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      KCI등재 SCOPUS

      Physical Activity and Bone Health in Men: A Systematic Review and Meta-Analysis

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      https://www.riss.kr/link?id=A107295220

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      다국어 초록 (Multilingual Abstract)

      Background: Research on osteoporosis and physical activity often focuses on women. We aimed to conduct a systematic review to assess the benefits and harms of physical activity interventions for men’s bone health. Methods: We used standard methods a...

      Background: Research on osteoporosis and physical activity often focuses on women.
      We aimed to conduct a systematic review to assess the benefits and harms of physical activity interventions for men’s bone health. Methods: We used standard methods and searched for randomized controlled trials (RCTs) (duration, ≥6 months) published in all languages across multiple databases and trial registries. The last search was conducted on July 22, 2020. Results: We included 11 studies (14 publications), resulting in a sample of N=723 men (range, 17–132 participants). We found low-certainty evidence that physical activity has little influence on the areal bone mineral density (aBMD) at the total hip (5 RCTs, N=324; mean difference [MD], 0.03 [95 confidence interval (CI), 0.01 to 0.05]) and little or no influence on the aBMD at the femoral neck (3 RCTs, N=186; MD, 0.00 [95% CI, -0.04 to 0.04]), lumbar spine (3 RCTs; N=213; MD, 0.05 [95% CI, -0.01 to 0.11]), and whole body (4 RCTs, N=203; MD, -0.00 [95% CI, -0.03 to 0.02]). Conclusions: We found low-certainty evidence that physical activity (≥6 months) has some effect on the total hip in men, but new evidence may change this finding. This review highlights the gap in the evidence on specific intervention prescriptions that can benefit the bone geometry, structure, microarchitecture, and, ultimately, bone strength in men. Future research should engage in comprehensive reporting of harms, quality of life outcomes, advanced imaging findings, and long-term interventions.

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      참고문헌 (Reference)

      1 Adrianne C. Feldstein, "The near absence of osteoporosis treatment in older men with fractures" Springer Science and Business Media LLC 16 (16): 953-962, 2005

      2 Allison SJ, "The influence of highimpact exercise on cortical and trabecular bone mineral content and 3D distribution across the proximal femur in older men: A randomized controlled unilateral intervention" 30 : 1709-1716, 2015

      3 K. A. Bolam, "The effect of physical exercise on bone density in middle-aged and older men: A systematic review" Springer Science and Business Media LLC 24 (24): 2749-2762, 2013

      4 K. Bolam, "The effect of high-impact exercise on hip and spine bone density in community-dwelling middle-aged and older men: A 9-month dose-response randomised controlled trial" Elsevier BV 16 : e14-e15, 2013

      5 Jean-Eric Tarride, "The burden of illness of osteoporosis in Canadian men" Wiley 27 (27): 1830-1838, 2012

      6 A. Liberati, "The PRISMA statement for reporting systematic reviews and meta-analyses of studies that evaluate healthcare interventions: explanation and elaboration" BMJ 339 : b2700-b2700, 2009

      7 J. P. T. Higgins, "The Cochrane Collaboration's tool for assessing risk of bias in randomised trials" BMJ 343 : d5928-d5928, 2011

      8 Huuskonen J, "Regular physical exercise and bone mineral density: a four-year controlled randomized trial in middle-aged men. The DNASCO study" 12 : 349-355, 2001

      9 E. W. Helge, "Recreational football improves bone mineral density and bone turnover marker profile in elderly men" Wiley 24 : 98-104, 2014

      10 John E. Cornell, "Random-Effects Meta-analysis of Inconsistent Effects: A Time for Change" American College of Physicians 160 (160): 267-270, 2014

      1 Adrianne C. Feldstein, "The near absence of osteoporosis treatment in older men with fractures" Springer Science and Business Media LLC 16 (16): 953-962, 2005

