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临床试验/NCT05708729
NCT05708729招募中不适用

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

Universitaire Ziekenhuizen KU Leuven2 个研究点 分布在 1 个国家目标入组 32 人开始时间: 2023年1月24日最近更新:
适应症

试验速览

阶段
不适用
状态
招募中
入组人数
32
试验地点
2
主要终点
The relative difference in pain intensity (Visual Analogue Scale; VAS) immediately following 10 sessions of active vs. inactive rTMS;

研究概览

简要总结

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.

详细描述

In this project, we propose a prospective double-blind randomized crossover on/off study in 32 CPSP patients. These patients will undergo M1-rTMS and either MCS or Vc-DBS. Before and after active and inactive stimulation they will be assessed with clinical scales for pain, function, quality of life and depression. Adverse events will be monitored. This allows to measure the outcome and safety of neuromodulation in CPSP.

In addition, we will have functional magnetic resonance imaging (fMRI) and positron emission tomography (PET) use. This will provide insight into the pathological changes in the pain circuitry, and the influence of neuromodulation.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Treatment
盲法
Double (Participant, Investigator)

盲法说明

Blinding for rTMS (active stimulation vs sham stimulation)

入排标准

年龄范围
18 Years 至 70 Years(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Able to provide voluntary written informed consent of the participant prior to any screening procedures
  • Male or female patients
  • Aged 18-70 years
  • Diagnosed with definite CPSP (Treede-Klit criteria) (1, 9), which is pharmacorefractory (i.e. amitriptyline 75mg/d 4w, lamotrigine 200mg/d 8w and pregabalin 600mg/d resulting in <50% VAS reduction and/or intolerable side-effects)

排除标准

  • Pregnancy or intention to become pregnant in the following year
  • Medical inoperability
  • Impossibility to temporarily withhold anticoagulation or anti-platelet medication
  • Impossibility to undergo MRI, fMRI and/or PET imaging
  • Complete destruction of the stimulation target region (M1 or Vc)
  • Uncontrolled seizures
  • Expected relocation in the following year.

结局指标

主要结局

The relative difference in pain intensity (Visual Analogue Scale; VAS) immediately following 10 sessions of active vs. inactive rTMS;

时间窗: After completion of all rTMS sessions (approximately one month before surgery)

The patients will receive 10 sessions (1/d) of active and 10 sessions (1/d) of sham M1-rTMS with a 8-week wash-out period in between.

The relative difference in pain intensity (Visual Analogue Scale; VAS) immediately following 4 weeks of active (with optimized stimulation parameters) vs. inactive MCS or Vc-DBS.

时间窗: After completion of the 4 weeks of active vs. inactive MCS or Vc-DBS (approximately at 9 months after surgery)

Stimulation will be optimised for all patients up to 5 months post-surgery (Vc-DBS or MCS). After 2 weeks of wash-out, active and inactive stimulation will be offered in a double-blinded fashion for 4 weeks, with 2 weeks of wash-out in between.

