Literature DB >> 31476271

Flexibility exercise training for adults with fibromyalgia.

Soo Y Kim1, Angela J Busch, Tom J Overend, Candice L Schachter, Ina van der Spuy, Catherine Boden, Suelen M Góes, Heather Ja Foulds, Julia Bidonde.   

Abstract

BACKGROUND: Exercise training is commonly recommended for adults with fibromyalgia. We defined flexibility exercise training programs as those involving movements of a joint or a series of joints, through complete range of motion, thus targeting major muscle-tendon units. This review is one of a series of reviews updating the first review published in 2002.
OBJECTIVES: To evaluate the benefits and harms of flexibility exercise training in adults with fibromyalgia. SEARCH
METHODS: We searched the Cochrane Library, MEDLINE, Embase, CINAHL (Cumulative Index to Nursing and Allied Health Literature), PEDro (Physiotherapy Evidence Database), Thesis and Dissertation Abstracts, AMED (Allied and Complementary Medicine Database), the World Health Organization International Clinical Trials Registry Platform (WHO ICTRP), and ClinicalTrials.gov up to December 2017, unrestricted by language, and we reviewed the reference lists of retrieved trials to identify potentially relevant trials. SELECTION CRITERIA: We included randomized trials (RCTs) including adults diagnosed with fibromyalgia based on published criteria. Major outcomes were health-related quality of life (HRQoL), pain intensity, stiffness, fatigue, physical function, trial withdrawals, and adverse events. DATA COLLECTION AND ANALYSIS: Two review authors independently selected articles for inclusion, extracted data, performed 'Risk of bias' assessments, and assessed the certainty of the body of evidence for major outcomes using the GRADE approach. All discrepancies were rechecked, and consensus was achieved by discussion. MAIN
RESULTS: We included 12 RCTs (743 people). Among these RCTs, flexibility exercise training was compared to an untreated control group, land-based aerobic training, resistance training, or other interventions (i.e. Tai Chi, Pilates, aquatic biodanza, friction massage, medications). Studies were at risk of selection, performance, and detection bias (due to lack of adequate randomization and allocation concealment, lack of participant or personnel blinding, and lack of blinding for self-reported outcomes). With the exception of withdrawals and adverse events, major outcomes were self-reported and were expressed on a 0-to-100 scale (lower values are best, negative mean differences (MDs) indicate improvement). We prioritized the findings of flexibility exercise training compared to land-based aerobic training and present them fully here.Very low-certainty evidence showed that compared with land-based aerobic training, flexibility exercise training (five trials with 266 participants) provides no clinically important benefits with regard to HRQoL, pain intensity, fatigue, stiffness, and physical function. Low-certainty evidence showed no difference between these groups for withdrawals at completion of the intervention (8 to 20 weeks).Mean HRQoL assessed on the Fibromyalgia Impact Questionnaire (FIQ) Total scale (0 to 100, higher scores indicating worse HRQoL) was 46 mm and 42 mm in the flexibility and aerobic groups, respectively (2 studies, 193 participants); absolute change was 4% worse (6% better to 14% worse), and relative change was 7.5% worse (10.5% better to 25.5% worse) in the flexibility group. Mean pain was 57 mm and 52 mm in the flexibility and aerobic groups, respectively (5 studies, 266 participants); absolute change was 5% worse (1% better to 11% worse), and relative change was 6.7% worse (2% better to 15.4% worse). Mean fatigue was 67 mm and 71 mm in the aerobic and flexibility groups, respectively (2 studies, 75 participants); absolute change was 4% better (13% better to 5% worse), and relative change was 6% better (19.4% better to 7.4% worse). Mean physical function was 23 points and 17 points in the flexibility and aerobic groups, respectively (1 study, 60 participants); absolute change was 6% worse (4% better to 16% worse), and relative change was 14% worse (9.1% better to 37.1% worse). We found very low-certainty evidence of an effect for stiffness. Mean stiffness was 49 mm to 79 mm in the flexibility and aerobic groups, respectively (1 study, 15 participants); absolute change was 30% better (8% better to 51% better), and relative change was 39% better (10% better to 68% better). We found no evidence of an effect in all-cause withdrawal between the flexibility and aerobic groups (5 studies, 301 participants). Absolute change was 1% fewer withdrawals in the flexibility group (8% fewer to 21% more), and relative change in the flexibility group compared to the aerobic training intervention group was 3% fewer (39% fewer to 55% more). It is uncertain whether flexibility leads to long-term effects (36 weeks after a 12-week intervention), as the evidence was of low certainty and was derived from a single trial.Very low-certainty evidence indicates uncertainty in the risk of adverse events for flexibility exercise training. One adverse effect was described among the 132 participants allocated to flexibility training. One participant had tendinitis of the Achilles tendon (McCain 1988), but it is unclear if the tendinitis was a pre-existing condition. AUTHORS'
CONCLUSIONS: When compared with aerobic training, it is uncertain whether flexibility improves outcomes such as HRQoL, pain intensity, fatigue, stiffness, and physical function, as the certainty of the evidence is very low. Flexibility exercise training may lead to little or no difference for all-cause withdrawals. It is also uncertain whether flexibility exercise training has long-term effects due to the very low certainty of the evidence. We downgraded the evidence owing to the small number of trials and participants across trials, as well as due to issues related to unclear and high risk of bias (selection, performance, and detection biases). While flexibility exercise training appears to be well tolerated (similar withdrawal rates across groups), evidence on adverse events was scarce, therefore its safety is uncertain.

