Relationships Among Body Mass Index, Body Balance and Bone Mineral Density in Postmenopausal Women
NCT ID: NCT03280693
Last Updated: 2017-09-12
Study Results
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Basic Information
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COMPLETED
48 participants
OBSERVATIONAL
2015-05-31
2015-11-30
Brief Summary
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Detailed Description
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* Forty-eight postmenopausal women participated in this study. Body balance was assessed using Berg Balance Scale (BBS), while BMD of the lumbar spine was measured by dual energy X-ray absorptiometry (DEXA) scan.
The positive correlation between body balance and BMD in the current study can be explained that balance is controlled by sensory input, central processing, and neuromuscular responses. The sensory components consist of the vestibular, visual, and proprioceptive systems. An effective motor response requires an intact neuromuscular system and sufficient muscle strength to return the COG within the BOS when balance is disturbed. Postural balance in individuals with osteoporosis is significantly worse than in healthy individuals. Moreover, it was determined that balance scores in individuals with osteoporosis were 11% worse than scores of healthy individuals. Furthermore, exaggerated thoracic kyphotic curve is not only a disfiguring effect of osteoporosis but may also play a significant role in gait disorder, instability, and risk of falls.
In addition, back pain has a harmful impact on both balance and functional mobility in women with osteoporosis. Individuals with back pain may reduce their level of physical activity and, as a result, become weak in muscles required for balance and functional mobility. Impairment of the musculoskeletal and/or the neuromuscular system may negatively affect both balance and functional mobility.
In the same context, it was proved that women with decreased BMD and increased thoracic kyphosis presented greater body sway in the anterior/posterior direction on the force platform indicating more displacement of foot center of pressure (COP). They also confirmed that postmenopausal women with low BMD and increased thoracic kyphosis depend more on the hip strategy to maintain their postural control. This in turn probably causes more displacement of foot COP, thus causing greater body sway in all directions in comparison with the ankle strategy. it was also showed that women with loss of bone mass and increased thoracic kyphosis presented less foot COP displacement in the AP direction compared with the control group (with normal bone mass and normal thoracic curve.
The current study results also revealed that BMI was negatively correlated with both BMD and body balance in postmenopausal women. This can be illustrated that obese elderly women are often afraid of falls and sustaining fractures, so they prefer immobility and minimize their physical activity as much as possible. Because bone is formed when needed and resorbed when not needed as known as Wolff's law, BMD decreases and osteopenia/osteoporosis develops. Low BMD affect bone health as it leads to fragile weak bone and this in turn disturbs postural control and body balance. Additionally, obese women fail to control their center of gravity (COG) within base of support (BOS) disturbing their postural control and body balance, increasing risk of falls and making them more liable to fractures.
Conditions
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Study Design
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CASE_ONLY
RETROSPECTIVE
Interventions
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Diagnostic test
Body balance was assessed using Berg Balance Scale (BBS), while BMD of the lumbar spine was measured by dual energy X-ray absorptiometry (DEXA) scan.
Eligibility Criteria
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Inclusion Criteria
Exclusion Criteria
* vertebrobasillar insufficiency
* poor diet
50 Years
60 Years
FEMALE
No
Sponsors
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Cairo University
OTHER
Responsible Party
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Azza Mohammed
Principal invstigator
References
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Liu-Ambrose T, Eng J, Khan K., Carter ND, McKay HA. Older women with osteoporosis have increased postural sway and weaker quadriceps strength than counterparts with normal bone mass: overlooked determinants of fracture risk? J Gerontol A Biol Sci Med Sci. 2003. 58 (9): 862-6. Shumway-Cook A, Brauer S, Woollacott M. Predicting the probability for falls in community-dwelling older adults using the timed up and go test. Phys Ther. 2000. 80(9): 896-903. Sinaki M, Brey RH, Hughes CA, Larson DR, Kaufman KR. Balance disorder and increased risk of falls in osteoporosis and kyphosis: significance of kyphotic posture and muscle strength. Osteoporos Int. 2005.16 (8):1004-10. Liu-Ambrose T, Eng JJ, Khan KM, Mallinson A, Carter ND, McKay HA. The influence of back pain on balance and functional mobility in 65 to 75 year old women with osteoporosis. Osteoporosis Int. 2002. 13 (11): 868-73. Lynn SG, Sinaki M, Westerlind KC. Balance characteristics of person with osteoporosis. Arch Phys Med Rehabil. 1997. 78 (3): 273-6. Frost HD. Wolff's law and bone's structural adaptations to mechanical usage: an overview for clinicians. The angle Orthod. 1994. 64 (3): 175-80. Taes YE, Lapauw B, Vanbillemont G, Bogaert V, De Bac¬quer D, Zmierczak H, et al. Fat mass is negatively associat¬ed with cortical bone size in young healthy male siblings. J Clin Endocrinol Metab. 2009; 94 (7): 2325-31.
Other Identifiers
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P.T.REC/012/00731
Identifier Type: -
Identifier Source: org_study_id
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