次要结局

  • The relative difference in quality of life* immediately following 10 sessions of active vs. inactive rTMS;(Immediately after completion of the 10 sessions of active (1 per day, on 10 consecutive days) and 10 sessions of sham (1 per day, on 10 consecutive days) M1-rTMS with a 8 weeks washout period inbetween)
  • The relative difference in mood* immediately following 10 sessions of active vs. inactive rTMS;(Immediately after completion of the 10 sessions of active (1 per day, on 10 consecutive days) and 10 sessions of sham (1 per day, on 10 consecutive days) M1-rTMS with a 8 weeks washout period inbetween)
  • The relative difference in pain symptoms* immediately following 10 sessions of active vs. inactive rTMS;(Immediately after completion of the 10 sessions of active (1 per day, on 10 consecutive days) and 10 sessions of sham (1 per day, on 10 consecutive days) M1-rTMS with a 8 weeks washout period inbetween)
  • The relative difference in use of analgesics* immediately following 10 sessions of active vs. inactive rTMS;(Immediately after completion of the 10 sessions of active (1 per day, on 10 consecutive days) and 10 sessions of sham (1 per day, on 10 consecutive days) M1-rTMS with a 8 weeks washout period inbetween)
  • The relative difference in functionality* immediately following 10 sessions of active vs. inactive rTMS;(Immediately after completion of the 10 sessions of active (1 per day, on 10 consecutive days) and 10 sessions of sham (1 per day, on 10 consecutive days) M1-rTMS with a 8 weeks washout period inbetween)
  • The relative difference in pain symptoms* immediately following 4 weeks of active (with optimized stimulation parameters) vs. inactive MCS or Vc-DBS;(immediately following 4 weeks of active (with optimized stimulation parameters) vs. inactive MCS or Vc-DBS;)
  • The relative difference in use of analgesics* immediately following 4 weeks of active (with optimized stimulation parameters) vs. inactive MCS or Vc-DBS;(immediately following 4 weeks of active (with optimized stimulation parameters) vs. inactive MCS or Vc-DBS;)
  • The relative difference in functionality* immediately following 4 weeks of active (with optimized stimulation parameters) vs. inactive MCS or Vc-DBS;(immediately following 4 weeks of active (with optimized stimulation parameters) vs. inactive MCS or Vc-DBS;)
  • The relative difference in mood* immediately following 4 weeks of active (with optimized stimulation parameters) vs. inactive MCS or Vc-DBS;(immediately following 4 weeks of active (with optimized stimulation parameters) vs. inactive MCS or Vc-DBS;)
  • The relative difference in quality of life* immediately following 4 weeks of active (with optimized stimulation parameters) vs. inactive MCS or Vc-DBS;(immediately following 4 weeks of active (with optimized stimulation parameters) vs. inactive MCS or Vc-DBS;)
  • The relative difference in metabolic activity (as measured through FDG-PET) in pain matrix areas immediately following 10 sessions of active vs. inactive rTMS;(Immediately after completion of the 10 sessions of active (1 per day, on 10 consecutive days) and 10 sessions of sham (1 per day, on 10 consecutive days) M1-rTMS with a 8 weeks washout period inbetween)
  • The relative difference in metabolic activity (as measured through rsMRI) in pain matrix areas immediately following 10 sessions of active vs. inactive rTMS;(Immediately after completion of the 10 sessions of active (1 per day, on 10 consecutive days) and 10 sessions of sham (1 per day, on 10 consecutive days) M1-rTMS with a 8 weeks washout period inbetween)
  • The relative difference in metabolic activity (as measured through rsMRI) in pain matrix areas immediately following 4 weeks of active (with optimized stimulation parameters) vs. inactive MCS or Vc-DBS;(immediately following 4 weeks of active (with optimized stimulation parameters) vs. inactive MCS or Vc-DBS;)
  • The spike rate in the presence or absence of noxious/innocuous sensory stimuli (selected through baseline QSM);(Intraoperative)
  • The spectral power* in the presence or absence of noxious/innocuous sensory stimuli (selected through baseline QSM);(Intraoperative)
  • The spectral power* in the presence and absence of noxious and innocuous sensory stimuli (selected through baseline QSM)(following 4 weeks of active (with optimized stimulation parameters) vs. inactive MCS or Vc-DBS;)
  • Other neurophysiological parameters* in the presence and absence of noxious and innocuous sensory stimuli (selected through baseline QSM)(following 4 weeks of active (with optimized stimulation parameters) vs. inactive MCS or Vc-DBS;)
  • The safety during active and inactive rTMS(during active and inactive rTMS)
  • The safety during active and inactive MCS or Vc-DBS.(during active and inactive MCS or Vc-DBS.)
  • The relative difference in metabolic activity (as measured through FDG-PET) in pain matrix areas immediately following 4 weeks of active (with optimized stimulation parameters) vs. inactive MCS or Vc-DBS;(immediately following 4 weeks of active (with optimized stimulation parameters) vs. inactive MCS or Vc-DBS;)
  • Other neurophysiological parameters* in the presence or absence of noxious/innocuous sensory stimuli (selected through baseline QSM);(Intraoperative)
  • The safety for every procedure and during active and inactive rTMS, MCS and/or Vc-DBS.(during procedure and during active and inactive rTMS, MCS and/or Vc-DBS.)
  • The safety for every procedure(during procedure)
  • The spike rate* in the presence and absence of noxious and innocuous sensory stimuli (selected through baseline QSM)(following 4 weeks of active (with optimized stimulation parameters) vs. inactive MCS or Vc-DBS;)

研究者

申办方类型
Other
责任方
Sponsor

研究点 (2)

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