标题: | 地板材质改变对行走于其上的步态稳定性之影响 Effects of Floor Material Change on Gait Stability |
作者: | 胡馨云 杨秉祥 机械工程学系 |
关键字: | 跌倒;步态稳定性;地板材质;材质转换;摩擦系数;Fall;Gait Stability;Floor Materials;Floor Transition;Coefficient of Friction |
公开日期: | 2009 |
摘要: | 跌倒相关伤害为世界上严重而普遍的公众健康议题,于许多已开发国家亦同,且多发生于室内。然地板材质转换虽为一普遍存在之现象,但于考量室内跌倒因子时较少被讨论。有鉴于此,本研究以生物力学的角度去研究人体动作与平衡控制,并以改善居家环境安全、减少地板材质产生的跌倒事件为目标,量化地板材质转换(例如:客厅至厨房)时步态之改变,更进一步分析地板材质转换于步态稳定性上之影响。本试验包含由三种台湾居家常见之地板材质–光面木头、粗面磁砖、及塑胶地板,组合成的七种地板情境。并使用一组八台摄影机组成之动作撷取系统和两块力板量测受测者行走时的运动学与动力学资料。共有五位年轻健康成人、一位中高龄男性及一位高龄女性受测者参与本研究。每位受测者皆以自身习惯之速度行走于六公尺长之实验走道上,并完成两种材质连续(走道皆为同一地板材质,包含:光面木头、粗面磁砖)及四种材质转换(走道自一地板材质转换至另一种地板材质,包含:光面木头至塑胶地板、塑胶地板至光面木头、粗面磁砖至塑胶地板、塑胶地板至粗面磁砖)等六种地板情境,每种皆重复二十次试验。此外,年轻受测者需额外完成二十次干燥粗面磁砖至清水泼覆粗面磁砖的试验。实验结果显示当行走在高摩擦系数至低摩擦系数之地板材质转换情形时,会有脚跟触地角度减小约30%、骨盆于矢状面之前倾角度峰值减小,及所需摩擦系数峰值约增加5-10%的现象。而年轻与中高龄受测者身体质量中心在额状面上的偏移量增加显示其步态于地板材质转换情形下稳定度较差。上述结果显示材质转换相较于材质连续的情况,可能会提高跌倒风险,故建议避免采用地板材质转换的情况,特别是在高龄者的居住空间中。 Fall related injuries are serious public health issues all over the world, including in many developed countries, and most fall incidents occur at home. However, floor transition is a common yet frequently neglected condition when consider risk factors of falls. In consideration of high incident rates of fall-at-home events, our study aims to examine the effect of floor material change (transition), e.g. from living room to kitchen, on the control of level walking and gait stability, in order to reduce the floor material-induced risks of falls and improve the safety of home environment. We used three commonly-used floor materials at home in Taiwan – plane-wood, rough-ceramic, and polyvinyl chloride (PVC), to construct seven different floor conditions for the experiment. An eight-camera motion capture system and two force platforms were used to obtain kinematics and kinetics during level walking. Five healthy young adults and two older subjects volunteered for this study. All subjects completed 20 walking trials, on a 6-m long walkway at self-selected comfortable speed, each under two consistent condition (i.e. same floor material) – plane-wood and rough-wood floor, and four transition condition (i.e. from one material to another) – plane-wood to PVC, PVC to plane-wood, rough-wood to PVC and PVC to rough-wood floor. The five young participants also completed 20 trials on an additional dry to wet ceramic condition. Our results showed that when subjects walked from one floor to another with slightly lower coefficient of friction (COF), the peak required COF under foot increased 5% to 10%, and the foot angle at heel strike decreased about 30%. Moreover, peak anterior pelvic tilt angle was smaller as compared to those when walking under the consistent condition. The results imply a higher risk of falls during walking in transition than consistent conditions. Furthermore, the larger medial-lateral COM excursion also indicates that subjects had less stable locomotion under transition condition. Therefore, we suggest people avoid or use caution when they walk under transition condition, especially for the living environment of the elderly. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079614503 http://hdl.handle.net/11536/42069 |
显示于类别: | Thesis |
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