Ludwigs Eva, Bellmann Malte, Schmalz Thomas, Blumentritt Siegmar
Research Department, Otto Bock HealthCare GmbH, Göttingen, Germany.
Prosthet Orthot Int. 2010 Dec;34(4):449-60. doi: 10.3109/03093646.2010.499551. Epub 2010 Aug 4.
Previous studies have shown low end-user acceptance of a hip disarticulation style prosthesis and that the limitations of such prostheses, including poor gait pattern, socket discomfort, weight of the prosthesis, loss of mobility, instability and high energy consumption are a contributing factor. This study was initiated to determine if a new style of prosthetic hip joint could help to overcome some of the limitations concerning the gait pattern. The present study analyzed the gait pattern of six hip disarticulation amputee subjects. The objective was to compare two different prosthetic hip joints, both from Otto Bock HealthCare: The new Helix(3D) and the 7E7, which is based on the Canadian model proposed by McLaurin (1954). Kinematics and kinetics were recorded by an optoelectronic camera system with six CCD cameras and two force plates. During weight acceptance, the Helix(3D) extends considerably slower and reaches full extension later than the 7E7. The increased range of pelvic tilt observed with hip disarticulation amputees is significantly reduced (by 5 ± 3 degrees) when using the Helix(3D) Hip Joint. In addition, this system showed increased stance phase knee joint flexion as well as increased maximum swing phase knee flexion angles compared to the 7E7. These motion analysis results show that the Helix(3D) Hip Joint can reduce gait abnormalities compared to the uniplanar design of the 7E7 hip joint.
先前的研究表明,终端用户对髋关节离断式假肢的接受度较低,并且此类假肢的局限性,包括步态模式不佳、接受腔不适、假肢重量、活动能力丧失、不稳定和高能量消耗等,都是促成因素。开展本研究是为了确定一种新型的人工髋关节是否有助于克服一些与步态模式相关的局限性。本研究分析了六名髋关节离断截肢受试者的步态模式。目的是比较两种均来自奥托博克医疗保健公司的不同人工髋关节:新型的Helix(3D)和基于麦克劳林(1954年)提出的加拿大模型的7E7。运动学和动力学数据由一个配备六个电荷耦合器件(CCD)摄像头和两个测力板的光电摄像系统记录。在承重过程中,Helix(3D)伸展得明显更慢,比7E7更晚达到完全伸展。与7E7相比,使用Helix(3D)髋关节时,髋关节离断截肢者观察到的骨盆倾斜范围增加显著减小(减小5±3度)。此外,与7E7相比,该系统在站立期膝关节屈曲增加,在摆动期膝关节最大屈曲角度也增加。这些运动分析结果表明,与7E7髋关节的单平面设计相比,Helix(3D)髋关节可以减少步态异常。