Salvage Algorithm for Deep Surgical Site Infections after HTO with Unstable Bone Situation Using a Hexapod System – Primary Results
Baumgartner, H.; Finger, F.; Ahrend, M.-D.; Histing, T.; Grünwald, L. · NeuroTransmitter · 2024 · Heft 06 · S. 623 bis 629
Bibliografische Angaben
Zusammenfassung
AbstractThe incidence of deep surgical site infections following high tibial osteotomy (HTO) ranges between 0.4 to 4.7%. It is a severe complication with a high risk for poor clinical outcome. The aim of this study was to proof that a salvage algorithm for infected HTO with unstable bone situation leads to an infection-free status and bone union of the osteotomy and that correct limb alignment can be restored with good knee function.The study included seven patients with peri-implant infections following HTO. Infections occurred 83 ± 58.9 days (range: 24–191) after HTO. All patients underwent the “RESTORE” algor…