      2 Allison SJ, "The influence of highimpact exercise on cortical and trabecular bone mineral content and 3D distribution across the proximal femur in older men: A randomized controlled unilateral intervention" 30 : 1709-1716, 2015

      3 K. A. Bolam, "The effect of physical exercise on bone density in middle-aged and older men: A systematic review" Springer Science and Business Media LLC 24 (24): 2749-2762, 2013

      4 K. Bolam, "The effect of high-impact exercise on hip and spine bone density in community-dwelling middle-aged and older men: A 9-month dose-response randomised controlled trial" Elsevier BV 16 : e14-e15, 2013

      5 Jean-Eric Tarride, "The burden of illness of osteoporosis in Canadian men" Wiley 27 (27): 1830-1838, 2012

      6 A. Liberati, "The PRISMA statement for reporting systematic reviews and meta-analyses of studies that evaluate healthcare interventions: explanation and elaboration" BMJ 339 : b2700-b2700, 2009

      7 J. P. T. Higgins, "The Cochrane Collaboration's tool for assessing risk of bias in randomised trials" BMJ 343 : d5928-d5928, 2011

      8 Huuskonen J, "Regular physical exercise and bone mineral density: a four-year controlled randomized trial in middle-aged men. The DNASCO study" 12 : 349-355, 2001

      9 E. W. Helge, "Recreational football improves bone mineral density and bone turnover marker profile in elderly men" Wiley 24 : 98-104, 2014

      10 John E. Cornell, "Random-Effects Meta-analysis of Inconsistent Effects: A Time for Change" American College of Physicians 160 (160): 267-270, 2014

      11 The R Development Core Team, "R: A language and environment for statistical computing. Version 4.0.3"

      12 M. Naves, "Prevalence of osteoporosis in men and determinants of changes in bone mass in a non-selected Spanish population" Springer Science and Business Media LLC 16 (16): 603-609, 2005

      13 M. B. Randers, "Positive performance and health effects of a football training program over 12 weeks can be maintained over a 1-year period with reduced training frequency" Wiley 20 (20): 80-89, 2010

      14 N. McCartney, "Long-term Resistance Training in the Elderly: Effects on Dynamic Strength, Exercise Capacity, Muscle, and Bone" Oxford University Press (OUP) 50A (50A): B97-B104, 1995

      15 J. A. Kanis, "Long-Term Risk of Osteoporotic Fracture in Malmö" Springer Science and Business Media LLC 11 (11): 669-674, 2000

      16 Mohamed Salaheldien Mohamed Alayat, "Long-Term Effect of Pulsed Nd-YAG Laser Combined with Exercise on Bone Mineral Density in Men with Osteopenia or Osteoporosis: 1 Year of Follow-Up" Mary Ann Liebert Inc 36 (36): 105-111, 2018

      17 Sonja Kukuljan, "Independent and combined effects of calcium-vitamin D3 and exercise on bone structure and strength in older men: an 18-month factorial design randomized controlled trial" The Endocrine Society 96 (96): 955-963, 2011

      18 Sara Balduzzi, "How to perform a meta-analysis with R: a practical tutorial" BMJ 22 (22): 153-160, 2019

      19 Sarah J. Allison, "High impact exercise increased femoral neck bone mineral density in older men: A randomised unilateral intervention" Elsevier BV 53 (53): 321-328, 2013

      20 G. F. Maddalozzo, "High Intensity Resistance Training: Effects on Bone in Older Men and Women" Springer Science and Business Media LLC 66 (66): 399-404, 2000

      21 GRADEpro GDT, "GRADEpro guideline development tool [Software]" McMaster University 2015

      22 Gordon H Guyatt, "GRADE: an emerging consensus on rating quality of evidence and strength of recommendations" BMJ 336 (336): 924-926, 2008

      23 Cathie Sherrington, "Exercise for preventing falls in older people living in the community: an abridged Cochrane systematic review" BMJ 54 (54): 885-891, 2020

