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临床试验/NCT00697957
NCT00697957已完成不适用

Bone Adaptation to Impact Loading - Significance of Loading Intensity

University of Oulu1 个研究点 分布在 1 个国家目标入组 120 人开始时间: 2002年5月1日最近更新:
适应症
干预措施

试验速览

阶段
不适用
状态
已完成
入组人数
120
试验地点
1
主要终点
bone mineral density

研究概览

简要总结

Ageing populations have made osteoporosis and fragility fractures a major public health concern worldwide. Half of all women and 30% of all men will suffer a fracture related to osteoporosis during their lifetime. While medical prevention of this immense problem is impossible at population level, it is necessary to find efficient preventive strategies. Exercise is one of the major prevention approaches because one reason behind the increasing burden of osteoporosis is the modern sedentary lifestyle. However, the optimal type, intensity, frequency, and duration of exercise that best enhances skeletal integrity are still largely unknown.

We conducted a 12-month population-based randomized controlled exercise intervention in 120 premenopausal women. The aim was to investigate the effect of impact exercise on bone mineral density, geometry and metabolism in healthy women with the intention of assessing the intensity and amount of impact loading with a novel accelerometer-based measurement device. Training effects on risk factors of osteoporotic fractures, physical performance and risk factors of cardiovascular diseases were also evaluated.

This study demonstrated that 12 months of regular impact exercise favoured bone formation, increased bone mineral density in weight-bearing bones, especially at the hip, and led to geometric adaptations by increasing periosteal circumference. Bone adaptations had a dose- and intensity-dependent relationship with measured impact loading. Changes in proximal femur were threshold-dependent, indicating the importance of high impacts exceeding acceleration of 4 g as an osteogenic stimulus. The number of impacts needed to achieve this stimulation was 60 per day. Impact exercise also had a favourable effect on physical performance and cardiorespiratory risk factors by increasing maximal oxygen uptake, dynamic leg strength and decreasing low-density lipoproteins and waist circumference. Changes were dose-dependent with impact loading at wide intensity range.

Bone adapts to impact loading through various mechanisms to ensure optimal bone strength. The number of impacts needed to achieve bone stimulation appeared to be 60 per day, comparable to the same number of daily jumps. If done on a regular basis, impact exercise may be an efficient and safe way of preventing osteoporosis.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Prevention
盲法
Single (Outcomes Assessor)

入排标准

年龄范围
35 Years 至 40 Years(Adult)
性别
Female
接受健康志愿者
否

入选标准

  • •Random population-based sample of women:
  • •Age 35-40 yr
  • •residing in the city of Oulu, Finland
  • •in March 2002

排除标准

  • •cardiovascular, musculoskeletal, respiratory, or other chronic diseases that might limit training and testing
  • •diseases or medication affecting the bone
  • •pregnancy and breastfeeding
  • •regular current or previous participation in impact-type exercises and long-distance running more than three times a week

研究组 & 干预措施

2

No Intervention

Control group

1

Experimental

Exercise

干预措施: Exercise (Behavioral)

结局指标

主要结局

bone mineral density

时间窗: 0 and 12 months

次要结局

  • muscle strength(0 and 12 months)

研究者

申办方类型
Other

研究点 (1)

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