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Transcranial Magnetic Stimulation Synchronized with Motor Task Training for Post-Stroke Rehabilitation

Closed - Loop Neuromodulation of Post - Stroke Motor Dysfunction by Transcranial Magnetic Stimulation Synchronized with Specific Motor Task Training

Status
Recruiting
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT06849505
Acronym
TMS
Enrollment
15
Registered
2025-02-27
Start date
2024-07-02
Completion date
2025-06-30
Last updated
2025-02-27

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

Conditions

Stroke, Upper Extremity Parasis

Keywords

stroke, individualized, TMS, motor dysfunction, online

Brief summary

The goal of this clinical trials is to investigate the effectiveness of individualized online repetitive transcranial magnetic stimulation (rTMS) in enhancing upper limb motor rehabilitation during the subacute and chronic phase of stroke. It will also learn about the safety of individualized online rTMS intervention methods. The main questions it aims to answer are: Does rTMS synchronized with motor training improve motor rehabilitation in patients with the ability to induce motor evoked potentials(MEPs)? Dose individualized rTMS synchronized with motor training improve motor rehabilitation in patients without the ability to induce MEPs? Researchers will compare online rTMS to offline and sham stimulation in patients with MEPs to see if online rTMS works to alleviate motor dysfunction in preliminary trials. And compare individualized online rTMS to non-individualized online rTMS and sham in patients without MEPs to see if individualized online rTMS works to alleviate motor dysfunction in Randomized, double-blinded, and controlled trials. Participants will: randomized to one group acoording to the MEP condition of each person; receive rTMS treatment for 10 days, with 5 working days per week for a total of two weeks; receive magnetic resonance imaging (MRI) and electroencephalogram (EEG) evaluations before and after the entire treatment; conduct scales and MEP assessment one day before the treatment, as well as one day, one month, and three months after the treatment.

Detailed description

In our experiment, patients were be randomly assigned to three groups: online, offline and sham groups. if patients were able to induce MEPs, intensity of TMS will be 80% RMT; if not , inensity of TMS will be 70% of TMS output.

Interventions

DEVICEonline rTMS

5 Hz rTMS is applied to the MRI-localized hotspot on the affected hemisphere when the patients are performing motor tasks

DEVICEoffline rTMS

The patients perform motor tasks after 5 Hz rTMS applied to the MRI-guided hotspot on the affected hemisphere

DEVICEsham rTMS

Sham rTMS is applied to the M1 on the affected hemisphere when the patients are performing motor tasks.

Sponsors

shanghai center for brain science and brain-inspired technology
CollaboratorUNKNOWN
First Affiliated Hospital of the Chinese People's Liberation Army Naval Medical University
Lead SponsorOTHER

Study design

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

Eligibility

Sex/Gender
ALL
Age
20 Years to 80 Years
Healthy volunteers
No

Inclusion criteria

1. The patient is first diagnosed with stroke through neurological examination, CT or MRI scan. 2. The vital signs are stable and there is a certain degree of upper limb motor dysfunction. 3. The age is between 20 and 80 years old. 4. The cognitive ability is not significantly affected and the patient can cooperate with various examinations and assessments, with a MMSE score ≥ 20 points. 5. There are no serious complications (such as pneumonia, heart failure, urinary tract infection or malnutrition). 6. There is no pathological condition that is a contraindication for TMS in the medical history (for example, patients with metal in the brain, such as aneurysm clips, patients with a cardiac pacemaker, pregnant women, or those with a history of epileptic seizures). 7. The patient or guardian agrees to sign the informed consent form.

Exclusion criteria

1. Patients with severe heart, lung, liver, kidney diseases and malignant tumors; 2. Those with a history of aphasia, severe cognitive impairment or mental illness; 3. Patients who have had a history of epileptic seizures in the last month or are taking anti-epileptic drugs recently; 4. Those with severe visual or hearing impairments, unable to communicate normally; 5. People with metal implants, pacemakers, skull defects or other conditions that prevent them from undergoing TMS.

Design outcomes

Primary

MeasureTime frameDescription
Fugl-Meyer Assessment - Upper Extremity (FMA-UE)Baseline; Day 1 After 2-week intervention; Day 30 after 2-week intervention; Day 60 after 2-week interventionThe Fugl-Meyer Assessment (FMA) is a stroke-specific, performance-based impairment index. It is designed to assess motor functioning, balance, sensation and joint functioning in patients with post-stroke hemiplegia. It is applied clinically and in research to determine disease severity, describe motor recovery, and to plan and assess treatment. The Fugl-Meyer Assessment - Upper Extremity (FMA-UE) is the upper limb motor domain includes items assessing movement, coordination, and reflex action of the shoulder, elbow, forearm, wrist, hand. It ranges from 0 (hemiplegia) to 66 points (normal motor performance).

Secondary

MeasureTime frameDescription
Modified Barthel Index (MBI)Baseline; Day 1 After 2-week intervention; Day 30 after 2-week intervention; Day 60 after 2-week interventionThe Barthel Index for activities of daily living was introduced in 1965 by Barthel and Mahoney to be used in the assessment of the degree of assistance required by patients with stroke (other neuromuscular or musculoskeletal disorders or oncology patients) with regards to 10 items of mobility and self-care (ADL).
The Pittsburgh Sleep Quality Index (PSQI)Baseline; Day 1 After 2-week intervention; Day 30 after 2-week intervention; Day 60 after 2-week interventionThe Pittsburgh Sleep Quality Index (PSQI) is a widely used self-report questionnaire that assesses sleep quality over a one-month time interval. The PSQI is commonly used in both clinical and research settings to evaluate various aspects of sleep. It is a valuable tool for assessing sleep quality as it captures multiple dimensions of sleep, including both subjective experiences and objective parameters. It allows researchers and healthcare providers alike to obtain a comprehensive understanding of an individual's sleep patterns and disturbances and inform treatment decisions and interventions for sleep disorders.
Motor Evoked Potential (MEP) - Resting Motor Threshold (RMT)Baseline; Day 1 After 2-week intervention; Day 30 after 2-week intervention; Day 60 after 2-week interventionResting motor threshold is an objective measure of cortical excitability. Numerous studies indicate that the success of motor recovery after stroke is significantly determined by the direction and extent of cortical excitability changes.
The average completion time for baseline tasksDay 1, Day 2, Day 3, Day 4, Day 5, Day 6, Day7, Day 8, Day 9, Day 10 during TMS interventionThe average completion time for baseline tasks refers to the time (seconds) taken by the patient to complete the baseline motor task before each intervention.

Countries

China

Contacts

Primary ContactYing Wang
1327907674@qq.com+86-15221359901

Outcome results

None listed

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