Entities:  

Mesh:

Year:  2019        PMID: 31476271      PMCID: PMC6718217          DOI: 10.1002/14651858.CD013419

Source DB:  PubMed          Journal:  Cochrane Database Syst Rev        ISSN: 1361-6137


  126 in total

1.  [Effects of a self-help program including stretching exercise on symptom reduction in patients with fibromyalgia].

Authors:  S S Han
Journal:  Taehan Kanho       Date:  1998 Jan-Feb

Review 2.  Physical therapy in the treatment of fibromyalgia.

Authors:  M Offenbächer; G Stucki
Journal:  Scand J Rheumatol Suppl       Date:  2000

3.  Passive versus active stretching of hip flexor muscles in subjects with limited hip extension: a randomized clinical trial.

Authors:  Michael V Winters; Charles G Blake; Jennifer S Trost; Toni B Marcello-Brinker; Lynne M Lowe; Matthew B Garber; Robert S Wainner
Journal:  Phys Ther       Date:  2004-09

Review 4.  Neural aspects of muscle stretching.

Authors:  Nathalie Guissard; Jacques Duchateau
Journal:  Exerc Sport Sci Rev       Date:  2006-10       Impact factor: 6.230

5.  Treating fibromyalgia with a brief interdisciplinary program: initial outcomes and predictors of response.

Authors:  L M Worrel; L E Krahn; C D Sletten; G R Pond
Journal:  Mayo Clin Proc       Date:  2001-04       Impact factor: 7.616

6.  A controlled study of the effects of a supervised cardiovascular fitness training program on the manifestations of primary fibromyalgia.

Authors:  G A McCain; D A Bell; F M Mai; P D Halliday
Journal:  Arthritis Rheum       Date:  1988-09

7.  Effects on physical performance and pain from three dynamic training programs for women with work-related trapezius myalgia.

Authors:  C Ahlgren; K Waling; F Kadi; M Djupsjöbacka; L E Thornell; G Sundelin
Journal:  J Rehabil Med       Date:  2001-07       Impact factor: 2.912

8.  The fibromyalgia impact questionnaire: development and validation.

Authors:  C S Burckhardt; S R Clark; R M Bennett
Journal:  J Rheumatol       Date:  1991-05       Impact factor: 4.666

Review 9.  Exercise for treating fibromyalgia syndrome.

Authors:  A J Busch; K A R Barber; T J Overend; P M J Peloso; C L Schachter
Journal:  Cochrane Database Syst Rev       Date:  2007-10-17

10.  A comprehensive evaluation of standardized assessment tools in the diagnosis of fibromyalgia and in the assessment of fibromyalgia severity.

Authors:  Chad S Boomershine
Journal:  Pain Res Treat       Date:  2011-10-10
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4.  Barriers and facilitators for clinical trial participation of underrepresented and non-underrepresented fibromyalgia patients: A cross-sectional internet survey.

Authors:  Alejandra Cardenas-Rojas; Kevin Pacheco-Barrios; Luis Castelo-Branco; Stefano Giannoni-Luza; Ana Balbuena-Pareja; Maria Alejandra Luna-Cuadros; Luna Vasconcelos Felippe; Elif Uygur-Kucukseymen; Paola Gonzalez-Mego; Muhammed Enes Gunduz; Emad Salman Shaikh; Anna Carolyna Lepesteur Gianlorenco; Felipe Fregni
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5.  Mixed exercise training for adults with fibromyalgia.

Authors:  Julia Bidonde; Angela J Busch; Candice L Schachter; Sandra C Webber; Kristin E Musselman; Tom J Overend; Suelen M Góes; Vanina Dal Bello-Haas; Catherine Boden
Journal:  Cochrane Database Syst Rev       Date:  2019-05-24

6.  How good is online information on fibromyalgia? An analysis of quality and readability of websites on fibromyalgia in Spanish.

Authors:  Arturo Alioshkin Cheneguin; Isabel Salvat Salvat; Helena Romay Barrero; María Torres Lacomba
Journal:  BMJ Open       Date:  2020-07-05       Impact factor: 2.692

7.  Individuals with fibromyalgia have a different gait pattern and a reduced walk functional capacity: a systematic review with meta-analysis.

Authors:  Elio Carrasco-Vega; María Ruiz-Muñoz; Antonio Cuesta-Vargas; Rita Pilar Romero-Galisteo; Manuel González-Sánchez
Journal:  PeerJ       Date:  2022-03-21       Impact factor: 2.984

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9.  Analysis of the Muscular Activity, Peak Torque in the Lower Limbs, and Static Balance after Virtual Rehabilitation in Women with Fibromyalgia: A Randomized Controlled Study.

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10.  Association of Therapies With Reduced Pain and Improved Quality of Life in Patients With Fibromyalgia: A Systematic Review and Meta-analysis.

Authors:  Rodrigo Oliveira Mascarenhas; Mateus Bastos Souza; Murilo Xavier Oliveira; Ana Cristina Lacerda; Vanessa Amaral Mendonça; Nicholas Henschke; Vinícius Cunha Oliveira
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