      24 Howe TE, "Exercise for preventing and treating osteoporosis in postmenopausal women" CD000333-, 2011

      25 W. Kemmler, "Exercise effects on bone mineral density in older men: a systematic review with special emphasis on study interventions" Springer Science and Business Media LLC 29 (29): 1493-1504, 2018

      26 Kelley GA, "Exercise and bone mineral density in men: a meta-analysis" 88 : 1730-1736, 2000

      27 G.A. Kelley, "Exercise and bone mineral density in men: A meta-analysis of randomized controlled trials" Elsevier BV 53 (53): 103-111, 2013

      28 P. N. Kannegaard, "Excess mortality in men compared with women following a hip fracture. National analysis of comedications, comorbidity and survival" Oxford University Press (OUP) 39 (39): 203-209, 2010

      29 Amy T. Harding, "Effects of supervised high-intensity resistance and impact training or machine-based isometric training on regional bone geometry and strength in middle-aged and older men with low bone mass: The LIFTMOR-M semi-randomised controlled trial" Elsevier BV 136 : 115362-, 2020

      30 Joshua Matthews, "Effects of a multicomponent exercise program combined with calcium–vitamin D3-enriched milk on health-related quality of life and depressive symptoms in older men: secondary analysis of a randomized controlled trial" Springer Science and Business Media LLC 59 (59): 1081-1091, 2020

      31 S. Kukuljan, "Effects of a multi-component exercise program and calcium–vitamin-D3-fortified milk on bone mineral density in older men: a randomised controlled trial" Springer Science and Business Media LLC 20 (20): 1241-1251, 2009

      32 J. Whiteford, "Effects of a 1-year randomized controlled trial of resistance training on lower limb bone and muscle structure and function in older men" Springer Science and Business Media LLC 21 (21): 1529-1536, 2010

      33 A. Gómez-Cabello, "Effects of Training on Bone Mass in Older Adults" Springer Science and Business Media LLC 42 (42): 301-325, 2012

      34 홍아람, "Effects of Resistance Exercise on Bone Health" 대한내분비학회 33 (33): 435-444, 2018

      35 Higgins JPT, "Cochrane handbook for systematic reviews of interventions: Version 5.1.0" The Cochrane Collaboration; 2011

      36 Lefebvre C, "Cochrane handbook for systematic reviews of interventions: Version 5.1.0" The Cochrane Collaboration 2011

      37 Anitha D, "Assessing Bone Quality in Terms of Bone Mineral Density, Buckling Ratio and Critical Fracture Load" 대한골대사학회 21 (21): 243-247, 2014

      38 Fiona Stewart, "Are men difficult to find? Identifying male-specific studies in MEDLINE and Embase" Springer Science and Business Media LLC 3 (3): 78-, 2014

      39 J. Woo, "A randomised controlled trial of Tai Chi and resistance exercise on bone health, muscle strength and balance in community-living elderly people" Oxford University Press (OUP) 36 (36): 262-268, 2007

      40 Neil Binkley, "A perspective on male osteoporosis" Elsevier BV 23 (23): 755-768, 2009

      41 Amy T Harding, "A Comparison of Bone‐Targeted Exercise Strategies to Reduce Fracture Risk in Middle‐Aged and Older Men with Osteopenia and Osteoporosis: LIFTMOR‐M Semi‐Randomized Controlled Trial" Wiley 35 (35): 1404-1414, 2020

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2027 평가예정 재인증평가 신청대상 (재인증)
      2021-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2018-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2015-01-01 평가 등재학술지 선정 (계속평가) KCI등재
      2013-01-01 평가 등재후보학술지 유지 (기타) KCI등재후보
      2012-11-14 학술지명변경 외국어명 : Korean Journal of Bone Metabolism -> Journal of Bone Metabolism KCI등재후보
      2011-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.62 0.62 0.57
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.5 0.44 1.091 0.16
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