Small deviations between planned and performed bone cuts using a CT‐based robotic‐arm‐assisted total knee arthroplasty system

Purpose Computed tomography (CT)‐based robotic system for total knee arthroplasty (TKA) has shown improved accuracy compared to conventional. This study was designed to (1) confirm the accuracy of the robotic system in achieving the plan and (2) establish the alignment and positioning deviation betw...

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Veröffentlicht in:Knee surgery, sports traumatology, arthroscopy : official journal of the ESSKA sports traumatology, arthroscopy : official journal of the ESSKA, 2024-06, Vol.32 (6), p.1539-1547
Hauptverfasser: Zambianchi, Francesco, Matveitchouk, Nikita, Pavesi, Marco, Clemenza, Sebastiano, Cuoghi Costantini, Riccardo, Marcovigi, Andrea, Seracchioli, Stefano, Catani, Fabio
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Sprache:eng
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Zusammenfassung:Purpose Computed tomography (CT)‐based robotic system for total knee arthroplasty (TKA) has shown improved accuracy compared to conventional. This study was designed to (1) confirm the accuracy of the robotic system in achieving the plan and (2) establish the alignment and positioning deviation between final components and planning, by measuring the discrepancy between final implant alignment and the corresponding planned cut. Methods Ninety‐six cementless robotic‐arm assisted (RA) TKAs were assessed. Bone resections were performed using the haptically controlled robotic arm. Alignment in the coronal and sagittal plane and resection depth of the distal femoral and proximal tibial cuts were recorded with a navigation planar probe. After final components were impacted, the probe was positioned on each implant surface to determine its alignment and positioning. Results The mean tibial resections and implanted tibial component's positioning were 0.4 mm (standard deviation, SD: 0.6) and 0.9 mm (SD: 0.8), respectively, higher than planned (p 
ISSN:0942-2056
1433-7347
DOI:10.1002/ksa.12171