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Association of skeletal muscle strength and cardiorespiratory fitness with bone mineral density

A cross-sectional study

Bibliographic Data

ID22069760
AuthorsBeibei Wei (302 Military Hospital of China), Zelong Miao (302 Military Hospital of China), Xinge Yang (Capital University of Physical Education and Sports), Shuning Chen (0000-0002-7544-3311, 302 Military Hospital of China), Xueying Guo (0000-0003-2056-8827, 302 Military Hospital of China), Jixiang Wang (302 Military Hospital of China), Xu Huang (0000-0003-3472-6822, 302 Military Hospital of China), Hanping Zhang (0000-0001-5236-6694, 302 Military Hospital of China), Xuan Wang (0000-0002-7173-0962, 302 Military Hospital of China), Bin Jia (0000-0002-3242-0574, 302 Military Hospital of China, corresponding author)
Year2025
Volume13
Pages1584610-1584610
Publication date2025-07-16
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueFrontiers in Public Health (JOURNAL)
Journal identifiersISSN: 2296-2565 • E-ISSN: 2296-2565
PublisherFrontiers Media SA (PUBLISHER • CH)
DOI10.3389/fpubh.2025.1584610
PMID40740362
OpenAlexW4412463593
LanguageEN
References cited38

Background The high prevalence and increasing severity of osteoporosis have elevated it to a significant global public-health concern, imposing a substantial economic burden. Skeletal muscle strength and cardiorespiratory endurance serve as pivotal metrics in evaluating physical health. They play a vital role in mitigating the risks associated with bone density decline and the development of osteoporosis. This cross-sectional study was carried out among Chinese adults aged 30–60 years. Its aim is to investigate the associations between skeletal muscle strength, cardiorespiratory endurance, and bone density, thereby providing scientific evidence for formulating prevention and intervention strategies against osteoporosis. Method A handgrip dynamometer was employed to measure the subjects’ grip strength, which served as an indicator for assessing their upper-limb muscle strength. Additionally, an isokinetic muscle-strength tester was utilized to determine the subjects’ lower–limb isokinetic muscle strength, thereby evaluating the strength of their lower–limb muscles. The exercise cardiopulmonary testing system was utilized to directly measure the subjects’ maximum oxygen uptake (VO2 max) via a treadmill test. This crucial indicator was then employed to assess the subjects’ cardiorespiratory fitness (CRF). Moreover, the QCT bone density analysis system was used to measure the thoracolumbar bone density of the subjects, and their bone density levels were evaluated based on the T value. A multiple stepwise linear regression model was utilized to further examine the associations between the independent variables grip strength, quadriceps muscle strength, and maximum oxygen uptake and the dependent variable, the bone density T value, stratified by gender. A series of factors potentially influencing the results were adjusted for, such as age, weight, body mass index (BMI), smoking and drinking habits, as well as vitamin D and calcium levels. Results In the final fully adjusted model, a significant positive correlation was detected between grip strength and the BMD T score ( β = 0.03, p < 0.001). This correlation held significance in both women ( β = 0.15, p < 0.001) and men ( β = 0.07, p < 0.001). A significant correlation was observed between quadriceps muscle strength and the bone mineral density T score ( β = 0.94, p < 0.001). Notably, this correlation was particularly pronounced in the female group, with a more significant relationship ( β = 1.35, p < 0.001), whereas in the male group, the correlation was not significant ( β = 0.42, p = 0.230). In addition, a significant correlation was identified between the maximum oxygen uptake and the bone density T value in the overall sample ( β = 0.28, p = 0.009). Nevertheless, upon gender stratification, the correlation between the maximum oxygen uptake and bone density was not significant in women ( p = 0.884), yet it was significant in men ( β = 0.42, p = 0.009). Conclusion In the 30–60 age group, a significant positive correlation was detected between skeletal muscle strength and bone density. Specifically, in women, lower limb muscle strength was more closely associated with bone density; however, this relationship was not significant in men. Moreover, the association between cardiorespiratory endurance and bone density varied by gender. It was not significant in women but demonstrated a significant positive correlation in the male group

Blood pressure · Bone density · Bone mineral · Cardiorespiratory fitness · Cross-sectional study · Grip strength · Heart rate · Osteoporosis · Pathology · Physical fitness · Physical medicine and rehabilitation · Physical therapy · VO2 max · Bone health and osteoporosis research · Medicine · Nutrition and Health in Aging · Nutritional Studies and Diet · Internal Medicine

  • Importance of Assessing Cardiorespiratory Fitness in Clinical Practice

    ROBERT ROSS, Steven N Blair et al.•Circulation•2016

  • Prognostic value of grip strength

    Open Access•Darryl P Leong, Jean-Louis Malandain et al.•The Lancet•2015

  • Physical Activity and Public Health

    William L Haskell, I-Min Lee et al.•Medicine & Science in Sports &…•2007

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