F160 Physical activity, climacteric symptoms and bone mass in Hong Kong perimenopausal women

Maturitas ◽  
1996 ◽  
Vol 27 ◽  
pp. 93
Author(s):  
SC Ho ◽  
SG Chan ◽  
V Yip ◽  
C Chan ◽  
CL Law
Life ◽  
2021 ◽  
Vol 11 (6) ◽  
pp. 478
Author(s):  
Hélder Fonseca ◽  
Andrea Bezerra ◽  
Ana Coelho ◽  
José Alberto Duarte

Background: Obesity is considered protective for bone mass, but this view has been progressively challenged. Menopause is characterized by low bone mass and increased adiposity. Our aim was to determine how visceral and bone marrow adiposity change following ovariectomy (OVX), how they correlate with bone quality and if they are influenced by physical activity. Methods: Five-month-old Wistar rats were OVX or sham-operated and maintained in sedentary or physically active conditions for 9 months. Visceral and bone marrow adiposity as well as bone turnover, femur bone quality and biomechanical properties were assessed. Results: OVX resulted in higher weight, visceral and bone marrow adiposity. Visceral adiposity correlated inversely with femur Ct.Th (r = −0.63, p < 0.001), BV/TV (r = −0.67, p < 0.001), Tb.N (r = −0.69, p < 0.001) and positively with Tb.Sp (r = 0.58, p < 0.001). Bone marrow adiposity also correlated with bone resorption (r = 0.47, p < 0.01), bone formation rate (r = −0.63, p < 0.01), BV/TV (r = −0.85, p < 0.001), Ct.Th (r = −0.51, p < 0.0.01), and with higher empty osteocyte lacunae (r = 0.39, p < 0.05), higher percentage of osteocytes with oxidative stress (r = 0.64, p < 0.0.01) and lower femur maximal stress (r = −0.58, p < 0.001). Physical activity correlated inversely with both visceral (r = −0.74, p < 0.01) and bone marrow adiposity (r = −0.92, p < 0.001). Conclusions: OVX increases visceral and bone marrow adiposity which are associated with inferior bone quality and biomechanical properties. Physical activity could contribute to reduce adipose tissue and thereby improve bone quality.


2021 ◽  
Vol 19 (3) ◽  
pp. 171-177
Author(s):  
Ming Hui Li ◽  
Raymond Kim Wai Sum ◽  
Cindy Hui Ping Sit ◽  
Yong Liu ◽  
Ru Li

1995 ◽  
Vol 74 (1) ◽  
pp. 125-139 ◽  
Author(s):  
Warren T. K. Lee ◽  
Sophie S. F. Leung ◽  
Doram. Y. Leung ◽  
Heidi S. Y. Tsang ◽  
Joseph Lau ◽  
...  

There is limited information relating Ca intake to bone and height acquisition among Oriental children who consume little or even no milk. The present controlled study investigated the acquisition of bone mass and height of Chinese children with an initial Ca intake of approximately 567 mg/d who were supplemented to about 800 mg/d. Eighty-four 7-year-old Hong Kong Chinese children underwent an 18-month randomized, double-blind, controlled Ca-supplementation trial. The children were randomized to receive either 300 mg elemental Ca or a placebo tablet daily. Bone mass of the distal one-third radius was measured by single-photon absorptiometry, lumbar spine and femoral neck were determined using dual-energy X-ray absorptiometry. Measurements were repeated 6-monthly. Baseline serum 25-hydroxycholecalciferol concentration and physical activity were also assessed. Baseline Ca intakes of the study group and controls were respectively 571 (SD 326) and 563 (SD 337) mg/d. There were no significant differences in baseline serum 25-hydroxycholecalciferol concentration (P= 0·71) and physical activity (P= 0·36) between the study and control groups. After 18 months the study group had significantly greater increases in lumbar-spinal bone mineral content (20·9v. 16. 34%;P= 0·035), lumbar-spinal area (11·16v. 8·71%;P= 0middot;049), and a moderately greater increment in areal bone mineral density of the radius (7·74 0·600%;P= 0.081) when compared with the controls. The results confirm a positive effect of Ca on bone mass of the spine and radius but no effects on femoral-neck and height increase. A longer trial is warranted to confirm a positive Ca effect during childhood that may modify future peak bone mass.


2016 ◽  
Vol 1 (2) ◽  
pp. 137
Author(s):  
A Andi Kurniawan

Regular Physical activity (PA) and exercise plays a vital role in the health and well-being of people of all ages, and its associated with positive outcomes relating to weight status, cardiometabolic markers, chronic disease prevention, bone health and mental health. Genetic factors are the strongest determinants of bone mass, but PA and exercise with loading of the bone also has a major impact on bone mass as well as on bone strength. Physical activity has been proposed as a key factor for developing healthy bones in childhood and adolescence, mainly when high-impact and weight-bearing exercise above a certain intensity and duration. It has been associated with bone accretion showing an important osteogenic effect, mainly when high-impact and weight bearing physical activity occur. Muscle mass is also a determinant of bone development. Several studies have examined the association between PA and bone health among youths.


2015 ◽  
Vol 3 (3) ◽  
pp. 51-57
Author(s):  
Wong S. L. ◽  
Lee L. Y. K. ◽  
Lam S. C. ◽  
Yeung C. Y.

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