tDCS on Motor Rehabiliation of Post Stroke Patients

NACompletedINTERVENTIONAL
Enrollment

60

Participants

Timeline

Start Date

March 3, 2018

Primary Completion Date

September 1, 2018

Study Completion Date

March 1, 2019

Conditions
StrokeTranscranial Direct Current Stimulation
Interventions
DEVICE

Anodal tDCS

tDCS involves application of very low-amplitude direct currents (2 mA or less) via surface scalp electrodes. It produces a sub-sensory level of electrical stimulation wich remains imperceptible by most people during application. In a small percentage of patients, it may cause minimal discomfort with a mild tingling sensation, which usually disappears after a few seconds. Depending on the polarity, tDCS can increase or decrease corticomotor excitability. Anodal tDCS is able to facilitate neurons depolarization - increasing cortical excitability - while, on the other hand, cathodal tDCS hyperpolarizes the resting membrane potential, reducing the neuronal firing and the cortical excitability questionnaire will be applied

BEHAVIORAL

Physical therapy

all patients will be submitted to a protocol of exercise with differents levels according with motor learing and neuroplasticity principles. All physical therapists were trained before the study.

DEVICE

Cathodal tDCS

tDCS involves application of very low-amplitude direct currents (2 mA or less) via surface scalp electrodes. It produces a sub-sensory level of electrical stimulation wich remains imperceptible by most people during application. In a small percentage of patients, it may cause minimal discomfort with a mild tingling sensation, which usually disappears after a few seconds. Depending on the polarity, tDCS can increase or decrease corticomotor excitability. Anodal tDCS is able to facilitate neurons depolarization - increasing cortical excitability - while, on the other hand, cathodal tDCS hyperpolarizes the resting membrane potential, reducing the neuronal firing and the cortical excitability questionnaire will be applied

DEVICE

Sham tDCS

tDCS involves application of very low-amplitude direct currents (2 mA or less) via surface scalp electrodes. It produces a sub-sensory level of electrical stimulation wich remains imperceptible by most people during application. In a small percentage of patients, it may cause minimal discomfort with a mild tingling sensation, which usually disappears after a few seconds. Depending on the polarity, tDCS can increase or decrease corticomotor excitability. Anodal tDCS is able to facilitate neurons depolarization - increasing cortical excitability - while, on the other hand, cathodal tDCS hyperpolarizes the resting membrane potential, reducing the neuronal firing and the cortical excitability questionnaire will be applied

Trial Locations (1)

50670-901

Federal University of Pernambuco, Applied Neuroscience Laboratory, Recife

All Listed Sponsors
lead

Universidade Federal de Pernambuco

OTHER

NCT03446378 - tDCS on Motor Rehabiliation of Post Stroke Patients | Biotech Hunter | Biotech Hunter