Suppr超能文献

使用“梯队”型液压踝足装置对单侧胫部和股部截肢者地面步态生物力学的影响。

Impact on the biomechanics of overground gait of using an 'Echelon' hydraulic ankle-foot device in unilateral trans-tibial and trans-femoral amputees.

作者信息

De Asha Alan R, Munjal Ramesh, Kulkarni Jai, Buckley John G

机构信息

Division of Medical Engineering, School of Engineering, University of Bradford, Bradford BD7 1DP, UK.

Mobility & Specialised Rehabilitation Centre, Northern General Hospital, Sheffield S5 7AT, UK.

出版信息

Clin Biomech (Bristol). 2014 Aug;29(7):728-34. doi: 10.1016/j.clinbiomech.2014.06.009. Epub 2014 Jun 23.

Abstract

BACKGROUND

If a prosthetic foot creates resistance to forwards shank rotation as it deforms during loading, it will exert a braking effect on centre of mass progression. The present study determines whether the centre of mass braking effect exerted by an amputee's habitual rigid 'ankle' foot was reduced when they switched to using an 'Echelon' hydraulic ankle-foot device.

METHODS

Nineteen lower limb amputees (eight trans-femoral, eleven trans-tibial) walked overground using their habitual dynamic-response foot with rigid 'ankle' or 'Echelon' hydraulic ankle-foot device. Analysis determined changes in how the centre of mass was transferred onto and above the prosthetic-foot, freely chosen walking speed, and spatio-temporal parameters of gait.

FINDINGS

When using the hydraulic device both groups had a smoother/more rapid progression of the centre of pressure beneath the prosthetic hindfoot (p≤0.001), and a smaller reduction in centre of mass velocity during prosthetic-stance (p<0.001). As a result freely chosen walking speed was higher in both groups when using the device (p≤0.005). In both groups stance and swing times and cadence were unaffected by foot condition whereas step length tended (p<0.07) to increase bilaterally when using the hydraulic device. Effect size differences between foot types were comparable across groups.

INTERPRETATION

Use of a hydraulic ankle-foot device reduced the foot's braking effect for both amputee groups. Findings suggest that attenuation of the braking effect from the foot in early stance may be more important to prosthetic-foot function than its ability to return energy in late stance.

摘要

背景

如果假脚在加载过程中变形时对小腿向前旋转产生阻力,它将对质心前进产生制动作用。本研究旨在确定截肢者习惯性使用的刚性“踝关节”假脚切换至使用“阶梯”液压踝足装置时,其质心制动效果是否会降低。

方法

19名下肢截肢者(8名大腿截肢,11名小腿截肢)使用其习惯性的具有刚性“踝关节”的动态响应假脚或“阶梯”液压踝足装置在地面行走。分析确定了质心转移到假脚之上及在假脚上的方式变化、自由选择的步行速度以及步态的时空参数。

结果

使用液压装置时,两组在假脚后足下方的压力中心推进都更平稳/快速(p≤0.001),并且在假脚支撑期质心速度的降低更小(p<0.001)。因此,两组在使用该装置时自由选择的步行速度都更高(p≤0.005)。两组的支撑期和摆动期时间以及步频均不受假脚类型的影响,而使用液压装置时双侧步长有增加的趋势(p<0.07)。不同假脚类型之间的效应量差异在各组间具有可比性。

解读

对于两组截肢者而言,使用液压踝足装置均可降低假脚的制动效果。研究结果表明,在支撑初期假脚制动效果的减弱对假脚功能可能比其在支撑后期恢复能量的能力更为重要。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验