Ankle Mechanical Impedance During Waling in Chronic Stroke: Preliminary Results

scientific article published on 01 June 2019

Ankle Mechanical Impedance During Waling in Chronic Stroke: Preliminary Results is …
instance of (P31):
scholarly articleQ13442814

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P8978DBLP publication IDconf/icorr/ShorterFR19
P356DOI10.1109/ICORR.2019.8779436
P932PMC publication ID6924171
P698PubMed publication ID31374637

P2093author name stringElliott J Rouse
Amanda L Shorter
Suzanne Finucane
P2860cites workHeart Disease and Stroke Statistics-2017 Update: A Report From the American Heart AssociationQ30238784
Gait asymmetry, ankle spasticity, and depression as independent predictors of falls in ambulatory stroke patientsQ33719036
Prevalence of spasticity post stroke.Q34145923
Human ankle joint stiffness over the full range of muscle activation levelsQ34178067
Dynamics of human ankle stiffness: variation with mean ankle torqueQ34280157
Direct measurement of ankle stiffness during quiet standing: implications for control modelling and clinical application.Q34417696
Identification of intrinsic and reflex contributions to human ankle stiffness dynamicsQ34426180
The fugl-meyer assessment of motor recovery after stroke: a critical review of its measurement propertiesQ34861419
The contributions of muscles and reflexes to the regulation of joint and limb mechanics.Q34977767
Muscle and reflex changes with varying joint angle in hemiparetic strokeQ36537886
The effect of walking speed on muscle function and mechanical energetics.Q36693471
The relation between Ashworth scores and neuromechanical measurements of spasticity following strokeQ36835638
Spastic movement disorder: impaired reflex function and altered muscle mechanicsQ36885694
Development of a mechatronic platform and validation of methods for estimating ankle stiffness during the stance phase of walking.Q36995842
Summary of Human Ankle Mechanical Impedance During Walking.Q37344703
System identification of human joint dynamics.Q37951775
Outcome measures for individuals with stroke: process and recommendations from the American Physical Therapy Association neurology section task force.Q38109122
Relationship between risk factor control and vascular events in the SAMMPRIS trialQ38383226
Estimation of human ankle impedance during the stance phase of walkingQ39204670
Identification of time-varying stiffness dynamics of the human ankle joint during an imposed movementQ48776636
Identification of intrinsic and reflex ankle stiffness components in stroke patientsQ48826877
Mechanical Impedance of the Ankle During the Terminal Stance Phase of WalkingQ49617485
Multivariable Static Ankle Mechanical Impedance With Active Muscles.Q51155495
Static ankle impedance in stroke and multiple sclerosis: a feasibility study.Q51443099
Walking after stroke. Measurement and recovery over the first 3 monthsQ69004002
A dynamic EMG profile index to quantify muscular activation disorder in spastic paretic gaitQ69094288
Dynamics of human ankle stiffness: variation with displacement amplitudeQ70543923
Biomechanical characteristics of human ankle-joint musclesQ70795696
Mechanisms of disturbed motor control in ankle weakness during gait after strokeQ78026470
Foot drop and plantar flexion failure determine different gait strategies in Charcot-Marie-Tooth patientsQ80767053
Changes in passive mechanical properties of the gastrocnemius muscle at the muscle fascicle and joint levels in stroke survivorsQ83752987
P304page(s)246-251
P577publication date2019-06-01
P1433published inIEEE ... International Conference on Rehabilitation Robotics : [proceedings]Q27722652
P1476titleAnkle Mechanical Impedance During Waling in Chronic Stroke: Preliminary Results
P478volume2019

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