Nodzo Scott R, Franceschini Vincenzo, Gonzalez Della Valle Alejandro
Department of Orthopedics, Hospital for Special Surgery, New York, NY.
J Arthroplasty. 2017 Jan;32(1):66-70. doi: 10.1016/j.arth.2016.06.029. Epub 2016 Jun 22.
Load-sensing technology during total knee arthroplasty (TKA) provides objective measurements of ligamentous balance. The purpose of this study is to assess its intraoperative validity and reliability during TKA.
Fifty-four patients underwent TKA using the OrthoSensor VERASENSE tibial insert to assist with ligament balance. The transepicondylar axis (TEA) was used to determine femoral component rotation, and the posterior condylar angle (PCA) was measured. Load measurements were documented at 10°, 45°, and 90° of flexion with the trial (TRIAL) components and with the definitive (FINAL) cemented implants. Adequate balance was defined as a load differential ≤15 pounds between compartments.
Adequate balanced with TRIAL and FINAL implants was observed in 89% TKAs. There was a significant linear correlation of the TRIAL and FINAL loads in the medial compartment throughout range of motion. No correlation between the TRIAL and FINAL loads was identified in the lateral compartment. There was no relationship between an increasing PCA and medial compartment loads at 45° (R = 0.0006, Y = -0.10X + 7.3 ± 2.3; P = .86) and 90° (R = 0.004, Y = -0.25X + 6.3 ± 2.1; P = .62) of flexion, suggesting that the compartment loads were not significantly altered with femoral rotation parallel to the TEA. A similar finding was observed in the lateral compartment at all poses.
Variability between the TRIAL and FINAL implant measurements was higher in the lateral compartment as compared to the medial compartment. Using the TEA and not the posterior condylar line as a landmark to guide femoral component rotation, the flexion gap is frequently balanced without the need for additional ligament releases.
全膝关节置换术(TKA)期间的负荷传感技术可提供韧带平衡的客观测量。本研究的目的是评估其在TKA术中的有效性和可靠性。
54例患者接受了使用OrthoSensor VERASENSE胫骨衬垫辅助韧带平衡的TKA手术。采用经髁轴(TEA)确定股骨假体旋转,并测量后髁角(PCA)。使用试验(TRIAL)组件和最终(FINAL)骨水泥固定植入物时,记录在10°、45°和90°屈曲时的负荷测量值。充分平衡定义为各间室之间的负荷差异≤15磅。
89%的TKA中观察到试验和最终植入物的充分平衡。在整个运动范围内,内侧间室的试验和最终负荷存在显著的线性相关性。外侧间室未发现试验和最终负荷之间的相关性。在45°(R = 0.0006,Y = -0.10X + 7.3 ± 2.3;P = 0.86)和90°(R = 0.004,Y = -0.25X + 6.3 ± 2.1;P = 0.62)屈曲时,PCA增加与内侧间室负荷之间无相关性,这表明当股骨旋转与TEA平行时,间室负荷没有显著改变。在所有姿势下,外侧间室也观察到类似的结果。
与内侧间室相比,外侧间室试验和最终植入物测量值之间的变异性更高。以TEA而非后髁线作为引导股骨假体旋转的标志,屈曲间隙通常可得到平衡,无需额外的韧带松解。