Schwarze Michael, Hurschler Christof, Seehaus Frank, Correa Tomas, Welke Bastian
Laboratory for Biomechanics and Biomaterials, Department of Orthopaedics, Hannover Medical School, Anna-von-Borries-Str. 1-7, 30625 Hannover, Germany.
Clin Biomech (Bristol). 2014 Mar;29(3):272-6. doi: 10.1016/j.clinbiomech.2013.11.023. Epub 2013 Dec 4.
Transfemoral amputation is a surgical measure in which the surgeon typically conserves as much tissue and bone as possible. Osseointegrated fixation of prostheses is a promising alternative to conventional socket-based fixation. However, osseointegrated prostheses pose some risk of possible bone fracture under unexpected high-impact loading scenarios, such as a fall, and this should be protected against by a safety element. The aim of the present study was to determine the effect of amputation height on the forces and moments at the bone-prosthesis interface during normal gait and three falling scenarios.
Forces and moments at four amputation heights were determined from a multi-body simulation driven by data captured from an able-bodied participant.
In all three falling scenarios, forces were relatively independent of amputation height, while moments generally displayed considerable increases with shorter residual limb length. Peak moments ranged from 105Nm (SD 75) (most distal amputation height) to 229Nm (SD 99) (most proximal amputation height) for a "falling during gait" scenario.
Our findings reveal the dependence of interface loads on amputation height in normal gait and falling. This information may lead to improved prosthesis safety elements against bending moments.
经股截肢是一种外科手术措施,在此手术中外科医生通常会尽可能保留更多的组织和骨骼。与传统的基于接受腔的固定方式相比,骨整合固定假体是一种很有前景的替代方法。然而,在意外的高冲击负荷情况下,如跌倒时,骨整合假体存在一定的骨折风险,因此需要一个安全元件来加以防护。本研究的目的是确定截肢高度对正常步态及三种跌倒情况下骨 - 假体界面处的力和力矩的影响。
通过由一名健全参与者采集的数据驱动的多体模拟,确定四个截肢高度处的力和力矩。
在所有三种跌倒情况下,力相对独立于截肢高度,而力矩通常随着残肢长度缩短而显著增加。在“步态中跌倒”的情况下,峰值力矩范围从105牛米(标准差75)(最远端截肢高度)到229牛米(标准差99)(最近端截肢高度)。
我们的研究结果揭示了正常步态和跌倒时界面负荷对截肢高度的依赖性。这些信息可能有助于改进针对弯矩的假体安全元件。