Central Post Stroke Pain

6

Review clinical trials related to Central Post Stroke Pain. Use filters to narrow results by trial status, phase, treatment, biological sex and sponsor.

Condition / disease
Location
Status: Not yet recruiting

Motor Cortex Stimulation for Post-Stroke Thalamic Pain

The goal of this clinical trial is to investigate the mechanisms and predictive factors of motor cortex stimulation (MCS) for treating post-stroke thalamic pain, a challenging central neuropathic pain condition. Approximately 25% of patients show no short-term response to MCS, and about 20% experience long-term efficacy decay, yet the underlying analgesic mechanisms remain unclear and objective predictive biomarkers are lacking. This study aims to answer the following main questions: How does MCS modulate thalamic pain through the coordinated interaction of structural connectivity, functional network dynamics, and metabolic balance in the brain? What are the distinct neuroimaging characteristics that differentiate short-term non-responders, long-term responders, and those with long-term efficacy decay? Which multimodal imaging biomarkers can reliably predict short-term and long-term MCS efficacy? Participants will undergo a two-stage MCS surgical procedure. In stage I, epidural electrodes are implanted over the motor cortex, followed by a 2-week external trial stimulation. Participants who achieve a ≥50% reduction in Visual Analog Scale (VAS) pain score will proceed to stage II, receiving an implanted pulse generator for long-term stimulation. Those who do not respond in the short term will have the electrodes removed without undergoing stage II implantation. All participants will complete baseline clinical assessments and multimodal MRI scans (including T1, DTI, resting-state fMRI, and MRS) before surgery. Participants who receive the permanent implant will undergo follow-up clinical evaluations and repeat MRI scans at 3 and 6 months post-surgery. Researchers will compare imaging features across three outcome groups-short-term non-responders, long-term responders, and long-term decay group-to identify predictive biomarkers. Multimodal imaging data will be integrated using LASSO regression to build prediction models for both short-term screening and long-term efficacy warning. This research is expected to establish a "mechanism exploration - efficacy prediction - clinical decision" paradigm, providing objective imaging-based evidence to guide patient selection and postoperative management for MCS treatment.

Participants needed: 200
Trial details
Age: 18-80Biological sex: AllType: InterventionalSponsor: Aerospace Center HospitalUpdated: Aug 11, 2026
Eligibility criteria

Age between 18 and 80 years. Diagnosed with chronic post-stroke central pain wit...

History of alcohol, drug, or substance abuse or dependence within the past 12 mo...

Status: Recruiting

Treatment of Post-Stroke Central Pain

To evaluate the short-term analgesic efficacy of stSCS combined with pharmacotherapy compared with pharmacotherapy alone in patients with CPSP, measured by Numerical Rating Scale (NRS) score immediately after treatment.

Participants needed: 80
Trial details
Age: 18+Biological sex: AllType: InterventionalSponsor: Nanchong Central HospitalUpdated: May 18, 2026Locations: 1
Eligibility criteria

Diagnosis of central post-stroke pain (CPSP) according to the International Asso... [+8]

History of chronic pain before stroke [+3]

Status: Recruiting

Thalamic-Burst-DBS for Neuropathic Pain

Central post-stroke pain (CPSP) is a neuropathic pain syndrome and one of the major sequelae after ischemic or hemorrhagic cerebral stroke. Recently, a modified stimulation paradigm has been developed in the field of spinal cord stimulation (SCS) for a variety of neuropathic pain disorders. To date, this stimulation paradigm has not yet been evaluated systematically for deep brain stimulation to treat neuropathic pain disorders. The purpose of this clinical investigation is to investigate if Burst-DBS of the thalamus is more effective compared to classical continuous low-frequency stimulation DBS to reduce the subjective pain intensity in patients with chronic neuropathic pain after stroke or in patients with neuropathic facial pain.

Participants needed: 20
Trial details
Age: 18-75Biological sex: AllType: InterventionalSponsor: Insel Gruppe AG, University Hospital BernUpdated: May 6, 2026Locations: 1
Eligibility criteria

Signed informed consent [+6]

Significant cognitive impairment (total MOCA score < 1.5 standard deviations fro... [+12]

Status: Not yet recruiting

Effect of Early Neuromodulation Coupled With Rehabilitation on the Prevention of Post-stroke Pain

This is a prospective clinical study to evaluate the efficacy of tDCS stimulation, coupled with conventional rehabilitation, on the development of post-stroke neuropathic pain. The study involves a double-blind, randomized, sham-controlled experimental protocol involving 2 parallel groups with patients allocated according to a Fleming design (40 patients in the active group, 20 patients in the control group). The study is aimed at sub-acute post-stroke patients. After recruitment, they will receive 10 sessions of tDCS stimulation (2mA, 20 minutes with a current on/off ramp of 0.1 mA/s). For the control group, stimulation will stop after the current ramp.

Participants needed: 60
Trial details
Age: 18+Biological sex: AllType: InterventionalSponsor: University Hospital, Clermont-FerrandUpdated: Dec 23, 2025Locations: 2
Eligibility criteria

Age ≥18 years [+10]

Contraindication to tDCS (epilepsy/history of epilepsy, intracranial ferromagnet... [+15]

Status: Recruiting

Efficacy of Pain Intervention With Deep Brain Stimulation Neuromodulation

The goal of this clinical trial is to learn if deep brain stimulation (DBS) works to treat severe pain following a stroke in adults. It will also learn about the safety of deep brain stimulation. The main questions it aims to answer are: * Does DBS lower the pain score in these participants. * What medical problems do participants have when having DBS? Researchers will compare different settings, to see if DBS works to treat severe post stroke pain. Participants will: * Undergo baseline screening procedures and have an MRI scan. * Have neurosurgery to put the DBS system in * Have follow up for 10 months * Visit the clinic at least 5 times in the study for check-ups and tests * Fill in questionnaires about pain and mood and have check ups remotely

Participants needed: 30
Trial details
Age: 21+Biological sex: AllType: InterventionalSponsor: University of OxfordUpdated: Nov 19, 2025Locations: 1
Eligibility criteria

Willing and able to give informed consent for participation in the trial. [+4]

Contraindication for elective general anaesthesia, for example but not limited t... [+10]

Status: Recruiting

Neuromodulation for Central Post-stroke Pain: Mechanism, Safety and Outcome

Central post-stroke pain (CPSP) is an often pharmacorefractory type of neuropathic pain that develops in 8% of stroke patients. CPSP has been treated with three distinct types of neuromodulation (deep brain stimulation of the sensory thalamus (Vc-DBS), motor cortex repetitive transcranial magnetic stimulation (M1-rTMS), and motor cortex stimulation (MCS)), but the level of evidence for these procedures is very low. Moreover, data on the changes in pain brain circuitry in CPSP, and the effect of neuromodulation on this circuitry is very limited.

Participants needed: 32
Trial details
Age: 18-70Biological sex: AllType: InterventionalSponsor: Universitaire Ziekenhuizen KU LeuvenUpdated: Jul 1, 2024Locations: 1
Eligibility criteria

Able to provide voluntary written informed consent of the participant prior to a... [+3]

Aphasia [+7]