Table 2.
(Author, Year of Publication) | Title of Paper | Country of Origin | Journal of Publication |
Level of Evidence |
---|---|---|---|---|
(Abdelkafy and Said, 2014) [11] | Neglected ununited tibial eminence fractures in the skeletally immature: arthroscopic management | Egypt | International Orthopaedics | 4 |
(Brunner et al., 2016) [12] | Absorbable and non-absorbable suture fixation results in similar outcomes for tibial eminence fractures in children and adolescents | Switzerland | Knee Surgery, Sports Traumatology, Arthroscopy | 3 |
(Caglar et al., 2021) [13] | Mid-term outcomes of arthroscopic suture fixation technique in tibial spine fractures in the paediatric population | Turkey | Ulusal Travma va Acil Cerrahi Dergisi | 4 |
(Callanan et al., 2019) [14] | Suture Versus Screw Fixation of Tibial Spine Fractures in Children and Adolescents: A Comparative Study | USA | The Orthopaedic Journal of Sports Medicine | 3 |
(Casalonga et al., 2010) [15] | Tibial intercondylar eminence fractures in children: The long-term perspective | France | Orthopaedics and Traumatology: Surgery and Research | 4 |
(Chalopin et al., 2022) [16] | Arthroscopic suture-fixation of anterior tibial intercondylar eminence fractures by retensioning of the ACL and hollowing of the tibial footprint: Objective and subjective clinical results in a paediatric population | France | Orthopaedics and Traumatology: Surgery and Research | 4 |
(Chotel et al., 2016) [17] | Cartilaginous tibial eminence fractures in children: which recommendations for management of this new entity? | France | Knee Surgery, Sports Traumatology, Arthroscopy | 4 |
(D’ambrosio et al., 2022) [18] | Anatomical fixation of tibial intercondylar eminence fractures in children using a threaded pin with an adjustable lock | France | Orthopaedics and Traumatology: Surgery and Research | 4 |
(Edmonds et al., 2015) [19] | Results of Displaced Paediatric Tibial Spine Fractures: A Comparison Between Open, Arthroscopic, and Closed Management | USA | Journal of Paediatric Orthopedics | 3 |
(Furlan et al., 2010) [20] | Paediatric Tibial Eminence Fractures: Arthroscopic Treatment using K-Wire | Croatia | Scandinavian Journal of Surgery | 4 |
(Hirschmann et al., 2009) [21] | Physeal sparing arthroscopic fixation of displaced tibial eminence fractures: a new surgical technique | Switzerland | Knee Surgery, Sports Traumatology, Arthroscopy | 4 |
(Jaaskela et al., 2023) [22] | Long-term Outcomes of Tibial Spine Avulsion Fractures after Open Reduction with Osteosuturing Versus Arthroscopic Screw Fixation: A Multicenter Comparative Study | Italy | The Orthopaedic Journal of Sports Medicine | 3 |
(Kieser et al., 2011) [23] | Displaced tibial intercondylar eminence fractures | New Zealand | Journal of Orthopaedic Surgery | 4 |
(Kim et al., 2007) [24] | Arthroscopic Internal Fixation of Displaced Tibial Eminence Fracture Using Cannulated Screw | Republic of Korea | The Journal of The Korean Orthopaedic Association | 4 |
(Kristinsson et al., 2021) [25] | Satisfactory outcomes following arthroscopic fixation of tibial intercondylar eminence fractures in children and adolescents using bioabsorbable nails | Denmark | Archives of Orthopaedic and Trauma Surgery | 4 |
(Liljeros et al., 2009) [26] | Arthroscopic Fixation of Anterior Tibial Spine Fractures with Bioabsorbable Nails in Skeletally Immature Patients | Sweden | The American Journal of Sports Medicine | 4 |
(Marie-Laure et al., 2008) [27] | Surgical management of type II tibial intercondylar eminence fractures in children | France | Journal of Paediatric Orthopaedics B | 4 |
(Memisoglu et al., 2016) [28] | Arthroscopic fixation with intra-articular button for tibial intercondylar eminence fractures in skeletally immature patients | Turkey | Journal of Paediatric Orthopaedics B | 4 |
