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首页> 外文期刊>Journal of Biomechanics >Characteristic gait patterns in older adults with obesity--Results from the Baltimore Longitudinal Study of Aging.
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Characteristic gait patterns in older adults with obesity--Results from the Baltimore Longitudinal Study of Aging.

机译:肥胖老年人的步态特征-巴尔的摩纵向衰老研究的结果。

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Obesity in older adults is a growing public health problem. Excess weight causes biomechanical burden to lower extremity joints and contribute to joint pathology. The aim of this study was to identify specific characteristics of gait associated with body mass index (BMI). Preferred and maximum speed walking and related gait characteristics were examined in 164 (50-84 years) participants from Baltimore Longitudinal Study of Aging (BLSA) able to walk unassisted. Participants were divided into three groups based on their BMI: normal weight (19< or =BMI<25 kg/m(2)), overweight (25< or =BMI<30 kg/m(2)) and obese (BMI 30< or =BMI<40 kg/m(2)). Total ankle generative mechanical work expenditure (MWE) in the anterior-posterior (AP) plane was progressively and significantly lower with increase in BMI for both preferred (p=0.026) and maximum speed walking (p<0.001). In the medial-lateral (ML) plane, total knee generative MWE was higher in obese participants in the preferred speed task (p=0.002), and total hip absorptive MWE was higher in obese in both preferred speed (p<0.001) and maximum speed (p=0.002) walking task compared to the normal weight participants. Older adults with obesity show spatiotemporal gait patterns that may help in reducing contact impacts. In addition, in obese persons mechanical energy usages tend to be lower in the AP plane and higher in the ML plane. Since forward progression forces are mainly implicated in normal walking, this pattern found in obese participants is suggestive of lower energetic efficiency.
机译:老年人肥胖是一个日益严重的公共卫生问题。体重过重会导致下肢关节的生物力学负担,并导致关节病理。这项研究的目的是确定与体重指数(BMI)相关的步态的特定特征。来自巴尔的摩纵向老龄化研究(BLSA)的164名(50-84岁)能够独立行走的优选和最大速度行走及相关步态特征得到了检查。参与者根据其BMI分为三组:正常体重(19 <或= BMI <25 kg / m(2)),超重(25 <或= BMI <30 kg / m(2))和肥胖(BMI 30 <或= BMI <40 kg / m(2))。首选(p = 0.026)和最大速度步行(p <0.001)时,前后(AP)平面上的总踝部生成机械工作费用(MWE)逐渐降低,并且随着BMI的增加而显着降低。在内侧-外侧(ML)平面中,在首选速度任务中,肥胖参与者的总膝部生成MWE较高(p = 0.002),并且在首选速度(p <0.001)和最大值中,肥胖者的总髋吸收MWE较高。速度(p = 0.002)步行任务与正常体重参与者的比较。肥胖的成年人表现出时空步态模式,可能有助于减少接触影响。另外,在肥胖者中,机械能的使用在AP平面中倾向于较低,而在ML平面中则较高。由于向前的前进力主要与正常的步行有关,因此在肥胖参与者中发现的这种模式提示较低的能量效率。

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