骨量、强度和老年人跌倒相关骨折

IF 1.1 Q3 ORTHOPEDICS Journal of Osteoporosis Pub Date : 2019-09-09 DOI:10.1155/2019/5134690
K. Uusi-Rasi, S. Karinkanta, K. Tokola, P. Kannus, H. Sievänen
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引用次数: 17

摘要

骨矿物质密度低是骨折的危险因素。这项随访研究的目的是评估各种骨特性与跌倒相关骨折的关系。材料与方法对187名55 ~ 83岁的健康女性进行了20年的随访。根据是否发生跌倒相关骨折分为两组:骨折组(F)和非骨折组(NF)。在基线时,用DXA和pQCT测量几种骨特性,并评估其物理性能。结果在随访期间,120名女性未发生跌倒相关骨折,67名(38%)至少发生过一次跌倒并骨折。NF组股骨颈和桡骨远端骨密度增加4 ~ 11%;平均差异(95% CI)分别为4.5(0.3 ~ 8.6)%和11.1(6.3 ~ 16.1)%。NF组胫骨骨结构更强,胫骨远端BMC平均差异为6.0(2.2 ~ 9.7)%,胫骨干BMC平均差异为3.6(0.4 ~ 6.8)%。然而,在身体表现上没有平均差异。结论:低骨性会增加跌倒时骨折的风险。因此,在预防脆性骨折时,在一生中关注改善骨量、密度和强度是至关重要的。通过提高身体机能、平衡能力、机动性和肌肉力量来减少跌倒也同样重要。
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Bone Mass and Strength and Fall-Related Fractures in Older Age
Introduction Low bone mineral density is a risk factor for fractures. The aim of this follow-up study was to assess the association of various bone properties with fall-related fractures. Materials and Methods 187 healthy women aged 55 to 83 years at baseline who were either physically active or inactive were followed for 20 years. They were divided into two groups by whether or not they sustained fall-related fractures: fracture group (F) and nonfracture group (NF). At baseline, several bone properties were measured with DXA and pQCT, and their physical performance was also assessed. Results During the follow-up, 120 women had no fall-related fractures, while 67 (38%) sustained at least one fall with fracture. NF group had about 4 to 11% greater BMD at the femoral neck and distal radius; the mean differences (95% CI) were 4.5 (0.3 to 8.6) % and 11.1 (6.3 to 16.1) %, respectively. NF group also had stronger bone structure at the tibia, the mean difference in BMC at the distal tibia was 6.0 (2.2 to 9.7) %, and at the tibial shaft 3.6 (0.4 to 6.8) %. However, there was no mean difference in physical performance. Conclusions Low bone properties contribute to the risk of fracture if a person falls. Therefore, in the prevention of fragility fractures, it is essential to focus on improving bone mass, density, and strength during the lifetime. Reduction of falls by improving physical performance, balance, mobility, and muscle power is equally important.
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来源期刊
CiteScore
3.60
自引率
0.00%
发文量
6
审稿时长
20 weeks
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