(Momaya et al., 2017) [29] | Outcomes after arthroscopic fixation of tibial eminence fractures with bioabsorbable nails in skeletally immature patients | USA | Journal of Paediatric Orthopaedics B | 4 |
(Najdi et al., 2016) [30] | Arthroscopic treatment of intercondylar eminence fractures with intraepiphyseal screws in children and adolescents | France | Orthopaedics and Traumatology: Surgery and Research | 4 |
(Perugia et al., 2009) [31] | Clinical and radiological results of arthroscopically treated tibial spine fractures in childhood | Italy | International Orthopaedics (SICOT) | 4 |
(Russu et al., 2021) [32] | Arthroscopic Repair in Tibial Spine Avulsion Fractures Using Polyethylene Terephthalate Suture: Good to Excellent Results in Paediatric Patients | Romania | Journal of Personalized Medicine | 4 |
(Scrimshire et al., 2018) [33] | Management and outcomes of isolated paediatric tibial spine fractures | UK | Injury: International Journal of the Care of the Injured | 4 |
(Sharma et al., 2008) [34] | An analysis of different types of surgical fixation for avulsion fractures of the anterior tibial spine | UK | Acta Orthopaedica Belgica | 4 |
(Shimberg et al., 2022) [35] | A Multicenter Comparison of Open Versus Arthroscopic Fixation for Paediatric Tibial Spine Fractures | USA | Journal of Paediatric Orthopedics | 3 |
(Shin et al., 2018) [36] | Clinical and radiological outcomes of arthroscopically assisted cannulated screw fixation for tibial eminence fracture in children and adolescents | Republic of Korea | BMC Musculoskeletal Disorders | 4 |
(Sinha et al., 2017) [37] | Arthroscopic Fixation of Tibial Spine Avulsion in Skeletally Immature: The Technique | India | Journal of Orthopaedic Case Reports | 4 |
(Tudisco et al., 2010) [38] | Intercondylar eminence avulsion fracture in children: long-term follow-up of 14 cases at the end of skeletal growth | Italy | Journal of Paediatric Orthopaedics B | 4 |
(Uboldi et al., 2022) [39] | Arthroscopic treatment of tibial intercondylar eminence fractures in skeletally immature patients with bioabsorbable nails | Italy | La Pediatria Medica e Chirugica | 4 |
(Vega et al., 2008) [40] | Arthroscopic Fixation of Displaced Tibial Eminence Fractures: A New Growth Plate-Sparing Method | Chile | Arthroscopy: The Journal of Arthroscopic and Related Surgery | 4 |
(Watts et al., 2016) [41] | Open Versus Arthroscopic Reduction for Tibial Eminence Fracture Fixation in Children | USA | Journal of Paediatric Orthopedics | 3 |
(Wiegand et al., 2014) [42] | Arthroscopic treatment of tibial spine fracture in children with a cannulated Herbert screw | Hungary | The Knee | 4 |
(Wiktor and Tomaszewski, 2022) [43] | Results of Anterior Cruciate Ligament Avulsion Fracture by Treatment Using Bioabsorbable Nails in Children and Adolescents | Poland | Children | 4 |
(Wouters et al., 2010) [44] | The arthroscopic treatment of displaced tibial spine fractures in children and adolescents using Mensicus Arrows® | The Netherlands | Knee Surgery, Sports Traumatology, Arthroscopy | 4 |
(Xu et al., 2017) [45] | Arthroscopic fixation of paediatric tibial eminence fractures using suture anchors: A mid-term follow-up | China | Archives of Orthopaedic and Trauma Surgery | 4 |
(Zhang et al., 2020) [46] | Arthroscopic tri-pulley Technology reduction and internal fixation of paediatric Tibial Eminence: a retrospective analysis | China | BMC Musculoskeletal Disorders | 4 |
(Zheng et al., 2021) [47] | Arthroscopically Assisted Cannulated Screw Fixation for Treating Type III Tibial Intercondylar Eminence Fractures: A Short-Term Retrospective Controlled Study | China | Frontiers in Surgery | 3 |
(Zhou et al., 2023) [48] | Arthroscopic percutaneous pullout suture transverse tunnel technique repair for tibial spine fractures in skeletally immature patients | China | International Orthopaedics | 3 |