Department of Orthopedics, Trauma Surgery and Paraplegiology, Heidelberg University Hospital, Heidelberg, Germany.
Acta Orthop. 2013 Aug;84(4):406-9. doi: 10.3109/17453674.2013.813801. Epub 2013 Jun 25.
Unicompartmental knee arthroplasty (UKA) needs careful balancing of flexion/extension (F/E) gaps to prevent dislocation of the mobile meniscal bearing. Assessment of gaps is based on the surgeon's subjective insertion force of a feeler gauge with different thicknesses and/or the lift-off of a trial meniscal bearing. However, the accuracy of this method remains unclear. We assessed the accuracy of the technique.
A consecutive series of 33 UKAs in 32 patients (mean age 64 years, 24 women) were balanced using the Oxford Phase III (OP III) Instrumentation. The recommended technique for F/E gap assessment was performed using different feeler gauges with 1-mm increments and the meniscal bearing lift-off tests according to surgical technique. A tensiometer was inserted and both gaps were maximally distracted by hand. Measurements in mm were recorded and analyzed with a reading of 90 N for both gaps in 20 and 90 degrees of flexion.
The gaps measured were 12 (11-18) mm in extension and 13 (11-18) mm in 90 degrees of flexion. The difference between the gaps was 0.4 (-0.5 to 1.0) mm (p < 0.001). There were no statistically significant gender differences regarding composite implant thickness, laxity, flexion gap, extension gap, or gap difference.
OP III instrumentation using feeler gauges and the lift-off test provides accurate balancing of F/E gaps with an accuracy of less than 1 mm.
单髁膝关节置换术(UKA)需要仔细平衡屈伸间隙(F/E),以防止活动半月板衬垫脱位。间隙评估基于外科医生使用不同厚度的测隙规插入的主观插入力和/或试验半月板衬垫的抬起。然而,这种方法的准确性仍不清楚。我们评估了该技术的准确性。
对 32 例患者(平均年龄 64 岁,24 名女性)的 33 例 UKA 进行了连续系列平衡,使用牛津三期(OP III)仪器。使用不同厚度为 1mm 的测隙规和根据手术技术进行的半月板衬垫抬起试验进行 F/E 间隙评估的推荐技术。插入张力计,手动最大限度地分散两个间隙。以 90N 的读数记录并分析以毫米为单位的测量值,在 20 和 90 度屈曲时测量两个间隙。
伸展时测量的间隙为 12(11-18)mm,90 度屈曲时为 13(11-18)mm。间隙差值为 0.4(-0.5 至 1.0)mm(p < 0.001)。在复合植入物厚度、松弛度、屈曲间隙、伸展间隙或间隙差值方面,性别差异无统计学意义。
使用测隙规和抬起试验的 OP III 仪器可提供小于 1mm 的 F/E 间隙精确平衡。