Persons post-stroke improve step length symmetry by walking asymmetrically

被引:27
作者
Padmanabhan, Purnima [1 ,2 ]
Rao, Keerthana Sreekanth [1 ,3 ]
Gulhar, Shivam [1 ,4 ,5 ]
Cherry-Allen, Kendra M. [1 ,5 ]
Leech, Kristan A. [6 ]
Roemmich, Ryan T. [1 ,5 ]
机构
[1] Kennedy Krieger Inst, Ctr Movement Studies, 707 North Broadway, Baltimore, MD 21205 USA
[2] Johns Hopkins Univ, Dept Neurosci, Sch Med, Baltimore, MD 21205 USA
[3] Johns Hopkins Univ, Dept Biomed Engn, Baltimore, MD 21218 USA
[4] Virginia Commonwealth Univ, Sch Med, Richmond, VA 23298 USA
[5] Johns Hopkins Univ, Dept Phys Med & Rehabil, Sch Med, Baltimore, MD 21205 USA
[6] Univ Southern Calif, Div Biokinesiol & Phys Therapy, Los Angeles, CA 90007 USA
关键词
Gait; Stroke; Rehabilitation; Energy; Mechanics; Effort; Metabolic; SPLIT-BELT TREADMILL; SPATIOTEMPORAL GAIT ASYMMETRY; MECHANICAL WORK; PLANTAR FLEXORS; STROKE PATIENTS; POST-STROKE; ENERGY-COST; SPEED; INDIVIDUALS; WEIGHT;
D O I
10.1186/s12984-020-00732-z
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Background and purpose Restoration of step length symmetry is a common rehabilitation goal after stroke. Persons post-stroke often retain the ability to walk with symmetric step lengths ("symmetric steps"); however, the resulting walking pattern remains effortful. Two key questions with direct implications for rehabilitation have emerged: 1) how do persons post-stroke generate symmetric steps, and 2) why do symmetric steps remain so effortful? Here, we aimed to understand how persons post-stroke generate symmetric steps and explored how the resulting gait pattern may relate to the metabolic cost of transport. Methods We recorded kinematic, kinetic, and metabolic data as nine persons post-stroke walked on an instrumented treadmill under two conditions: preferred walking and symmetric stepping (using visual feedback). Results Gait kinematics and kinetics remained markedly asymmetric even when persons post-stroke improved step length symmetry. Impaired paretic propulsion and aberrant movement of the center of mass were evident during both preferred walking and symmetric stepping. These deficits contributed to diminished positive work performed by the paretic limb on the center of mass in both conditions. Within each condition, decreased positive paretic work correlated with increased metabolic cost of transport and decreased walking speed across participants. Conclusions It is critical to consider the mechanics used to restore symmetric steps when designing interventions to improve walking after stroke. Future research should consider the many dimensions of asymmetry in post-stroke gait, and additional within-participant manipulations of gait parameters are needed to improve our understanding of the elevated metabolic cost of walking after stroke.
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页数:14
相关论文
共 51 条
[11]   Simultaneous positive and negative external mechanical work in human walking [J].
Donelan, JM ;
Kram, R ;
Kuo, AD .
JOURNAL OF BIOMECHANICS, 2002, 35 (01) :117-124
[12]   Management of adult stroke rehabilitation care - A clinical practice guideline [J].
Duncan, PW ;
Zorowitz, R ;
Bates, B ;
Choi, JY ;
Glasberg, JJ ;
Graham, GD ;
Katz, RC ;
Lamberty, K ;
Reker, D .
STROKE, 2005, 36 (09) :E100-E143
[13]   The metabolic and mechanical costs of step time asymmetry in walking [J].
Ellis, Richard G. ;
Howard, Kevin C. ;
Kram, Rodger .
PROCEEDINGS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 2013, 280 (1756)
[14]   Revisiting the mechanics and energetics of walking in individuals with chronic hemiparesis following stroke: from individual limbs to lower limb joints [J].
Farris, Dominic James ;
Hampton, Austin ;
Lewek, Michael D. ;
Sawicki, Gregory S. .
JOURNAL OF NEUROENGINEERING AND REHABILITATION, 2015, 12
[15]  
FUGLMEYER AR, 1975, SCAND J REHABIL MED, V7, P13
[16]   Comparing the effects of adapting to a weight on one leg during treadmill and overground walking: A pilot study [J].
Gama, Gabriela Lopes ;
Savin, Douglas N. ;
Keenan, Taylor ;
Waller, Sandy McCombe ;
Whitall, Jill .
GAIT & POSTURE, 2018, 59 :35-39
[17]   Relationships between muscle contributions to walking subtasks and functional walking status in persons with post-stroke hemiparesis [J].
Hall, A. L. ;
Peterson, C. L. ;
Kautz, S. A. ;
Neptune, R. R. .
CLINICAL BIOMECHANICS, 2011, 26 (05) :509-515
[18]  
HIRSCHBERG GG, 1976, GERIATRICS, V31, P61
[19]   Mechanisms used to increase peak propulsive force following 12-weeks of gait training in individuals poststroke [J].
Hsiao, HaoYuan ;
Knarr, Brian A. ;
Pohlig, Ryan T. ;
Higginson, Jill S. ;
Binder-Macleod, Stuart A. .
JOURNAL OF BIOMECHANICS, 2016, 49 (03) :388-395
[20]   Mechanisms to increase propulsive force for individuals poststroke [J].
Hsiao, HaoYuan ;
Knarr, Brian A. ;
Higginson, Jill S. ;
Binder-Macleod, Stuart A. .
JOURNAL OF NEUROENGINEERING AND REHABILITATION, 2015, 12