Body-Weight-Supported Treadmill Walking Training Improves Functional Walking and Balance in Stroke Survivors at Any Poststroke Stage: A Systematic Review
Erik Chumacero, James Yang, C. Roger James, Ming Wu
Abstract
Erik Chumacero, James Yang, C. Roger James, Ming Wu
Abstract
The objective of this systematic review was to investigate the effectiveness of body-weight-supported treadmill walking training (BWS-TWT) to improve functional walking and balance in any poststroke stage. Clinical studies where BWS-TWT was administered to stroke patients in any poststroke stage were considered. Pre- and a postintervention measurements of walking speed (WS), cadence, Berg balance scale (BBS), distance in the six-minute walking test (6minWT), and time in the timed-up-and-go test (TUGT) were analyzed. After performing BWS-TWT, acute patients increased WS by 16.6%, BBS score by 98.7%, and distance in the 6minWT by 42.3%. Subacute patients increased WS by 84%, cadence by 32.23%, and score in the BBS by 57.6%. Chronic patients increased WS by 39.07%, cadence by 48.16%, BBS score by 5.07%, and distance in the 6minWT by 22.9%; TUGT time decreased by 3.8 s. There is strong evidence that BWS-TWT increases WS, cadence, balance, and endurance of stroke survivors at any stage poststroke, but the intervention better impacts acute patients, who may show more deficits.
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The objective of this systematic review was to investigate the effectiveness of body-weight-supported treadmill walking training (BWS-TWT) to improve functional walking and balance in any poststroke stage. Clinical studies where BWS-TWT was administered to stroke patients in any poststroke stage were considered. Pre- and a postintervention measurements of walking speed (WS), cadence, Berg balance scale (BBS), distance in the six-minute walking test (6minWT), and time in the timed-up-and-go test (TUGT) were analyzed. After performing BWS-TWT, acute patients increased WS by 16.6%, BBS score by 98.7%, and distance in the 6minWT by 42.3%. Subacute patients increased WS by 84%, cadence by 32.23%, and score in the BBS by 57.6%. Chronic patients increased WS by 39.07%, cadence by 48.16%, BBS score by 5.07%, and distance in the 6minWT by 22.9%; TUGT time decreased by 3.8 s. There is strong evidence that BWS-TWT increases WS, cadence, balance, and endurance of stroke survivors at any stage poststroke, but the intervention better impacts acute patients, who may show more deficits.
Key concepts: Cadence, Berg Balance Scale, Medicine, Physical therapy, Timed Up and Go test, Balance (ability), Stroke (engine), Physical medicine and rehabilitation