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Quadriceps force during knee extension in different replacement scenarios with a modular partial prosthesis

机译:带有模块化部分假体的不同置换方案下膝关节伸展过程中的股四头肌力量

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Background Previous biomechanical studies have shown that bi-cruciate retaining knee replacement does not significantly alter normal knee kinematics, however, there are no data on the influence of a combined medial and patellofemoral bi-compartimental arthroplasty. The purpose of this in vitro study was to evaluate the effect of different replacement scenarios with a modular partial knee replacement system on the amount of quadriceps force required to extend the knee during an isokinetic extension cycle. Methods Ten human knee specimens were tested in a kinematic knee simulator under (1) physiologic condition and after subsequent implantation of (2) a medial unicondylar and (3) a trochlear replacement. An isokinetic extension cycle of the knee with a constant extension moment of 31 Nm was simulated. The resulting quadriceps extension force was measured from 120 to full knee extension. Findings The quadriceps force curve described a typically sinusoidal characteristic before and after each replacement scenario. The isolated medial replacement resulted in a slightly, but significantly higher maximum quadriceps force (1510 N vs. 1585 N, P = 0.006) as well as the subsequent trochlear replacement showed an additional increase (1801 N, P = 0.008). However, for both replacements no significant difference to the untreated condition could be detected in mid-flexion (10-50). Interpretation When considering a bi-compartimental replacement an increase of required maximum quadriceps force needed to extend the knee has to keep in mind. However, the close to physiological movement in mid-flexion suggests that patients with a bi-crutiate retaining arthroplasty might have an advantage in knee stability compared to total knee arthroplasty.
机译:背景技术先前的生物力学研究表明,双十字形保留膝关节置换术不会显着改变正常的膝关节运动学,但是,目前尚无关于联合内侧and骨股em双房置换术的影响的数据。这项体外研究的目的是评估采用模块化部分膝关节置换系统的不同置换方案对等速伸展周期中伸展膝盖所需的股四头肌力量的影响。方法在运动膝关节模拟器中,在(1)生理条件下以及随后植入(2)内侧un突和(3)滑车置换后,在运动学的膝部模拟器中测试了十个人类膝部标本。模拟了恒定伸伸力矩为31 Nm的膝盖的等速伸伸周期。测量得到的股四头肌伸展力从120到全膝关节伸展。研究结果股四头肌力量曲线描述了每个替换方案前后的典型正弦曲线特征。孤立的内侧置换导致略微但明显更高的最大股四头肌力量(1510 N对1585 N,P = 0.006),随后的滑车置换显示出额外的增加(1801 N,P = 0.008)。但是,对于这两种替代术,屈曲中期(10-50)均未发现与未治疗状态的显着差异。解释当考虑进行双室置换时,必须谨记增加膝盖伸展所需的最大股四头肌力量。然而,屈曲中期接近生理运动表明,与全膝关节置换术相比,双交叉保留置换术的患者可能在膝关节稳定性方面具有优势。

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