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两种假肢足对单侧经胫骨截肢患者多关节和多平面动力学步态补偿的比较。

A comparison of two prosthetic feet on the multi-joint and multi-plane kinetic gait compensations in individuals with a unilateral trans-tibial amputation.

作者信息

Underwood Heather A, Tokuno Craig D, Eng Janice J

机构信息

Division of Physical Medicine and Rehabilitation, University of British Columbia, Vancouver, Canada.

出版信息

Clin Biomech (Bristol). 2004 Jul;19(6):609-16. doi: 10.1016/j.clinbiomech.2004.02.005.

Abstract

OBJECTIVE

To determine the effects of two different prosthetic feet on the three-dimensional kinetic patterns of both the prosthetic and sound limbs during unilateral trans-tibial amputee gait.

DESIGN

Eleven individuals with a unilateral trans-tibial amputation participated in two walking sessions: once while using the conventional SAFE foot, the other while using the dynamic Flex foot.

BACKGROUND

Despite the wide variation in the design of prosthetic feet, the benefits of these prostheses remain unclear.

METHODS

During each test session, peak joint moments and powers in the sagittal, transverse and frontal planes were examined, as subjects walked at a comfortable speed.

RESULTS

The majority of the kinetic differences that occurred due to the changing of prosthetic foot type were limited to ankle joint variables in the sagittal plane with greater peak moments and power during propulsion for the Flex foot compared to the SAFE foot. However, effects were also found at joints proximal to the prosthesis (e.g. knee) and differences were also found in the kinetics of the sound limb.

CONCLUSION

The dynamic Flex foot allowed subjects to rely more heavily on the prosthetic foot for propulsion and stability during walking with minimal compensations at the remaining joints.

RELEVANCE

Determining the biomechanical differences between the conventional and dynamic prosthetic feet may advocate the use of one prosthetic foot type over another. This information, when used in conjunction with subjective preferences, may contribute to higher functioning and greater satisfaction for individuals with a lower limb amputation.

摘要

目的

确定两种不同的假肢脚对单侧经胫骨截肢者步态中假肢侧和健侧肢体三维动力学模式的影响。

设计

11名单侧经胫骨截肢者参加了两次步行测试:一次使用传统的SAFE脚,另一次使用动态Flex脚。

背景

尽管假肢脚的设计差异很大,但这些假肢的益处仍不明确。

方法

在每次测试过程中,当受试者以舒适的速度行走时,检测矢状面、横断面和额状面的峰值关节力矩和功率。

结果

由于假肢脚类型的改变而出现的大多数动力学差异仅限于矢状面的踝关节变量,与SAFE脚相比,Flex脚在推进过程中的峰值力矩和功率更大。然而,在假肢近端的关节(如膝关节)也发现了影响,并且在健侧肢体的动力学方面也发现了差异。

结论

动态Flex脚使受试者在行走过程中能够更多地依靠假肢脚进行推进和保持稳定,而其余关节的代偿最小。

相关性

确定传统假肢脚和动态假肢脚之间的生物力学差异可能会提倡使用一种假肢脚类型而非另一种。这些信息与主观偏好结合使用时,可能有助于提高下肢截肢者的功能水平和满意度。

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本文引用的文献

1
Lower limb muscle power relationships in bilateral able-bodied gait.
Am J Phys Med Rehabil. 2001 Nov;80(11):821-30. doi: 10.1097/00002060-200111000-00006.
3
Control of whole body balance in the frontal plane during human walking.
J Biomech. 1993 Jun;26(6):633-44. doi: 10.1016/0021-9290(93)90027-c.
8
Kinematic and EMG patterns during slow, free, and fast walking.
J Orthop Res. 1984;2(3):272-80. doi: 10.1002/jor.1100020309.
9
Biomechanics of below-knee amputee gait.
J Biomech. 1988;21(5):361-7. doi: 10.1016/0021-9290(88)90142-x.
10
Energy-storing prosthetic feet.
Arch Phys Med Rehabil. 1989 Apr;70(4):330-5.

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