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矢状面假肢对线对站立位经胫骨截肢者膝关节负荷的影响。

Effects of sagittal plane prosthetic alignment on standing trans-tibial amputee knee loads.

作者信息

Blumentritt S, Schmalz T, Jarasch R, Schneider M

机构信息

Department of Research, Otto Bock Orthopaedic Industry, Duderstadt, Germany.

出版信息

Prosthet Orthot Int. 1999 Dec;23(3):231-8. doi: 10.3109/03093649909071639.

Abstract

The influence of sagittal plane prosthetic alignment changes on loads applied to the ispilateral knee was investigated using 5 transtibial amputee subjects. The goal was to determine which prosthetic alignment results in the most energy efficient standing and also minimises stresses on knee structures during standing. The electromyogram, the external mechanical loading of the prosthetic leg and the amputees' posture were recorded for a wide range of prosthetic alignments. The EMG of the vastus lateralis and biceps femoris muscles was measured bilaterally; the EMG of the gastrocnemius muscle was measured only on the contralateral side. The distance between the anatomical knee centre and each individual's load line, as determined by the Otto Bock "L.A.S.A.R. Posture" alignment system, was used as a measure of the mechanical load applied to the knee joint. Prosthetic alignment has almost no influence on muscle activity of the contralateral lower limb during static standing. On the other hand, prosthetic alignment has a significant influence on the load applied to the amputee's ipsilateral knee joint. The external knee moments applied to the knee ligaments and knee muscles on the amputated side change systematically in response to different plantar flexion or dorsiflexion angles of the prosthetic ankle-foot. During standing the extensor muscles stabilise the limb by contracting if the load line is located less than 15 mm anterior to the anatomical knee centre. The biceps femoris muscle appears to have little or no protective function against hyperextension during standing even if large external knee extension moments are caused by excessive plantar flexion. Such extreme alignments significantly increase the stresses on knee ligaments and the posterior knee capsule. When prosthetic sagittal plane alignment is altered, the trans-tibial amputee compensates by balancing the upper part of the body over the centre of pressure of the prosthetic foot. Biomechanically optimal alignment of the trans-tibial prosthesis occurs when the individual load line is approximately 15 mm anterior to the anatomical knee centre, permitting a comfortable, energy efficient standing and minimising the mechanical loading on the knee structures.

摘要

使用5名经胫骨截肢者受试者,研究矢状面假体对线变化对施加于同侧膝关节的负荷的影响。目的是确定哪种假体对线能实现最节能的站立姿势,同时在站立过程中使膝关节结构上的应力最小化。针对多种假体对线情况,记录了肌电图、假腿的外部机械负荷以及截肢者的姿势。双侧测量了股外侧肌和股二头肌的肌电图;仅在对侧测量了腓肠肌的肌电图。由奥托博克“L.A.S.A.R. 姿势”对线系统确定的解剖学膝关节中心与每个个体的负荷线之间的距离,被用作施加于膝关节的机械负荷的度量。在静态站立期间,假体对线对侧下肢的肌肉活动几乎没有影响。另一方面,假体对线对施加于截肢者同侧膝关节的负荷有显著影响。随着假脚踝足的不同跖屈或背屈角度,施加于截肢侧膝关节韧带和膝关节肌肉的外部膝关节力矩会系统性地变化。在站立过程中,如果负荷线位于解剖学膝关节中心前方小于15毫米处,伸肌会通过收缩来稳定肢体。即使过大的跖屈导致了较大的外部膝关节伸展力矩,股二头肌在站立期间似乎对防止膝关节过伸几乎没有保护作用。这种极端的对线会显著增加膝关节韧带和膝关节后囊上的应力。当假体矢状面对线改变时,经胫骨截肢者会通过将身体上部平衡在假足的压力中心上方来进行补偿。当个体负荷线位于解剖学膝关节中心前方约15毫米处时,经胫骨假体的生物力学最佳对线出现,从而实现舒适、节能的站立姿势,并使膝关节结构上的机械负荷最小化。

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