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临床试验/NCT00564096
NCT00564096Unknown2 期

A Prospective Multicenter Double Blind Randomized Controlled Trial to Explore the Tolerability, Safety and Efficacy of the H1-Coil Deep Transcranial Magnetic Stimulation (TMS) in Subjects With Schizophrenia Experiencing Auditory Hallucinations

BeerYaakov Mental Health Center2 个研究点 分布在 1 个国家目标入组 20 人开始时间: 2008年10月1日最近更新:
适应症

试验速览

阶段
2 期
发起方
入组人数
20
试验地点
2
主要终点
1.Auditory hallucinations Rating Scale developed by Hoffman and colleagues (2003) 2.SAPS 3.CGI 4.SANS 5.GAF

研究概览

简要总结

Until recently stimulation of nervous tissue deeper than approximately 2 cm from the scalp (will hence be called non-deep TMS) was not possible (3).A new coil ("H"-coil invented in Weizmann Institute of Science, Neurobiology Department, Rehovot, Israel ) capable of stimulating more than twice this depth (Up to 5 cm)was recently developed.Deep TMS is using this h-coil.

Auditory hallucinations are reported by 50% to 70% of patients with schizophrenia and generally consist of spoken speech or "voices." . Patients usually describe the hallucinatory experience as distressing, consistent with evidence that the most common hallucinated utterances are abusive terms,contributing in up to 25% of the cases to a serious suicide attempt.The neuroanatomical basis of auditory hallucinations is thought to involve increasing blood flow of the speech perception areas of the brain, such as the superior temporal cortex of the dominant hemisphere as well as right and left superior temporal cortex.Brain imaging studies of patients with auditory hallucinations have revealed an active area in the right and left superior temporal cortex, Broca's area, and the left temporoparietal cortex. Shergill et al. reported the presence of active areas in the anterior cingulate cortex, right thalamus, left hippocampus, and parahippocampal cortex when subjects were experiencing auditory hallucinations.

Magnetic Stimulation of Left Temporoparietal Cortex suggest that the mechanism of auditory hallucinations involves activation of the left temporoparietal cortex.Reasons to believe that right frontotemporal TMS stimulation cortex can ameliorate auditory hallucinations include evidence that right temporoparietal stimulation achieved significant changes in the frequency of auditory hallucinations,in the patients with auditory hallucinations an increase in blood flow is noted in the right superior temporal gyrus,right temporal lobe activation during auditory hallucination,effect of rTMS can spread to the opposite hemisphere through interhemispheric connections,some evidence that brain circuits involved in the production of auditory hallucinations and symptoms of schizophrenia are widespread and not confined in the left temporoparietal cortex.Deep TMS can reach brain structures as deep as 5 cm whereas non-deep TMS can reach structures less than half that distance. As deep brain structures such as thalamic, limbic and paralimbic regions have been shown to be activated during auditory hallucinations and suspected to play a role in the pathogenesis of auditory hallucinations, their stimulation may attenuate auditory hallucinations. Non-deep TMS can stimulate the cortex but not the neuronal pathways connecting it to deeper brain structures and which stimulation may be additive.

详细描述

Research of deep TMS treatment in patients with schizophrenia experiencing auditory hallucinations, double blind placebo(sham) controlled study October 14, 2007

Physical background

Modern TMS began in 1985 when Barker and colleagues in Sheffield, UK, developed the first TMS device. However, the original commercially available stimulators were limited in the frequency with which they could produce stimuli by the recharging circuits therefore only allowing for the application of single-pulse TMS. To date, devices capable of stimulating the brain at frequencies up to 100 Hz have opened up new possibilities in magnetic stimulation.

TMS is based on Faraday's principle of electromagnetic induction. A rapidly changing magnetic field (2 T) is generated by passing a very brief (0.2-0.9 milliseconds (ms)) high-current alternating electric pulse through an insulated coil made of wire. When the coil is placed against the scalp the magnetic field passes readily through the skull and induces a weak electrical current in the superficial cortex of the brain lasting exactly as long as the current pulse in the coil. The induced electrical activity can cause cortical neurons to discharge action potentials.Until recently stimulation of nervous tissue deeper than approximately 2 cm from the scalp was not possible.

Neurobiological background

研究设计

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

入排标准

年龄范围
18 Years 至 60 Years(Adult)
性别
All
接受健康志愿者

入选标准

  • Patients will fulfill DSM-IV-TR diagnostic criteria for schizophrenia
  • Patients reporting auditory hallucinations on average at least 5 times per day based on prospective assessment using a diary or handheld counter.
  • Patients are maintained on their psychotropic medication at steady dosages for at least 4 weeks before study entry and for the duration of the trial.

排除标准

  • Cardiac pacemaker implant, or a history of epilepsy, neurosurgery, or brain trauma patients suffering from chronic medical conditions of any sort
  • History of current hypertension
  • History of seizure or heat convulsion
  • History of epilepsy or seizure in first degree relatives
  • History of head injury
  • History of any metal in the head (outside the mouth)
  • Known history of any metallic particles in the eye
  • Implanted cardiac pacemaker or any intra-cardiac lines
  • Implanted neuro-stimulators
  • Surgical clips or any medical pumps
  • History of frequent or severe headaches
  • History of migraine
  • History of hearing loss
  • Known history of cochlear implants
  • History of drug abuse or alcoholism
  • Pregnancy or not using a reliable method of birth control (non-pregnancy will be proved by beta-HCG test)
  • Systemic and metabolic disorders
  • Inadequate communication skills or under custodial care.

结局指标

主要结局

1.Auditory hallucinations Rating Scale developed by Hoffman and colleagues (2003) 2.SAPS 3.CGI 4.SANS 5.GAF

时间窗: Prospective

次要结局

  • Q-LES-Q(prospective)
  • QIDS-SR16(prospective)
  • CTAHE(prospective)

研究者

发起方
BeerYaakov Mental Health Center
申办方类型
Other Gov

研究点 (2)

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