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考虑肌肉负荷影响的机器人辅助髌稳定性体外测量

Robot-aided in vitro measurement of patellar stability with consideration to the influence of muscle loading.

作者信息

Lorenz Andrea, Bobrowitsch Evgenij, Wünschel Markus, Walter Christian, Wülker Nikolaus, Leichtle Ulf G

机构信息

Department of Orthopaedic Surgery, University Hospital Tübingen, Hoppe-Seyler-Straße 3, 72076, Tübingen, Germany.

出版信息

Biomed Eng Online. 2015 Jul 23;14:70. doi: 10.1186/s12938-015-0068-7.

Abstract

BACKGROUND

Anterior knee pain is often associated with patellar maltracking and instability. However, objective measurement of patellar stability under clinical and experimental conditions is difficult, and muscular activity influences the results. In the present study, a new experimental setting for in vitro measurement of patellar stability was developed and the mediolateral force-displacement behavior of the native knee analyzed with special emphasis on patellar tilt and muscle loading.

METHODS

In the new experimental setup, two established testing methods were combined: an upright knee simulator for positioning and loading of the knee specimens, and an industry robot for mediolateral patellar displacement. A minimally invasive coupling and force control mechanism enabled unconstrained motion of the patella as well as measurement of patellar motion in all six degrees of freedom via an external ultrasonic motion-tracking system. Lateral and medial patellar displacement were measured on seven fresh-frozen human knee specimens in six flexion angles with varying muscle force levels, muscle force distributions, and displacement forces.

RESULTS

Substantial repeatability was achieved for patellar shift (ICC(3,1) = 0.67) and tilt (ICC(3,1) = 0.75). Patellar lateral and medial shift decreased slightly with increasing flexion angle. Additional measurement of patellar tilt provided interesting insights into the different displacement mechanisms in lateral and medial directions. For lateral displacement, the patella tilted in the same (lateral) direction, and tilted in the opposite direction (again laterally) for medial displacement. With regard to asymmetric muscle loading, a significant influence (p < 0.03, up to 5 mm shift and 8° tilt) was found for lateral displacement and a reasonable relationship between muscle and patellar force, whereas no effect was visible in the medial direction.

CONCLUSION

The developed experimental setup delivered reproducible results and was found to be an excellent testing method for the in vitro analysis of patellar stability and future investigation of surgical techniques for patellar stabilization and total knee arthroplasty. We demonstrated a significant influence of asymmetric quadriceps loading on patellar stability. In particular, increased force application on the vastus lateralis muscle led to a clear increase of lateral patellar displacement.

摘要

背景

膝前疼痛常与髌股关节轨迹异常和不稳定相关。然而,在临床和实验条件下客观测量髌骨稳定性较为困难,且肌肉活动会影响测量结果。在本研究中,开发了一种用于体外测量髌骨稳定性的新实验装置,并分析了正常膝关节的内外侧力 - 位移行为,特别关注髌骨倾斜和肌肉负荷情况。

方法

在新的实验装置中,结合了两种既定的测试方法:一个用于膝关节标本定位和加载的直立膝关节模拟器,以及一个用于髌骨内外侧位移的工业机器人。一种微创耦合和力控制机制使髌骨能够自由运动,并通过外部超声运动跟踪系统测量髌骨在所有六个自由度上的运动。在七个新鲜冷冻的人体膝关节标本上,于六个不同的屈曲角度,在不同的肌肉力量水平、肌肉力量分布和位移力条件下测量髌骨的内外侧位移。

结果

髌骨移位(组内相关系数ICC(3,1)=0.67)和倾斜(ICC(3,1)=0.75)具有较高的重复性。随着屈曲角度增加,髌骨的内外侧移位略有减小。对髌骨倾斜的额外测量为内外侧不同的移位机制提供了有趣的见解。对于外侧移位,髌骨向相同(外侧)方向倾斜,而对于内侧移位,髌骨向相反方向(同样是外侧)倾斜。关于不对称肌肉负荷,发现其对外侧移位有显著影响(p<0.03,移位可达5mm,倾斜可达8°),且肌肉与髌骨力之间存在合理关系,而在内侧方向未观察到影响。

结论

所开发的实验装置给出了可重复的结果,被发现是用于体外分析髌骨稳定性以及未来研究髌骨稳定手术技术和全膝关节置换术的优秀测试方法。我们证明了股四头肌不对称负荷对髌骨稳定性有显著影响。特别是,股外侧肌上增加的力应用导致髌骨外侧移位明显增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69a2/4511523/bd10c5abb5c2/12938_2015_68_Fig1_HTML.jpg

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