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首页> 外文期刊>Clinical biomechanics >Kinematic, kinetic and metabolic parameters of treadmill versus overground walking in healthy older adults.
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Kinematic, kinetic and metabolic parameters of treadmill versus overground walking in healthy older adults.

机译:在健康的老年人中,跑步机相对于地面行走的运动,动力学和代谢参数。

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BACKGROUND: Although treadmill and overground walking appear to be biomechanically similar in healthy, young adults it is not known whether this can be generalized to older subjects or if the metabolic demands are correspondingly comparable. METHODS: Ten healthy adults between 50 and 73 years of age walked at the same speed overground and on a treadmill. Temporal parameters, angular kinematics and vertical ground reaction forces were recorded during walking once subjects were in steady state as determined from their heart rate and oxygen uptake. FINDINGS: Step, stride and joint angular kinematics were similar for both modes of walking with the exception of the maximum hip flexion and knee extension which were more pronounced with treadmill or overground walking, respectively but in both instances differed by less than 3 degrees. Vertical ground reaction force profiles were similar although the peak associated with push-off was 5.5% smaller with treadmill walking. The metabolic requirements of treadmillwalking were about 23% higher than that associated with overground walking. INTERPRETATION: While treadmill and overground walking are biomechanically similar, the metabolic cost of treadmill walking is higher. Clinically this may be important when using a treadmill for gait retraining in patient populations as it may lead to premature fatigue or undesirable physiologic challenge.
机译:背景:尽管在健康的年轻人中,跑步机和地面行走似乎在生物力学上相似,但尚不清楚这是否可以推广到老年受试者或新陈代谢需求是否相当。方法:十名年龄在50至73岁之间的健康成年人以相同的速度在地面和跑步机上行走。一旦受试者处于稳定状态(根据其心律和摄氧量确定),便会在行走过程中记录时间参数,角运动学和垂直地面反作用力。研究发现:两种步行方式的步距,步幅和关节角运动学均相似,但最大髋屈曲和膝盖伸展分别在跑步机或地面步行时更为明显,但在两种情况下相差不到3度。垂直地面反作用力曲线相似,尽管在跑步机上行走时与下推相关的峰值小5.5%。跑步运动对人体的代谢要求比地面行走对人体的代谢要求高约23%。解释:虽然跑步机和地面行走在生物力学上相似,但跑步机行走的代谢成本较高。在临床上,当使用跑步机对患者群体进行步态再训练时,这可能很重要,因为它可能导致过早疲劳或不良的生理挑战。

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