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Investigations of standing balance efficiency on sloped surfaces in persons with transfemoral amputation.

机译:经股截肢者在倾斜表面站立平衡效率的研究。

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摘要

This study investigated the effects of stiffness and alignment properties of prosthetic foot/ankle devices during quiet standing on sloped surfaces. The prosthetic foot/ankle stiffness and alignment are normally set by a prosthetist in a clinic on a level surface. Most prosthetic foot/ankle devices cannot dynamically change these properties; therefore, persons with amputation use proximal joint compensations to maintain balance. It was hypothesized that: (1) able-bodied persons adapt to sloped surfaces using their foot/ankle systems with no increase in oxygen consumption; (2) decreasing prosthetic foot/ankle stiffness (without changing alignment) will decrease proximal joint compensations and reduce oxygen consumption of prostheses users; and (3) using adapted prosthetic foot/ankle alignment on sloped surfaces produce oxygen consumption, joint kinematics, and kinetic data that are similar to standing on level surfaces.;Ten able-bodied persons quietly standing on sloped surfaces were studied to quantify their energy consumption, kinematic, and kinetic adaptations. Oxygen consumption was not significantly altered (p=0.098). Able-boded persons' proximal body segment kinematics (p=0.334) and anterior/posterior center of pressure location (p=0.164) did not change significantly while standing on sloped surfaces. These results suggest that the able-bodied foot/ankle realigns its sagittal plane orientation to match the surface slope.;Ten persons with unilateral transfemoral amputation were studied to quantify their energy consumption, kinematic, and kinetic compensations. These persons quietly stood on sloped surfaces with three prosthetic foot/ankle stiffness values and two prosthetic foot/ankle alignments. Prosthetic foot/ankle stiffness did not have a significant effect on oxygen consumption (p=0.220); however, oxygen consumption was significantly increased for non-level standing trials (p=0.044). The adaptable alignment prosthetic foot/ankle condition decreased oxygen consumption on inclined surfaces compared to standard alignment (p=0.034). Realignment of the prosthetic foot/ankle device reduced sagittal plane hip compensations (p=0.005) and improved posture.;The results from these studies suggest current approaches using a single stiffness and alignment for prosthetic foot/ankle devices were not energy efficient for quiet standing on non-level surfaces. It is believed that prosthetic foot/ankle devices that can change stiffness and alignment dynamically for the task performed would have a positive impact on persons with lower limb amputation.
机译:这项研究调查了在倾斜的地面上安静站立时假足/踝关节装置的刚度和对齐特性的影响。假肢的脚/踝部刚度和对齐方式通常由假肢在诊所的水平面上进行设置。大多数假肢的脚/踝设备无法动态更改这些属性。因此,截肢者使用近端关节补偿来保持平衡。假设:(1)健全的人使用其脚/踝系统适应倾斜的表面,而没有增加氧气消耗; (2)降低假肢脚/踝关节的刚度(不改变线形)将减少近端关节补偿并减少假肢使用者的氧气消耗; (3)在倾斜的表面上使用合适的假足脚踝对齐方式产生的氧气消耗量,关节运动学和动力学数据类似于站立在水平表面上。研究了十个身体健壮的人在倾斜的表面上安静地站立以量化其能量消耗量,运动学和动力学适应。耗氧量没有显着变化(p = 0.098)。当站立在倾斜表面上时,身体健全的人的近端肢体运动学(p = 0.334)和压力位置的前/后中心(p = 0.164)均无明显变化。这些结果表明,健壮的脚/脚踝重新调整了其矢状面的方向以匹配表面坡度。;研究了十名单侧经股骨截肢的人,以量化其能量消耗,运动学和动力学补偿。这些人安静地站在倾斜的表面上,具有三个假脚/踝关节刚度值和两个假脚/踝关节对齐。假肢足踝僵硬对耗氧量没有显着影响(p = 0.220);然而,非水平站立试验的耗氧量显着增加(p = 0.044)。与标准对位相比,适应性对位假肢足部/踝部条件可减少倾斜表面上的氧气消耗(p = 0.034)。假脚/踝装置的重新对准减少了矢状面髋关节补偿(p = 0.005)并改善了姿势。这些研究的结果表明,目前使用单一刚度和对准度的假脚/踝装置的方法对于安静站立并不节能在非水平表面上。人们相信,可以为完成的任务动态改变刚度和对准度的假脚/踝装置将对下肢截肢的人产生积极的影响。

著录项

  • 作者

    Ruhe, Brian Leonard.;

  • 作者单位

    Northwestern University.;

  • 授予单位 Northwestern University.;
  • 学科 Engineering Biomedical.;Health Sciences Rehabilitation and Therapy.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 121 p.
  • 总页数 121
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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