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Investigation of Treatment Using the MyoRegulator® Device in Patients With Spasticity in the Lower Limb Due to Stroke

Investigation of Treatment Using the MyoRegulator® Device in Patients With Spasticity in the Lower Limb Due to Stroke

Status
Completed
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04780191
Acronym
SPAST
Enrollment
44
Registered
2021-03-03
Start date
2018-07-19
Completion date
2021-01-19
Last updated
2026-04-22

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

Conditions

Muscle Spasticity, Stroke

Keywords

stroke rehabilitation, spasticity, neuromodulation, trans-spinal direct current stimulation

Brief summary

This is a single center, randomized, double-blind (patient and evaluator), sham-controlled study. The main objectives of this study are to evaluate the performance and safety of the MyoRegulator® device in active versus sham treated stroke patients with lower-limb spasticity after 5 consecutive days of treatment.

Detailed description

Spasticity prevalence after stroke is highly variable, ranging from 17% to 43% three months post-stroke. In the lower limbs, adduction and extension of the knee with equinovarus foot is the most observed pattern. Spasticity can lead to pain, ankylosis, and tendon retraction which may limit the potential success of rehabilitation. Spasticity can also affect quality-of-life and can be highly detrimental to daily activities such as walking. An initial clinical trial of safety and feasibility suggested that five sessions of treatment with the MyoRegulator® device temporarily reduces spasticity and overall stiffness of the affected extremity with optimal reductions in spasticity occurring 2-3 weeks post stimulation intervention. MyoRegulator® is a non-invasive neuromodulation device using multi-site direct current stimulation for the treatment of spasticity. The main objectives of this study are to evaluate the performance and safety of the MyoRegulator® device in active versus sham treated patients during and after 5 consecutive days of treatment sessions. Patients can take part in an optional 3-month follow-up. The primary performance endpoint is defined as the reduction in ankle joint spasticity. The study will be considered to have a successful outcome if the actively treated subjects demonstrate a statistically greater reduction in spasticity, as measured by the Tardieu Scale, as compared to the sham treated subjects after five treatment sessions. The primary safety endpoint is defined as the incidence of device-related serious adverse events. The safety of the device will be demonstrated if there are no incidents of serious adverse events caused or contributed to by the device treatment that are clinically unacceptable in light of the treatment benefits.

Interventions

Trans-spinal DC stimulation paired with peripheral DC stimulation

Sponsors

Institut National de la Santé Et de la Recherche Médicale, France
Lead SponsorOTHER_GOV
PathMaker Neurosystems Inc.
CollaboratorINDUSTRY

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
DOUBLE (Subject, Investigator)

Eligibility

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

Inclusion criteria

* Stroke, with cortical and/or subcortical lesions, of at least 6-months duration at study inclusion * Spasticity in the lower extremity plantarflexors (gastrocnemius, soleus muscles) due to stroke with a baseline score of 1-4 as assessed by the Tardieu scale * Minimum 1-month duration of spasticity as confirmed by medical history * Modified Rankin score \< 4 * Cognitive functions sufficient to understand the experiments and follow instructions and ability to provide informed consent in accordance with ICH and GCP * Affiliated with the French social security scheme, universal medical coverages (CMU), or an equivalent scheme.

Exclusion criteria

* Enrollment in another biomedical research study at the time of the MyoRegulator study. * Fixed contractures or profound muscle atrophy in the spastic limb * Ongoing use of digitalis, morphine, intrathecal pump * Plantar orthosis or history of orthopedic surgery that can interfere with gait analysis * Botulinum toxin treatment within 12 weeks of study enrollment * Prior phenol or alcohol injections within 6 months of study enrollment * Change in the antispastic treatment (baclofen, clonidine, benzodiazepine, dantrolene, gabapentine, tizanidin) in the 2 months prior to visit 1. * Allergy to latex * Presence of potential tsDCS risk factors: * Damaged skin at the stimulation sites (i.e., skin with ingrown hairs, acne, razor nicks, wounds that have not healed, recent scar tissue, broken skin, cancerous lesions, etc.) * Lack of sensory perception at the stimulation sites * Presence of an electrically, magnetically or mechanically activated implant (including cardiac pacemaker, epidural stimulation electrodes, etc.), an intravascular clip or any other electrically sensitive support system * Metal in or on the body in the direct path of the stimulation current (jewelry must be removed during stimulation) * Past history of seizures or unexplained spells of loss of consciousness during the previous 36 months * Prior trans-spinal direct current stimulation for any reason or prior trans-cranial direct current stimulation in the past 12 months * Any medical condition that would prevent the subject from being able to participate in the clinical outcome measures * Pregnancy in women (as determined by a urine pregnancy test in pre-menopausal women), or lactating women or women planning pregnancy during the course of the study * Patient under guardianship or curatorship, or under judicial supervision

Design outcomes

Primary

MeasureTime frameDescription
Change in spasticity from baseline to after the last treatment sessionImmediately after last treatment sessionChange in spasticity as measured by the Modified Tardieu Scale (MTS) after 5 treatments as compared to baseline.

Secondary

MeasureTime frameDescription
Change in gait parameters from baseline to 3 months post-treatmentUp to 3 months after last treatment sessionChange in walking up to 3 months after 5 treatments as compared to baseline as measured using a gait analysis system
Change in walking performance from baseline to 3 months post-treatmentUp to 3 months after last treatment sessionChange in walking performance up to 3 months after 5 treatments as compared to baseline as measured using the 10-meter walk test
Change in functional performance from baseline to 3 months post-treatmentUp to 3 months after last treatment sessionChange in functional performance up to 3 months after 5 treatments as compared to baseline as measured using the Fugl Meyer assessment
Change in muscle reaction from baseline to 3 months post-treatmentUp to 3 months after last treatment sessionChange in muscle reaction up to 3 months after 5 treatments as compared to baseline as measured using the H-reflex
Change in subject's self-assessment of their spasticity from baseline to 3 months post-treatmentUp to 3 months after last treatment sessionChange in subject's self-assessment of their spasticity up to 3 months after 5 treatments as compared to baseline as measured using an 11-point Numerical Rating Scale
Change in subject's quality of life from baseline to 3 months post-treatmentUp to 3 months after last treatment sessionChange in subject's self-assessment of quality of life up to 3 months after 5 treatments as compared to baseline as measured using the SF-36 scale

Countries

France

Contacts

PRINCIPAL_INVESTIGATORJean-Christophe Corvol, MD, PhD

Institut du Cerveau et de la Moelle épinière

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Apr 23, 2026