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Effects of Robotic Rehabilitation in Post-Stroke Patients

Effects of Robotic Rehabilitation in Post-Stroke Patients: A Randomized Controlled Trial

Status
UNKNOWN
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04494685
Enrollment
40
Registered
2020-07-31
Start date
2020-08-01
Completion date
2021-12-31
Last updated
2020-07-31

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Stroke

Keywords

Stroke, Robotics, Electric stimulation

Brief summary

This study aims to evaluate the effect of robotic rehabilitation through training on a robot-assisted orthostatic board and neuromuscular electrical stimulation (NMES) on functionality in post-stroke patients. In this randomized controlled trial the patients will be allocated to a control group (which will receive conventional physiotherapy) or or to intervention group (which will receive conventional physiotherapy and robotic rehabilitation). Interventions will occur every day in the hospital phase and three times/week after discharge, totaling 18 sessions.The groups will be evaluated prior to any physiotherapy intervention, in the 10h session and at the end of six weeks of treatment (or 18 sessions).The following outcomes will be measured: functionality, peripheral muscle strength, muscle architecture and echogenicity, spasticity, cardiorespiratory repercussions, mobility, disability and dependence, quality of life and time of hospital stay.

Interventions

DEVICEIntervention group (Robotic rehabilitation)

Robotic rehabilitation with Erigo® equipment (Hocoma, Volketswil, Switzerland). The training protocol has a progression of the board inclination up to 90º associated with flexion/extension movements of the knees and hips, with time evolution of up to 40 minutes. Such equipment is associated with electrostimulation of the quadriceps, hamstrings, sural triceps and anterior tibialis.

Knee and hip flexion and extension movements, hip adduction, and abduction, respecting the articular physiology of each joint. Weight transfer will also be performed in the sitting and standing position, mini squat, and gait training. All exercises will have a total of 10 repetitions in three sets. In the end, stretching of the upper and lower limbs will be performed.

Sponsors

Federal University of Health Science of Porto Alegre
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
SINGLE (Outcomes Assessor)

Eligibility

Sex/Gender
ALL
Age
18 Years to 85 Years
Healthy volunteers
No

Inclusion criteria

* Medical diagnosis of ischemic stroke, in the subacute phase (after 48 hours); * To present hemiparesis or muscle weakness defined by the Medical Research Council (MRC) score; * To understand simple commands and being able to report signs of discomfort.

Exclusion criteria

* Severe psychomotor agitation; * Recent acute myocardial infarction (24 hours) and/or uncontrolled arrhythmias; * Intracranial hypertension (PIC\> 20mmHg); * Uncontrolled hypertension (PAS\> 230 mmHg and PAD\> 120 mmHg) or PAM \<60 mmHg; * Decompensated heart failure; * To present important hemodynamic changes during training; * Peripheral vascular disease in the lower limb such as untreated deep vein thrombosis; * Unconsolidated fractures or severe joint pain; * Feverish state; * Smokers; * Epidermal lesions on the thighs that make it impossible to place self-adhesive electrodes for electrical stimulation; * Pre-existing neuromuscular disease; * Signs of rhabdomyolysis; * Pregnancy.

Design outcomes

Primary

MeasureTime frameDescription
FunctionalityBaseline, after 3 weeks and after 6 weeksThe change in functionality will be assessed using the Fugl-Meyer Scale. This scale consists of six domains: range of motion, pain, sensitivity, motor function of the upper and lower extremities, balance, coordination and speed. The score for each item ranges from 0 to 2, where 0 = cannot be performed; 1 = partially accomplished; 2 = completely accomplished. The total score ranges from 0 to 266 points and the higher the score the better the functionality.

Secondary

MeasureTime frameDescription
Quadriceps muscle thicknessBaseline and after 6 weeksThe change in quadriceps muscle thickness will be evaluated for the acquisition of ultrasound images using a high resolution ultrasound device (Vivid-i, GE, USA). In order to verify the thickness of the muscle, the distance between the superficial and deep aponeurosis is measured.The thickness is given in centimeters.
Echogenicity of the rectus femoris muscleBaseline and after 6 weeksThe change in echogenicity will be evaluated for the acquisition of ultrasound images of the rectus femoris muscle using a high resolution ultrasound device (Vivid-i, GE, USA). To check the echogenicity of the rectus femoris an image of the cross-sectional area of the muscle will be taken. The echogenicity measurement is given in an arbitrary unit.
SpasticityBaseline, after after 3 weeks and after 6 weeksThe change in spasticity will be assessed by the Modified Ashworth Scale. This scale consists of an ordinal classification of 5 points for grading the resistance found during passive stretching, with 0 indicating normal muscle tone and 4 severe increase in tone. The higher the score, the greater the spasticity.
MobilityAfter 3 weeks and after 6 weeksThe change in mobility will be assessed using the Timed Up and Go test (TUG), which will be associated with an inertial sensor
Disability and dependenceBaseline and after 6 weeksThe change in disability and dependency will be assessed using the Modified Rankin Scale. This instrument has 6 scores, where: 0 = asymptomatic; 1 = symptoms without disabilities; 2 = mild disability; 3 = moderate disability; 4 = moderate to severe disability; 5 = severe disability and 6 = death. The higher the score, the greater the degree of disability and dependence.
Quality of life indicatorBaseline and after 6 weeksThe change in quality of life will be assessed using the EuroQol-5D questionnaire. This is a generic instrument that assesses mobility, personal care, usual activities, pain and anxiety/depression. It allows to generate a global index of the value of an individual's health status. The number 1 indicates the best state of health (perfect health) and 0 the worst state of health (death).
Muscle strengthBaseline, after 3 weeks and after 6 weeks.The change in muscle strength will be assessed by the Medical Research Council (MRC) scale and by test of maximum repetition (1RM)
Peripheral arterial oxygen saturationFrom the 1st to the 18th day/sessionPeripheral arterial oxygen saturation will be assessed by pulse oximetry
Systolic blood pressureFrom the 1st to the 18th day/sessionSystolic blood pressure will be assessed through sphygmomanometer
Diastolic blood pressureFrom the 1st to the 18th day/sessionDiastolic blood pressure will be assessed through sphygmomanometer
Muscle painFrom the 1st to the 18th day/sessionPain perception will be assessed using the Visual Analog Scale. This scale ranges from 0 to 10, where 0 indicates no pain and 10 maximum pain.
Lower limb fatigueFrom the 1st to the 18th day/sessionLower limb fatigue will be assessed by Borg effort subjective perception scale. This scale ranges from 0 to 10, where 0 indicates no effort or fatigue and 10 indicates maximum effort.
Time of hospital stayFrom the 1st to the last day of hospitalizationThe days between admission and hospital discharge will be counted
Heart rateFrom the 1st to the 18th day/sessionHeart rate will be assessed by pulse oximetry

Contacts

Primary ContactRodrigo DM Plentz, PhD
roplentz@yahoo.com.br+555191131651

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026