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Physiotherapy Theory and Practice
An International Journal of Physical Therapy
Volume 38, 2022 - Issue 1
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Research Report

Resistance training using different elastic components offers similar gains on muscle strength to weight machine equipment in Individuals with COPD: A randomized controlled trial

, PhD, PTORCID Icon, , PhD, PT, , MSc, PTORCID Icon, , MSc, PT, , MSc, PT, , PhD, , PhD, PTORCID Icon & , PhD, PTORCID Icon show all
Pages 14-27 | Received 23 Jan 2019, Accepted 12 Dec 2019, Published online: 24 Jan 2020

References

  • Alison JA, McKeough ZJ 2014 Pulmonary rehabilitation for COPD: Are programs with minimal exercise equipment effective? Journal of Thoracic Disease.6: 1606–1614.
  • American Physical Therapy Association 1999 Theraband. https://www.theraband.com/international-instructions.
  • Andersen LL, Andersen CH, Mortensen OS, Poulsen OM, Bjornlund IB, Zebis MK 2010 Muscle activation and perceived loading during rehabilitation exercises: Comparison of dumbbells and elastic resistance. Physical Therapy.90: 538–549.
  • Andersen LL, Vinstrup J, Jakobsen MD, Sundstrup E 2017 Validity and reliability of elastic resistance bands for measuring shoulder muscle strength. Scandinavian Journal of Medicine and Science in Sports.27: 887–894.
  • ATS Committee on Proficiency Standards for Clinical Pulmonary Function Laboratories 2002 ATS statement: Guidelines for the six-minute walk test. American Journal of Respiratory and Critical Care Medicine 166: 111–117.
  • Barreiro E, Gea J 2015 Respiratory and limb muscle dysfunction in COPD. COPD.12: 413–426.
  • Berry MJ, Sheilds KL, Adair NE 2018 Comparison of effects of endurance and strength training programs in patients with COPD. COPD.15: 192–199.
  • Bertolini GN, Leite MR, de Carvalho LC Junior, Freire AP, Lima FF, Silva BS, Pastre CM, Ramos EM 2016 Effects of a home-based exercise program after supervised resistance training in patients with chronic obstructive pulmonary disease. Medicina.49: 331–337.
  • Brooks D, Sottana R, Bell B, Hanna M, Laframboise L, Selvanayagarajah S, Goldstein R 2007 Characterization of pulmonary rehabilitation programs in Canada in 2005. Canadian Respiratory Journal.14: 87–92.
  • Casaburi R, Bhasin S, Cosentino L, Porszasz J, Somfay A, Lewis MI, Fournier M, Storer TW 2004 Effects of testosterone and resistance training in men with chronic obstructive pulmonary disease. American Journal of Respiratory and Critical Care Medicine.170: 870–878.
  • Chen Y, Niu M, Zhang X, Qian H, Xie A, Wang X 2018 Effects of home-based lower limb resistance training on muscle strength and functional status in stable Chronic obstructive pulmonary disease patients. Journal of Clinical Nursing.27: e1022–e1037.
  • Cohen J 1988 Statistical Power Analysis for the Behavioral Sciences. Hilsdale: New Jersey, Lauwrence Erlbaum Associates Publisher.
  • de Sousa Pinto JM, Martin-Nogueras AM, Calvo-Arenillas JI, Ramos-Gonzalez J 2014 Clinical benefits of home-based pulmonary rehabilitation in patients with chronic obstructive pulmonary disease. Journal of Cardiopulmonary Rehabilitation and Prevention.34: 355–359.
  • Dodd JW, Hogg L, Nolan J, Jefford H, Grant A, Lord VM, Falzon C, Garrod R, Lee C, Polkey MI, et al. 2011 The COPD assessment test (CAT): Response to pulmonary rehabilitation. A multicentre, prospective study. Thorax 66: 425–429.
  • Duarte AA, Pereira CA, Rodrigues SC 2007 Validation of new brazilian predicted values for forced spirometry in caucasians and comparison with predicted values obtained using other reference equations. Jornal Brasileiro De Pneumologia.33: 527–535.
  • Franssen FM, Broekhuizen R, Janssen PP, Wouters EF, Schols AM 2004 Effects of whole-body exercise training on body composition and functional capacity in normal-weight patients with COPD. Chest.125: 2021–2028.
  • Garvey C, Bayles MP, Hamm LF, Hill K, Holland A, Limberg TM, Spruit MA 2016 Pulmonary rehabilitation exercise prescription in chronic obstructive pulmonary disease: Review of selected guidelines: An official statement from the American Association of Cardiovascular and Pulmonary Rehabilitation. Journal of Cardiopulmonary Rehabilitation and Prevention.36: 75–83.
  • Hernandes NA, de Castro Teixeira D, Probst VS, Brunetto AF, Ramos EM, Pitta F 2009 Profile of the level of physical activity in the daily lives of patients with COPD in Brazil. Jornal Brasileiro De Pneumologia.35: 949–956.
