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Barriers and enablers to physical activity and aerobic fitness deficits among childhood cancer survivors

Pediatric blood & cancer, v.67 no.7, 2020년, pp.e28339 -   

Mizrahi, David (UNSW Medicine, UNSW, Sydney, New South Wales, Australia) ,  Wakefield, Claire E. (UNSW Medicine, UNSW, Sydney, New South Wales, Australia) ,  Simar, David (UNSW Medicine, UNSW, Sydney, New South Wales, Australia) ,  Ha, Lauren (UNSW Medicine, UNSW, Sydney, New South Wales, Australia) ,  McBride, James (Respiratory Medicine, Sydney Children's Hospital, Sydney, New South Wales, Australia) ,  Field, Penelope (Respiratory Medicine, Sydney Children's Hospital, Sydney, New South Wales, Australia) ,  Cohn, Richard J. (UNSW Medicine, UNSW, Sydney, New South Wales, Australia) ,  Fardell, Joanna E. (UNSW Medicine, UNSW, Sydney, New South Wales, Australia)

Abstract AI-Helper 아이콘AI-Helper

AbstractBackgroundPhysical activity and aerobic fitness are modifiable risk factors for cardiovascular disease (CVD) after childhood cancer. How survivors engage in physical activity remains unclear, potentially increasing CVD risk. We assessed survivors’ physical activity levels, barriers and...

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참고문헌 (50)

  1. Smith MA , Seibel NL , Altekruse SF , et?al. Outcomes for children and adolescents with cancer: challenges for the twenty‐first century . J Clin Oncol . 2010 ; 28 ( 15 ): 2625 ‐ 2634 . 

  2. Bhakta N , Liu Q , Ness KK , et?al. The cumulative burden of surviving childhood cancer: an initial report from the St Jude Lifetime Cohort Study (SJLIFE) . Lancet . 2017 ; 390 ( 10112 ): 2569 ‐ 2582 . 

  3. Mertens AC , Yasui Y , Neglia JP , et?al. Late mortality experience in five‐year survivors of childhood and adolescent cancer: the Childhood Cancer Survivor Study . J Clin Oncol . 2001 ; 19 ( 13 ): 3163 ‐ 3172 . 

  4. Chow EJ , Chen Y , Kremer LC , et?al. Individual prediction of heart failure among childhood cancer survivors . J Clin Oncol . 2015 ; 33 ( 5 ): 394 ‐ 402 . 

  5. Baker JL , Olsen LW , Sørensen TIA . Childhood body‐mass index and the risk of coronary heart disease in adulthood . N Engl J Med . 2007 ; 357 ( 23 ): 2329 ‐ 2337 . 

  6. Ness KK , DeLany JP , Kaste SC , et?al. Energy balance and fitness in adult survivors of childhood acute lymphoblastic leukemia . Blood . 2015 ; 125 ( 22 ): 3411 ‐ 3419 . 

  7. De Caro E , Smeraldi A , Trocchio G , et?al. Subclinical cardiac dysfunction and exercise performance in childhood cancer survivors . Pediatr Blood Cancer . 2011 ; 56 ( 1 ): 122 ‐ 126 . 

  8. Tonorezos ES , Snell PG , Moskowitz CS , et?al. Reduced cardiorespiratory fitness in adult survivors of childhood acute lymphoblastic leukemia . Pediatr Blood Cancer . 2013 ; 60 ( 8 ): 1358 ‐ 1364 . 

  9. Kodama S , Saito K , Tanaka S , et?al. Cardiorespiratory fitness as a quantitative predictor of all‐cause mortality and cardiovascular events in healthy men and women: a meta‐analysis . JAMA . 2009 ; 301 ( 19 ): 2024 ‐ 2035 . 

  10. Warburton DER , Nicol CW , Bredin SSD . Health benefits of physical activity: the evidence . Can Med Assoc J . 2006 ; 174 ( 6 ): 801 ‐ 809 . 

  11. Mizrahi D , Fardell JE , Wakefield CE , et?al. How physically active do Australian and New Zealander childhood cancer survivors perceive themselves? A report from the ANZCHOG survivorship study . Complement Ther Med . 2019 ; 44 : 196 ‐ 203 . 

  12. Nottage KA , Ness KK , Li C , et?al. Metabolic syndrome and cardiovascular risk among long‐term survivors of acute lymphoblastic leukaemia: from the St. Jude Lifetime Cohort . Br J Haematol . 2014 ; 165 ( 3 ): 364 ‐ 374 . 

