO Spine Upper Cervical Classification System. The validation occurred on two separate occasions, three weeks apart. Descriptive statistics for percent agreement with the gold-standard were calculated and the Pearson χ2test evaluated significance between validation groups. Kappa coefficients (κ) determined the interobserver reliability and intraobserver reproducibility. Results. The accuracy of AO Spine members to appropriately classify upper cervical spine injuries was 79.7% on assessment 1 (AS1) and 78.7% on assessment 2 (AS2). The overall intraobserver reproducibility was substantial (κ=0.70), while the overall interobserver reliability for AS1 and AS2 was substantial (κ=0.63 and κ=0.61, respectively). Injury location had higher interobserver reliability (AS1: κ=0.85 and AS2: κ=0.83) than the injury type (AS1: κ=0.59 and AS2: 0.57) on both assessments. Conclusion. The global validation of the AO Spine Upper Cervical Injury Classification System demonstrated substantial interobserver agreement and intraobserver reproducibility. These results support the universal applicability of the AO Spine Upper Cervical Injury Classification System. Level of Evidence 4.
AB - Study Design. Global cross-sectional survey. Objective. To determine the classification accuracy, interobserver reliability, and intraobserver reproducibility of the AO Spine Upper Cervical Injury Classification System based on an international group of AO Spine members. Summary of Background Data. Previous upper cervical spine injury classifications have primarily been descriptive without incorporating a hierarchical injury progression within the classification system. Further, upper cervical spine injury classifications have focused on distinct anatomical segments within the upper cervical spine. The AO Spine Upper Cervical Injury Classification System incorporates all injuries of the upper cervical spine into a single classification system focused on a hierarchical progression from isolated bony injuries (type A) to fracture dislocations (type C). Methods. A total of 275 AO Spine members participated in a validation aimed at classifying 25 upper cervical spine injuries through computed tomography scans according to the AO Spine Upper Cervical Classification System. The validation occurred on two separate occasions, three weeks apart. Descriptive statistics for percent agreement with the gold-standard were calculated and the Pearson χ2test evaluated significance between validation groups. Kappa coefficients (κ) determined the interobserver reliability and intraobserver reproducibility. Results. The accuracy of AO Spine members to appropriately classify upper cervical spine injuries was 79.7% on assessment 1 (AS1) and 78.7% on assessment 2 (AS2). The overall intraobserver reproducibility was substantial (κ=0.70), while the overall interobserver reliability for AS1 and AS2 was substantial (κ=0.63 and κ=0.61, respectively). Injury location had higher interobserver reliability (AS1: κ=0.85 and AS2: κ=0.83) than the injury type (AS1: κ=0.59 and AS2: 0.57) on both assessments. Conclusion. The global validation of the AO Spine Upper Cervical Injury Classification System demonstrated substantial interobserver agreement and intraobserver reproducibility. These results support the universal applicability of the AO Spine Upper Cervical Injury Classification System. Level of Evidence 4.
KW - AO Spine
KW - reliability
KW - reproducibility
KW - trauma
KW - upper cervical spine
KW - validation
UR - https://www.scopus.com/pages/publications/85139568859
U2 - 10.1097/BRS.0000000000004429
DO - 10.1097/BRS.0000000000004429
M3 - Article
C2 - 35877555
AN - SCOPUS:85139568859
SN - 0362-2436
VL - 47
SP - 1541
EP - 1548
JO - Spine
JF - Spine
IS - 22
ER -