  • Holland AE, Spruit MA, Troosters T, Puhan MA, Pepin V, Saey D, McCormack MC, Carlin BW, Sciurba FC, Pitta F, et al. 2014 An official European Respiratory Society/American Thoracic Society technical standard: Field walking tests in chronic respiratory disease. European Respiratory Journal 44: 1428–1446.
  • Iepsen UW, Munch GD, Rugbjerg M, Rinnov AR, Zacho M, Mortensen SP, Secher NH, Ringbaek T, Pedersen BK, Hellsten Y, et al. 2016 Effect of endurance versus resistance training on quadriceps muscle dysfunction in COPD: A pilot study. International Journal of Chronic Obstructive Pulmonary Disease 11: 2659–2669.
  • Jaitovich A, Barreiro E 2018 Skeletal muscle dysfunction in chronic obstructive pulmonary disease (COPD): What we know and can do for our patients. American Journal of Respiratory and Critical Care Medicine.198: 175–186.
  • Jones PW, Harding G, Berry P, Wiklund I, Chen WH, Kline Leidy N 2009 Development and first validation of the COPD Assessment Test. European Respiratory Journal.34: 648–654.
  • Jones PW, Tabberer M, Chen WH 2011 Creating scenarios of the impact of COPD and their relationship to COPD Assessment Test (CAT) scores. BMC Pulmonary Medicine.11: 42.
  • Kon SS, Canavan JL, Jones SE, Nolan CM, Clark AL, Dickson MJ, Haselden BM, Polkey MI, Man WD 2014 Minimum clinically important difference for the COPD Assessment Test: A prospective analysis. Lancet. Respiratory Medicine.2: 195–203.
  • Liao WH, Chen JW, Chen X, Lin L, Yan HY, Zhou YQ, Chen R 2015 Impact of resistance training in subjects with COPD: A systematic review and meta-analysis. Respiratory Care.60: 1130–1145.
  • Lima FF, Camillo CA, Gobbo LA, Trevisan IB, Nascimento W, Silva BS, Lima MC, Ramos D, Ramos EM 2018 Resistance training using low cost elastic tubing is equally effective to conventional weight machines in middle-aged to older healthy adults: A quasi-randomized controlled clinical trial. Journal of Sports Science and Medicine.17: 153–160.
  • Lima FF, Camillo CA, Reis E, Job AE, Silva BS, Topalovic M, Ramos D, Ramos EM 2019 Mechanical properties, safety and resistance values of Lemgruber ((R)) elastic tubing. Brazilian Journal of Physical Therapy.23: 41–47.
  • Lima FF, Freire AP, Silva B, Manfrim P, Previatto M, Gomes P, Lourenço J, Zandonadi F, Ramos D, Gobbo L, et al. 2016 Effects of resistance training using elastic tube or bands on muscle function and body composition in COPD subjects. European Respiratory Journal 48 (Suppl 60): PA542.
  • Malavolti M, Mussi C, Poli M, Fantuzzi AL, Salvioli G, Battistini N, Bedogni G 2003 Cross-calibration of eight-polar bioelectrical impedance analysis versus dual-energy X-ray absorptiometry for the assessment of total and appendicular body composition in healthy subjects aged 21-82 years. Annals of Human Biology.30: 380–391.
  • Maltais F, Decramer M, Casaburi R, Barreiro E, Burelle Y, Debigare R, Dekhuijzen PN, Franssen F, Gayan-Ramirez G, Gea J, et al. 2014 An official American Thoracic Society/European Respiratory Society statement: Update on limb muscle dysfunction in chronic obstructive pulmonary disease. American Journal of Respiratory and Critical Care Medicine 189: e15–62.
  • Melchiorri G, Rainoldi A 2011 Muscle fatigue induced by two different resistances: Elastic tubing versus weight machines. Journal of Electromyography and Kinesiology.21: 954–959.
  • Miller MR, Hankinson J, Brusasco V, Burgos F, Casaburi R, Coates A, Crapo R, Enright P, van der Grinten CP, Gustafsson P, et al. 2005 Standardisation of spirometry. European Respiratory Journal 26: 319–338.
  • Monteiro F, Camillo CA, Vitorasso R, Sant’Anna T, Hernandes NA, Probst VS, Pitta F 2012 Obesity and physical activity in the daily life of patients with COPD. Lung.190: 403–410.
  • Murray CJ, Lopez AD 1997 Alternative projections of mortality and disability by cause 1990-2020: Global burden of disease study. Lancet.349: 1498–1504.
  • Nyberg A, Carvalho J, Bui K-L, Saey D, Maltais F 2016 Adaptations in limb muscle function following pulmonary rehabilitation in patients with COPD – A review. Revista Portuguesa De Pneumologia.22: 342–350.
  • Nyberg A, Lindstrom B, Rickenlund A, Wadell K 2015 Low-load/high-repetition elastic band resistance training in patients with COPD: A randomized, controlled, multicenter trial. Clinical Respiratory Journal.9: 278–288.
  • O’Shea SD, Taylor NF, Paratz JD 2007 A predominantly home-based progressive resistance exercise program increases knee extensor strength in the short-term in people with chronic obstructive pulmonary disease: A randomised controlled trial. Australian Journal of Physiotherapy.53: 229–237.