  13. Trost SG , Loprinzi PD . Exercise—promoting healthy lifestyles in children and adolescents . J Clin Lipidol . 2008 ; 2 ( 3 ): 162 ‐ 168 . 

  14. Tyc VL , Hadley W , Crockett G . Prediction of health behaviors in pediatric cancer survivors . Med Pediatr Oncol . 2001 ; 37 ( 1 ): 42 ‐ 46 . 

  15. Speck RM , Courneya KS , Mâsse LC , et?al. An update of controlled physical activity trials in cancer survivors: a systematic review and meta‐analysis . J Cancer Surviv . 2010 ; 4 ( 2 ): 87 ‐ 100 . 

  16. Demark‐Wahnefried W , Aziz NM , Rowland JH , et?al. Riding the crest of the teachable moment: promoting long‐term health after the diagnosis of cancer . J Clin Oncol . 2005 ; 23 ( 24 ): 5814 ‐ 5830 . 

  17. Lucia A , Earnest C , Perez M . Cancer‐related fatigue: can exercise physiology assist oncologists . Lancet Oncol . 2003 ; 4 ( 10 ): 616 ‐ 625 . 

  18. Mizrahi D , Wakefield CE , Ha L , et?al. Satisfaction with an exercise physiology consultation after treatment for childhood cancer: an opportunity for healthy lifestyle education . Heart Mind. 2019 ; 3 ( 3 ): 77 ‐ 106 . 

  19. Prochaska JO , Velicer WF . The transtheoretical model of health behavior change . Am J Health Promot . 1997 ; 12 ( 1 ): 38 ‐ 48 . 

  20. Godin G , Shephard R . Godin leisure‐time exercise questionnaire . Med Sci Sports Exerc . 1997 ; 29 ( 6 ): 36 ‐ 38 . 

  21. Sallis JF , Buono MJ , Roby JJ , et?al. Seven‐day recall and other physical activity self‐reports in children and adolescents . Med Sci Sports Exerc . 1993 ; 25 ( 1 ): 99 ‐ 108 . 

  22. Paxton RJ , Jones LW , Rosoff PM , et?al. Associations between leisure‐time physical activity and health‐related quality of life among adolescent and adult survivors of childhood cancers . Psychooncology . 2010 ; 19 ( 9 ): 997 ‐ 1003 . 

  23. Arroyave WD , Clipp EC , Miller PE , et?al. Childhood cancer survivors' perceived barriers to improving exercise and dietary behaviors . Oncol Nurs Forum . 2008 ; 35 ( 1 ): 121 ‐ 130 . 

  24. Norman GJ , Sallis JF , Gaskins R . Comparability and reliability of paper‐ and computer‐based measures of psychosocial constructs for adolescent physical activity and sedentary behaviors . Res Q Exerc Sport . 2005 ; 76 ( 3 ): 315 ‐ 323 . 

  25. Patrick K , Sallis JF , Prochaska JJ , et?al. A multicomponent program for nutrition and physical activity change in primary care: PACE+ for adolescents . Arch Pediatr Adolesc Med . 2001 ; 155 ( 8 ): 940 ‐ 946 . 

  26. American Thoracic Society . ATS statement: guidelines for the six‐minute walk test . Am J Respir Crit Care Med . 2002 ; 166 ( 1 ): 111 ‐ 117 . 

  27. Borg GA . Psychophysical bases of perceived exertion . Med Sci Sports Exercise . 1982 ; 14 ( 5 ): 377 ‐ 381 . 

  28. Ulrich S , Hildenbrand FF , Treder U , et?al. Reference values for the 6‐minute walk test in healthy children and adolescents in Switzerland . BMC Pulm Med . 2013 ; 13 ( 1 ): 49 . 

  29. Mizrahi D , Fardell JE , Cohn RJ , et?al. The 6‐minute walk test is a good predictor of cardiorespiratory fitness in childhood cancer survivors when access to comprehensive testing is limited . Int J Cancer . 2019 . https://doi.org/10.1002/ijc.32819 

  30. Bongers BC , van Brussel M , Hulzebos HJ , Takken T . Pediatric Norms for Cardiopulmonary Exercise Testing . 's-Hertogenbosch : Uitgeverij BOXPress ; 2012 . 

  31. Eisenmann JC , Laurson KR , Welk GJ . Aerobic fitness percentiles for U.S. adolescents . Am J Prev Med . 2011 ; 41 ( 4 ): S106 ‐ S110 . 

