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Theta burst stimulation significantly improves motor symptoms and reduces depressive scores in Parkinson's diseaseTheta Burst Stimulation Shows Promise for Parkinson's Disease Symptoms

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Key Takeaway
Consider transcranial TBS for improving OFF-medication motor symptoms and reducing depressive scores in Parkinson's disease.

This meta-analysis evaluates the efficacy of theta burst stimulation (TBS), including both transcranial and transspinal approaches, in patients with Parkinson's disease. The analysis included 388 participants and compared TBS against sham stimulation. The study indicates significant improvements in motor symptoms in the OFF-medication state (SMD = -0.43; 95% CI, -0.78 to -0.09; P = 0.01) and a reduction in depressive symptom scores (SMD = -0.60; 95% CI, -1.07 to -0.12; P = 0.01).

Regarding secondary outcomes, transcranial TBS showed potential improvements in cognitive outcomes at both immediate post-treatment and 3-month follow-up. Transspinal TBS showed potential motor benefits immediately after treatment. However, the authors note that the evidence for these specific outcomes is of moderate certainty.

Limitations include a small number of trials, a small number of participants, and significant heterogeneity in anatomical stimulation targets and stimulation protocols. While the findings suggest potential benefits for motor symptoms and depression, the durability and clinical relevance of these effects require larger trials and standardized protocols.

How this fits prior evidence

This meta-analysis addresses a gap identified in previous coverage regarding the heterogeneity of non-pharmacological Parkinson's trials. While previous evidence noted that non-pharmacological trials are too heterogeneous to rank interventions, this meta-analysis provides specific evidence for the efficacy of theta burst stimulation. It specifically addresses motor symptoms and depressive symptoms, which are core components of Parkinson's disease management.

Researchers analyzed data from 388 people with Parkinson's disease to see how theta burst stimulation (TBS) affects symptoms. This type of treatment can be delivered through the skull (transcranial) or the spine (transspinal). The study looked at how these methods affected movement, mood, and thinking abilities.

The results showed that transcranial TBS significantly improved motor symptoms when patients were not on their medication. It also led to a notable reduction in scores for depressive symptoms. For those receiving transspinal TBS, there were potential improvements in motor skills immediately after treatment. Some potential improvements in cognitive functions were also noted after transcranial treatment.

Because the study included a small number of trials and participants, the results should be viewed with caution. There were many different ways the treatment was delivered, which makes it hard to know exactly which method works best. While the findings are promising for managing movement and mood, larger studies are needed to confirm how long these benefits last.

What this means for you:
Theta burst stimulation shows potential to improve motor symptoms and reduce depression in Parkinson's patients.

Common questions

What are the main benefits of theta burst stimulation for Parkinson's?

The study found that transcranial theta burst stimulation significantly improved motor symptoms in the off-medication state. It also showed a reduction in depressive symptom scores. Some potential improvements in cognitive outcomes and motor benefits from transspinal stimulation were also observed, though these require more careful interpretation.

Is this treatment safe for people with Parkinson's?

The study reported no serious adverse events during the trials. However, because the research involved a small number of participants and varied treatment protocols, more data is needed to fully understand the long-term safety and consistency of the treatment.

How long do the improvements from this treatment last?

The study tracked patients at one-month and three-month follow-ups. While some improvements were noted at the three-month mark for cognitive outcomes, the small number of trials means the long-term durability of these effects is not yet fully known.

Study Details

Study typeMeta analysis
EvidenceLevel 1
PublishedSep 2026
View Original Abstract ↓
Parkinson's disease (PD) is a progressive neurodegenerative disorder characterized by motor and non-motor impairments that are often incompletely controlled by pharmacological treatment. Theta burst stimulation (TBS), including transcranial and transspinal approaches, has emerged as a potential neuromodulation strategy for symptom management in PD. This updated systematic review and meta-analysis evaluated the efficacy and safety of TBS for motor and non-motor outcomes in individuals with PD. PubMed, Embase, Web of Science, the Cochrane Library, and ClinicalTrials.gov were searched from inception to 28 July 2026. Randomized parallel-group controlled trials comparing active TBS with sham stimulation in individuals with PD were included. Two reviewers independently performed study selection, data extraction, and risk of bias assessment using the Cochrane Risk of Bias 2 tool. Random-effects meta-analyses were conducted, and certainty of evidence was assessed using the Grading of Recommendations Assessment, Development and Evaluation (GRADE) framework. Twelve randomized parallel-group controlled trials including 388 participants were included. Active transcranial TBS significantly improved motor symptoms in the OFF-medication state (SMD = −0.43; 95% CI, −0.78 to −0.09; P = 0.01; I2 = 3%; high-certainty evidence), whereas no significant benefit was observed in the ON-medication state or at 1-month follow-up. Active transcranial TBS also reduced depressive symptom scores (SMD = −0.60; 95% CI, −1.07 to −0.12; P = 0.01; I2 = 36%; high-certainty evidence). Moderate-certainty evidence indicated potential improvements in cognitive outcomes following transcranial TBS immediately after treatment and at 3-month follow-up, as well as potential motor benefits of transspinal TBS immediately after treatment in the ON-medication state. These findings should be interpreted cautiously given the small number of trials and participants and heterogeneity in anatomical stimulation targets and stimulation protocols. No serious stimulation-related adverse events were reported. Transcranial TBS may improve short-term motor symptoms in the OFF-medication state and reduce depressive symptom scores. Cognitive benefits following transcranial TBS and the potential motor effects of transspinal TBS warrant cautious interpretation. Larger trials with standardized stimulation protocols and longer follow-up are needed to establish the durability and clinical relevance of these effects. https://www.crd.york.ac.uk/prospero/search, identifier CRD420261285544.
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