  • Persch LN, Ugrinowitsch C, Pereira G, Rodacki AL 2009 Strength training improves fall-related gait kinematics in the elderly: A randomized controlled trial. Clinical Biomechanics.24: 819–825.
  • Pitta F, Breyer MK, Hernandes NA, Teixeira D, Sant’Anna TJ, Fontana AD, Probst VS, Brunetto AF, Spruit MA, Wouters EF, et al. 2009 Comparison of daily physical activity between COPD patients from Central Europe and South America. Respiratory Medicine 103: 421–426.
  • Pitta F, Troosters T, Probst VS, Langer D, Decramer M, Gosselink R 2008 Are patients with COPD more active after pulmonary rehabilitation? Chest.134: 273–280.
  • Pitta F, Troosters T, Spruit MA, Probst VS, Decramer M, Gosselink R 2005 Characteristics of physical activities in daily life in chronic obstructive pulmonary disease. American Journal of Respiratory and Critical Care Medicine.171: 972–977.
  • Probst VS, Kovelis D, Hernandes NA, Camillo CA, Cavalheri V, Pitta F 2011 Effects of 2 exercise training programs on physical activity in daily life in patients with COPD. Respiratory Care.56: 1799–1807.
  • Ramos EM, de Toledo-arruda AC, Fosco LC, Bonfim R, Bertolini GN, Guarnier FA, Cecchini R, Pastre CM, Langer D, Gosselink R, et al. 2014 The effects of elastic tubing-based resistance training compared with conventional resistance training in patients with moderate chronic obstructive pulmonary disease: A randomized clinical trial. Clinical Rehabilitation 28: 1096–1106.
  • Ricci-Vitor AL, Bonfim R, Fosco LC, Bertolini GN, Ramos EM, Ramos D, Pastre CM, Godoy M, Vanderlei LC 2013 Influence of the resistance training on heart rate variability, functional capacity and muscle strength in the chronic obstructive pulmonary disease. European Journal of Physical and Rehabilitation Medicine.49: 793–801.
  • Sillen MJ, Franssen FM, Vaes AW, Delbressine JM, Wouters EF, Spruit MA 2014 Metabolic load during strength training or NMES in individuals with COPD: Results from the DICES trial. BMC Pulmonary Medicine.14: 146.
  • Silva BS, Gobbo LA, Freire AP, Trevisan IB, Silva IG, Ramos EM 2016 Effects of a resistance training with elastic tubing in strength, quality of life and dypsnea in patients with chronic obstructive pulmonary disease. Journal of Physical Education.27: e2722.
  • Spruit MA, Singh SJ, Garvey C, ZuWallack R, Nici L, Rochester C, Hill K, Holland AE, Lareau SC, Man WD, et al. 2013 An official American Thoracic Society/European Respiratory Society statement: Key concepts and advances in pulmonary rehabilitation. American Journal of Respiratory and Critical Care Medicine 188: e13–64.
  • Spruit MA, Wouters EF 2007 New modalities of pulmonary rehabilitation in patients with chronic obstructive pulmonary disease. Sports Medicine.37: 501–518.
  • Travassos A, Rodrigues A, Furlanetto KC, Donaria L, Bisca GW, Nellessen AG, Pitta F, Hernandes NA 2017 Fat-free mass depletion in patients with COPD in Brazil: Development of a new cutoff point and its relation with mortality and extrapulmonary manifestations. European Journal of Clinical Nutrition.71: 1285–1290.
  • Turner L, Shamseer L, Altman DG, Weeks L, Peters J, Kober T, Dias S, Schulz KF, Plint AC, Moher D 2012 Consolidated standards of reporting trials (CONSORT) and the completeness of reporting of randomised controlled trials (RCTs) published in medical journals. Cochrane Database of Systematic Reviews.11: MR000030.
  • Uchida MC, Nishida MM, Sampaio RA, Moritani T, Arai H 2016 Thera-band((R)) elastic band tension: Reference values for physical activity. Journal of Physical Therapy Science.28: 1266–1271.
  • Vogelmeier CF, Criner GJ, Martinez FJ, Anzueto A, Barnes PJ, Bourbeau J, Celli BR, Chen R, Decramer M, Fabbri LM, et al. 2017 Global strategy for the diagnosis, management, and prevention of chronic obstructive lung disease 2017 report: GOLD executive summary. Archivos de Bronconeumologia 53: 128–149.
  • Vogiatzis I 2011 Strategies of muscle training in very severe COPD patients. European Respiratory Journal.38: 971–975.
  • Wadell K, Janaudis Ferreira T, Arne M, Lisspers K, Stallberg B, Emtner M 2013 Hospital-based pulmonary rehabilitation in patients with COPD in Sweden - A national survey. Respiratory Medicine.107: 1195–1200.
  • White IR, Horton NJ, Carpenter J, Pocock SJ 2011 Strategy for intention to treat analysis in randomised trials with missing outcome data. BMJ.342: d40.
  • Yohannes AM, Connolly MJ 2004 Pulmonary rehabilitation programmes in the UK: A national representative survey. Clinical Rehabilitation.18: 444–449.

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