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The mechanical axis and gap balance were changed after cementation.
Bone cement can influence the mechanical axis, flexion/extension, and gap balance.
We compared the mechanical axis, flexion/extension, and gap balance before and after cementation.
Although no statistically difference was detected, certain changes of mechanical axis and gap balance were found before and after cementation.
The mechanical axis, rotation of the limb, and gap balance were displayed by the navigation system and recorded.
Differences before and after operation were tested with the Mann-Whitney test to determine whether bone cement influenced the mechanical axis and gap balance during TKA.
Similar(54)
Survivorship of the rotating platform, gap balanced knee was 96.7% using surgical revision for any reason and 98.9% using aseptic loosening as endpoints.
The rotating platform design using the gap balancing technique in young patients had excellent survivorship at 10-year mean follow up.
We analyzed 119 knees implanted with mobile bearing floating platform prostheses using the navigation-assisted gap balancing technique to analyze the relationship between intraoperative sagittal movement of floating platforms and soft tissue balancing.
68 patients (91 primary total knee arthroplasties) were evaluated at a mean 10-year, minimum 5 year follow up in patients younger than sixty years of age utilizing the gap balanced, rotating platform design.
The aim of this study was to evaluate long-term quality and performance of cemented posterior-stabilized (PS) total knee arthroplasty (TKA) in young and active patients with gap balancing technique.
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