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Träfflista för sökning "L773:0171 967X OR L773:1432 0827 ;pers:(Karlsson M. K.)"

Sökning: L773:0171 967X OR L773:1432 0827 > Karlsson M. K.

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  • Magnusson, H I, et al. (författare)
  • Bone mass changes in weight-loaded and unloaded skeletal regions following a fracture of the hip
  • 2001
  • Ingår i: Calcified Tissue International. - : Springer Science and Business Media LLC. - 1432-0827 .- 0171-967X. ; 69:2, s. 78-83
  • Tidskriftsartikel (refereegranskat)abstract
    • Higher bone mineral density (BMD) has been reported in weight-loaded skeletal regions and lower BMD in unloaded regions in active athletes compared with controls. These discrepancies remain the first decades after cessation of active careers in former athletes with no remaining discrepancies found after age 65 years compared with age- and gender-matched controls. Physical activity is reduced after a hip fracture and BMD decreases in weight-loaded skeletal regions following the injury. If BMD increases in unloaded regions following a fracture of the hip it is not known. A BMD increase in an unloaded region would support the hypothesis of discrepancies in BMD response to physical activity in loaded and unloaded skeletal regions. BMD (g/cm2) was measured longitudinally using dual X-ray absorptiometry (DXA) in 32 women, mean age 77 years (range 57-90) and 12 men, mean age 74 years (range 53-89) with a hip fracture, the upper part of the skull representing an unloaded skeletal region, the arms a partly loaded region, and the femoral neck a weight-loaded region. Measurements (mean) were done in 11 days, 5 months, and 13 months after the hip fracture. Data are presented as mean +/- SEM. BMD increased in the upper part of the skull by 1.9%+/-0.8% the first 5 months and 3.7%+/-0.9% the first 13 months after the fracture (P < 0.05 and P < 0.001, respectively). BMD did not change in the arms but decreased in the nonfractured femoral neck by 4.7%+/-1.8% the first 5 months and 4.5%+/-1.7% the first 13 months after the fracture (both P < 0.01, respectively). In summary, in this longitudinal study, BMD increased in an unloaded skeletal region and decreased in a weight-loaded region following a hip fracture with reduced activity level, suggesting that loaded and unloaded skeletal regions confer different BMD response after changed activity level.
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  • Karlsson, M K, et al. (författare)
  • Indicators of bone formation in weight lifters
  • 1995
  • Ingår i: Calcified Tissue International. - 1432-0827. ; 56:3, s. 177-180
  • Tidskriftsartikel (refereegranskat)abstract
    • Physical activity has been suggested to be one of the determinants of bone turnover and to prevent age-related bone loss. To examine this we measured the serum levels of osteocalcin (bone Gla-protein, BGP), C-terminal procollagen peptide (PICP), serum alkaline phosphatase, bone-specific alkaline phosphatase, and S-calcium as indices of bone formation in 19 actively performing and 15 ex-lifters. All were nationally or internationally ranked male athletes. Their values were compared with those from 38 age- and gender-matched controls. Actively performing weight lifters had 35% higher (P < 0.05) serum concentration of osteocalcin than the controls. The ex-lifters did not differ from the age-matched controls. Also serum calcium was elevated in active lifters (6%) (P < 0.01) but not in ex-lifters. No difference was found for serum-ALP, B-ALP, or PICP in either of the groups. Our study indicates that in addition to an already documented and well-known higher bone mineral density in heavily exercising athletes, they have an indication of higher bone formation as measured by biochemical markers. In athletes who have retired from competitional training, however, the bone formation does not differ from that of more sedentary controls.
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