Central Drive to the Paretic Ankle Plantarflexors Affects the Relationship Between Propulsion and Walking Speed After Stroke

被引:31
作者
Awad, Louis N. [1 ,2 ]
Hsiao, HaoYuan [4 ]
Binder-Macleod, Stuart A. [3 ]
机构
[1] Boston Univ, Dept Phys Therapy & Athlet Training, Boston, MA 02215 USA
[2] Harvard Univ, Wyss Inst Biol Inspired Engn, Cambridge, MA 02138 USA
[3] Univ Texas Austin, Dept Kinesiol & Hlth Educ, Austin, TX 78712 USA
[4] Univ Delaware, Dept Phys Therapy, Newark, DE USA
来源
JOURNAL OF NEUROLOGIC PHYSICAL THERAPY | 2020年 / 44卷 / 01期
关键词
activation; diagnosis; electrical stimulation; gait; neuromuscular; TRAILING LIMB ANGLE; VOLUNTARY ACTIVATION; WEAKNESS; GAIT; POSTSTROKE; FORCE; REHABILITATION; PERFORMANCE; VALIDATION; RECOVERY;
D O I
10.1097/NPT.0000000000000299
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Background and Purpose: The ankle plantarflexor muscles are the primary generators of propulsion during walking. Impaired paretic plantarflexion is a key contributor to interlimb propulsion asymmetry after stroke. Poststroke muscle weakness may be the result of a reduced force-generating capacity, reduced central drive, or a combination of these impairments. This study sought to elucidate the relationship between the neuromuscular function of the paretic plantarflexor muscles and propulsion deficits across individuals with different walking speeds. Methods: For 40 individuals poststroke, we used instrumented gait analysis and dynamometry coupled with supramaximal electrostimulation to study the interplay between limb kinematics, the neuromuscular function of the paretic plantarflexors (ie, strength capacity and central drive), propulsion, and walking speed. Results: The strength capacity of the paretic plantarflexors was not independently related to paretic propulsion. Reduced central drive to the paretic plantarflexors independently contributed to paretic propulsion deficits. An interaction between walking speed and plantarflexor central drive was observed. Individuals with slower speeds and lower paretic plantarflexor central drive presented with the largest propulsion impairments. Some study participants with low paretic plantarflexor central drive presented with similarly fast speeds as those with near-normal central drive by leveraging a compensatory reliance on nonparetic propulsion. The final model accounted for 86% of the variance in paretic propulsion (R-2 = 0.86, F = 33.10, P < 0.001). Discussion and Conclusions: Individuals poststroke have latent paretic plantarflexion strength that they are not able to voluntarily access. The magnitude of central drive deficit is a strong indicator of propulsion impairment in both slow and fast walkers. Video Abstract available for more insights from the authors (see the Video, Supplemental Digital Content 1, available at: ).
引用
收藏
页码:42 / 48
页数:7
相关论文
共 28 条
[1]   Step length asymmetry is representative of compensatory mechanisms used in post-stroke hemiparetic walking [J].
Allen, Jessica L. ;
Kautz, Steven A. ;
Neptune, Richard R. .
GAIT & POSTURE, 2011, 33 (04) :538-543
[2]   Distance-Induced Changes in Walking Speed After Stroke: Relationship to Community Walking Activity [J].
Awad, Louis ;
Reisman, Darcy ;
Binder-Macleod, Stuart .
JOURNAL OF NEUROLOGIC PHYSICAL THERAPY, 2019, 43 (04) :220-223
[3]   A soft robotic exosuit improves walking in patients after stroke [J].
Awad, Louis N. ;
Bae, Jaehyun ;
O'Donnell, Kathleen ;
De Rossi, Stefano M. M. ;
Hendron, Kathryn ;
Sloot, Lizeth H. ;
Kudzia, Pawel ;
Allen, Stephen ;
Holt, Kenneth G. ;
Ellis, Terry D. ;
Walsh, Conor J. .
SCIENCE TRANSLATIONAL MEDICINE, 2017, 9 (400)
[4]   Identifying candidates for targeted gait rehabilitation after stroke: better prediction through biomechanics-informed characterization [J].
Awad, Louis N. ;
Reisman, Darcy S. ;
Pohlig, Ryan T. ;
Binder-Macleod, Stuart A. .
JOURNAL OF NEUROENGINEERING AND REHABILITATION, 2016, 13
[5]   Paretic Propulsion and Trailing Limb Angle Are Key Determinants of Long-Distance Walking Function After Stroke [J].
Awad, Louis N. ;
Binder-Macleod, Stuart A. ;
Pohlig, Ryan T. ;
Reisman, Darcy S. .
NEUROREHABILITATION AND NEURAL REPAIR, 2015, 29 (06) :499-508
[6]   Walking Speed and Step Length Asymmetry Modify the Energy Cost of Walking After Stroke [J].
Awad, Louis N. ;
Palmer, Jacqueline A. ;
Pohlig, Ryan T. ;
Binder-Macleod, Stuart A. ;
Reisman, Darcy S. .
NEUROREHABILITATION AND NEURAL REPAIR, 2015, 29 (05) :416-423
[7]   Targeting Paretic Propulsion to Improve Poststroke Walking Function: A Preliminary Study [J].
Awad, Louis N. ;
Reisman, Darcy S. ;
Kesar, Trisha M. ;
Binder-Macleod, Stuart A. .
ARCHIVES OF PHYSICAL MEDICINE AND REHABILITATION, 2014, 95 (05) :840-848
[8]   Validation of a Speed-Based Classification System Using Quantitative Measures of Walking Performance Poststroke [J].
Bowden, Mark G. ;
Balasubramanian, Chitralakshmi K. ;
Behrman, Andrea L. ;
Kautz, Steven A. .
NEUROREHABILITATION AND NEURAL REPAIR, 2008, 22 (06) :672-675
[9]  
Cohen J., 2002, Applied multiple regression/correlation analysis for the behavioral sciences, DOI [10.1007/978-1-59745-530-5_9, DOI 10.4324/9780203774441]
[10]   Using submaximal contractions to predict the maximum force-generating ability of muscles [J].
Flynn, Sarah ;
Knarr, Brian A. ;
Perumal, Ramu ;
Kesar, Trisha M. ;
Binder-MacLeod, Stuart A. .
MUSCLE & NERVE, 2012, 45 (06) :849-858