OBJECTIVE: Sport massage, a manual therapy for muscle and soft tissue pain and weakness, is a popular and widely used modality for recovery after intense exercise. Our objective is to determine the effectiveness of sport massage for improving recovery after strenuous exercise. DATA SOURCES: We searched MEDLINE, EMBASE, and CINAHL using all current and historical names for sport massage. Reference sections of included articles were scanned to identify additional relevant articles. STUDY SELECTION: Study inclusion criteria required that subjects (1) were humans, (2) performed strenuous exercise, (3) received massage, and (4) were assessed for muscle recovery and performance. Ultimately, 27 studies met inclusion criteria. DATA EXTRACTION: Eligible studies were reviewed, and data were extracted by the senior author (TMB). The main outcomes extracted were type and timing of massage and outcome measures studied. DATA SYNTHESIS: Data from 17 case series revealed inconsistent results. Most studies evaluating post-exercise function suggest that massage is not effective, whereas studies that also evaluated the symptoms of DOMS did show some benefit. Data from 10 randomized controlled trials (RCTs) do, however, provide moderate evidence for the efficacy of massage therapy. The search identified no trend between type and timing of massage and any specific outcome measures investigated. CONCLUSIONS: Case series provide little support for the use of massage to aid muscle recovery or performance after intense exercise. In contrast, RCTs provide moderate data supporting its use to facilitate recovery from repetitive muscular contractions. Further investigation using standardized protocols measuring similar outcome variables is necessary to more conclusively determine the efficacy of sport massage and the optimal strategy for its implementation to enhance recovery following intense exercise.
OBJECTIVE: Sport massage, a manual therapy for muscle and soft tissue pain and weakness, is a popular and widely used modality for recovery after intense exercise. Our objective is to determine the effectiveness of sport massage for improving recovery after strenuous exercise. DATA SOURCES: We searched MEDLINE, EMBASE, and CINAHL using all current and historical names for sport massage. Reference sections of included articles were scanned to identify additional relevant articles. STUDY SELECTION: Study inclusion criteria required that subjects (1) were humans, (2) performed strenuous exercise, (3) received massage, and (4) were assessed for muscle recovery and performance. Ultimately, 27 studies met inclusion criteria. DATA EXTRACTION: Eligible studies were reviewed, and data were extracted by the senior author (TMB). The main outcomes extracted were type and timing of massage and outcome measures studied. DATA SYNTHESIS: Data from 17 case series revealed inconsistent results. Most studies evaluating post-exercise function suggest that massage is not effective, whereas studies that also evaluated the symptoms of DOMS did show some benefit. Data from 10 randomized controlled trials (RCTs) do, however, provide moderate evidence for the efficacy of massage therapy. The search identified no trend between type and timing of massage and any specific outcome measures investigated. CONCLUSIONS: Case series provide little support for the use of massage to aid muscle recovery or performance after intense exercise. In contrast, RCTs provide moderate data supporting its use to facilitate recovery from repetitive muscular contractions. Further investigation using standardized protocols measuring similar outcome variables is necessary to more conclusively determine the efficacy of sport massage and the optimal strategy for its implementation to enhance recovery following intense exercise.
Authors: Wigand Poppendieck; Melissa Wegmann; Alexander Ferrauti; Michael Kellmann; Mark Pfeiffer; Tim Meyer Journal: Sports Med Date: 2016-02 Impact factor: 11.136
Authors: Kenneth Jay; Emil Sundstrup; Stine D Søndergaard; David Behm; Mikkel Brandt; Charlotte A Særvoll; Markus D Jakobsen; Lars L Andersen Journal: Int J Sports Phys Ther Date: 2014-02
Authors: Qian Wang; Hansong Zeng; Thomas M Best; Caroline Haas; Ned T Heffner; Sudha Agarwal; Yi Zhao Journal: Ann Biomed Eng Date: 2013-08-14 Impact factor: 3.934
Authors: Douglas W Van Pelt; Marcus M Lawrence; Benjamin F Miller; Timothy A Butterfield; Esther E Dupont-Versteegden Journal: Exerc Sport Sci Rev Date: 2021-04-01 Impact factor: 6.230