  32. Miller RM , Chambers TL, Burns SP, et?al. Validating InBody® 570 multi‐frequency bioelectrical impedance analyzer versus DXA for body fat percentage analysis . Med Sci Sports Exercise . 2016 ; 48 ( 5 Suppl 1 ): 991 . 

  33. Kazak AE , Hocking MC , Ittenbach RF , et?al. A revision of the intensity of treatment rating scale: classifying the intensity of pediatric cancer treatment . Pediatr Blood Cancer . 2012 ; 59 ( 1 ): 96 ‐ 99 . 

  34. Psycho‐oncology Co‐operative Research Group . ARIA Lookup Tool User Guide . Sydney : The University of Sydney 2012 . 

  35. The Department of Health, Australian Government. Australia's Physical Activity and Sedentary Behaviour Guidelines . Sydney : The Department of Health, Australian Government ; 2017 . 

  36. Ruiz JR , Redondo TV , Ortega FB , et?al. Cardiorespiratory fitness cut points to avoid cardiovascular disease risk in children and adolescents; what level of fitness should raise a red flag? A systematic review and meta‐analysis . Br J Sports Med . 2016 ; 50 ( 23 ): 1451 ‐ 1458 . 

  37. Berkman AM , Lakoski SG . A review of cardiorespiratory fitness in adolescent and young adult survivors of childhood cancer: factors that affect its decline and opportunities for intervention . J Adolesc Young Adult Oncol . 2016 ; 5 ( 1 ): 8 ‐ 15 . 

  38. Long TM , Rath SR , Wallman KE , et?al. Exercise training improves vascular function and secondary health measures in survivors of pediatric oncology related cerebral insult . PLoS One . 2018 ; 13 ( 8 ): e0201449 . 

  39. Clifford BK , Mizrahi D , Sandler CX , et?al. Barriers and facilitators of exercise experienced by cancer survivors: a mixed methods systematic review . Support Care Cancer . 2018 ; 26 ( 3 ): 685 ‐ 700 . 

  40. Mizrahi D , Naumann F , Broderick C , et?al. Quantifying physical activity and the associated barriers for women with ovarian cancer . Int J Gynecol Cancer . 2015 ; 25 ( 4 ): 577 ‐ 583 . 

  41. Cramp F , Byron‐Daniel J . Exercise for the management of cancer‐related fatigue in adults . Cochrane Database Syst Rev . 2012 ; 11 : CD006145 . 

  42. Tergerson JL , King KA . Do perceived cues, benefits, and barriers to physical activity differ between male and female adolescents? J Sch Health . 2002 ; 72 ( 9 ): 374 ‐ 380 . 

  43. Ahlport KN , Linnan L , Vaughn A , et?al. Barriers to and facilitators of walking and bicycling to school: formative results from the non‐motorized travel study . Health Educ Behav . 2008 ; 35 ( 2 ): 221 ‐ 244 . 

  44. Lotan M , Merrick J , Carmeli E . Physical activity in adolescence. A review with clinical suggestions . Int J Adolesc Med Health . 2005 ; 17 ( 1 ): 13 ‐ 21 . 

  45. Marcell TJ . Review article: sarcopenia: causes, consequences, and preventions . J Gerontol A Biol Sci Med Sci . 2003 ; 58 ( 10 ): M911 ‐ M916 . 

  46. Boman KK , Hörnquist L , De Graaff L , et?al. Disability, body image and sports/physical activity in adult survivors of childhood CNS tumors: population‐based outcomes from a cohort study . J Neurooncol . 2013 ; 112 ( 1 ): 99 ‐ 106 . 

  47. Garmey EG , Liu Q , Sklar CA , et?al. Longitudinal changes in obesity and body mass index among adult survivors of childhood acute lymphoblastic leukemia: a report from the childhood cancer survivor study . J Clin Oncol . 2008 ; 26 ( 28 ): 4639 ‐ 4645 . 

  48. Aggio D , Ogunleye AA , Voss C , et?al. Temporal relationships between screen‐time and physical activity with cardiorespiratory fitness in English schoolchildren: a 2‐year longitudinal study . Prev Med . 2012 ; 55 ( 1 ): 37 ‐ 39 . 

  49. Schmid D , Leitzmann MF . Cardiorespiratory fitness as predictor of cancer mortality: a systematic review and meta‐analysis . Ann Oncol . 2015 ; 26 ( 2 ): 272 ‐ 278 . 

  50. Holland AE , Spruit MA , Troosters T , et?al. An official European Respiratory Society/American Thoracic Society technical standard: field walking tests in chronic respiratory disease . Eur Respir J . 2014 ; 44 ( 6 ): 1428 ‐ 1446 . 

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