Recruiting · registry statusTesting magnetic stimulation for unwanted movements caused by medicine
Researchers study whether magnetic brain stimulation affects involuntary movements associated with levodopa treatment in Parkinson’s.
Testing a treatment or activity · Study reference: NCT06570824
Plain-language introduction written with AI from the registry; not independently checked by a clinician. Read the original details below ↓
Open the official registry record ↗Follow this study
Looking for volunteers
- Start (reported actual date)
- 2024-08-22
- Main measurements finished (planned)
- 2027-05-01
- Study finished (planned)
- 2027-12-01
Planned dates can move. A study finishing does not tell us when a paper will be published.
No results summary has been confirmed in the registry records we imported. See connected papers below; we keep checking after recruitment ends.
Changes we have recorded
These are dates we observed a change, not necessarily the dates it happened.
Papers connected to this study
No connected paper has been found yet. The tracker checks the growing library for study identifiers and registry-linked publications.
Who can join?
Ages 18 years to 80 years · Does not accept healthy volunteers
These are starting points, not the full rules. The research team can tell you whether the study is right for your situation.
Read all the rules for taking part
Sex eligibility reported by registry: all
Inclusion Criteria:
* Clinically established or probable PD
* Clinical Diagnostic Criteria for Parkinson's Disease
* Peak-of-dose levodopa-induced dyskinesia.
* Stable antiparkinsonian medicine for at least four weeks.
* Signed informed consent.
Exclusion Criteria:
* Psychiatric disorders.
* Usage of antipsychotic medication, Donepezil, and GABAergic medications (such as pregabalin and gabapentin).
* Regular usage of benzodiazepines and opioids (more than once per week).
* History of neurological disease other than Parkinson's disease.
* History of epilepsy/conditions associated with increased risk to seizure-induction through TMS.
* Close relatives suffering from epilepsy/conditions associated with increased risk to seizure-induction through TMS.
* Contraindications for MRI scan
* Female participants of childbearing age must not be pregnant and that they must use contraception during the trial.
* Refuse to be informed about new health related information and accidental health related findings that might appear through participation in the study.
Full study name & original research details
Official study title
Network Based Repetitive Transcranial Magnetic Stimulation (rTMS) as an Intervention for Levodopa-induced Dyskinesia (LID) in Parkinson's Disease (PD)
Short title used by the registry
rTMS as an Intervention for Levodopa-induced Dyskinesia
Original description
The proposed study investigates the use of repetitive transcranial magnetic stimulation (rTMS) as a treatment for levodopa-induced dyskinesia (LID) in Parkinson's Disease (PD). Specifically, the study aims to determine whether patterned stimulation of the pre-supplementary motor area (pre-SMA) can delay the onset of LID after levodopa intake and reduce LID severity in PD patients. This study will provide critical insights into potential targets for rTMS treatment, optimal rTMS parameters, and the mechanisms underlying LID in Parkinson's disease.
Further description from the registry
Long-term use of levodopa in Parkinson's Disease (PD) often leads to motor complications, such as Levodopa-Induced Dyskinesia, which significantly impacts patients' daily lives. Various brain regions have been targeted for treatment with Transcranial Magnetic Stimulation (TMS), including the supplementary motor area (SMA), primary motor cortex, cerebellum, and prefrontal cortex. Specifically, targeting the pre-SMA with 1-Hz rTMS has been shown to delay and reduce dyskinesia severity in PD patients following levodopa administration. These findings suggest that the pre-supplementary motor area is a promising target for brain stimulation therapy, as it plays a causal role in the pathophysiology of peak-of-dose dyskinesia.
The current study aims to build on previous research by optimizing the stimulation intensity and location based on individual neuroanatomy and simulated electric fields. Additionally, the study will explore the impact of rTMS delivered in short high-frequency bursts, differing from the single rTMS pulses used in previous studies. In the context of LID, Deep Brain Stimulation (DBS) typically targets the subthalamic nucleus (STN) using gamma frequencies (40-200 Hz, most commonly 130 Hz). Drawing from this principle, the study posits that delivering rTMS bursts at gamma frequencies to the pre-SMA will effectively mitigate LID symptoms. Moreover, evidence from cortical brain rhythm recordings highlights that beta frequencies (12-30 Hz), which are crucial for movement control and are disrupted in PD, may also hold therapeutic potential. Therefore, the study will investigate whether rTMS bursts at beta frequencies could similarly reduce LID symptoms. Given the absence of prior research directly comparing the effects of different burst frequencies on LID, the study will systematically apply two distinct burst frequencies, in separate patient groups, to determine which, if either, produces a meaningful reduction in LID symptoms.
Dyskinesia onset time and severity will be measured using the Unified Dyskinesia Rating Scale (UDysRS) and assessed by a clinician rater who is blinded to the treatment condition. The results will be compared between the active and sham stimulation conditions.
Conditions reported: Dyskinesia, Drug-Induced; Parkinson Disease
Registry records for this study
Records are joined using registration identifiers. Titles alone do not establish that two studies are the same.
- Study type
- Interventional
- Interventions
- active TMS; sham TMS
- Phases
- NA
- Sponsor
- Danish Research Centre for Magnetic Resonance
- Start date reported by registry
- 2024-08-22 (actual)
Registry updated: 2026-08-27 · Status last verified by the registry submitter: 2026-08
Registry records retrieved 2026-10-11 (UTC). Individual records may have older updates. Recruitment and eligibility must be confirmed with the study team.
Contact the research team
Public study contacts supplied to the registry. Ask whether recruitment is still open and what participation involves.
Laura Sakalauskaite, MD · +45 38621184 · laura.sakalauskaite.01@regionh.dk
Study locations
Site status can differ from overall study status. “Status not reported” means local availability needs confirmation. Remote participation and travel arrangements must be checked with the team.
DRCMR
Hvidovre, Denmark
RecruitingHartwig Siebner, Prof
Facility not reported
Denmark
Status not reportedThe original descriptions and participation rules come from the registry. Participation is voluntary and does not guarantee benefit.