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临床试验/NCT05165654
NCT05165654已完成不适用

Improving Hallucinations by Targeting the Right Superior Temporal Sulcus With Electrical Stimulation

Beth Israel Deaconess Medical Center1 个研究点 分布在 1 个国家目标入组 12 人开始时间: 2021年11月1日最近更新:
适应症
干预措施

试验速览

阶段
不适用
状态
已完成
入组人数
12
试验地点
1
主要终点
Positive and Negative Syndrome Scale (PANSS)

研究概览

简要总结

Hallucinations are a core diagnostic feature of psychotic disorders. They involve different sensory modalities, including auditory, visual, olfactory, tactile, and gustatory hallucinations, among others. Hallucinations occur in multiple different neurological and psychiatric illnesses and can be refractory to existing treatments. Auditory hallucinations and visual hallucinations are found across diagnostic categories of psychotic disorders (schizophrenia, schizoaffective, bipolar disorder). Despite visual hallucinations being approximately half as frequent as auditory hallucinations, they almost always co-occur with auditory hallucinations, and are linked to a more severe psychopathological profile. Auditory and visual hallucinations at baseline also predict higher disability, risk of relapse and duration of psychosis after 1 and 2 years, especially when they occur in combination. Using a newly validated technique termed lesion network mapping, researchers demonstrated that focal brain lesions connected to the right superior temporal sulcus (rSTS) plays a causal role in the development of hallucinations. The rSTS receives convergent somatosensory, auditory, and visual inputs, and is regarded as a site for multimodal sensory integration. Here the investigators aim to answer the question whether noninvasive brain stimulation when optimally targeted to the rSTS can improve brain activity, sensory integration, and hallucinations.

详细描述

Functional neuroimaging studies have identified neural correlates of hallucinations across multiple brain regions. Some studies suggest a common neuroanatomical substrate independent of the sensory modality, while others suggest different neural correlates for different types of hallucinations. However, whether these neuroimaging findings represented a cause, consequence or epiphenomenon of hallucinations was unclear until recently. Using lesion network mapping, researchers demonstrated that focal brain lesions play a causal role in the development of hallucinations and can occur in different brain locations, both inside and outside sensory pathway, and that greater than 90% of lesion locations causing hallucinations are negatively connected to the right superior temporal sulcus (rSTS). The rSTS is known to play a role in social cognition, biological motion, audiovisual integration, and speech. Hence, when spontaneous activity decreases at lesion locations causing hallucinations, spontaneous activity in the rSTS increases, the exact pattern thought to predispose to hallucinations. Additionally, functional connectivity within this region is abnormal in patients with visual and auditory hallucinations. Therefore, the association between rSTS connectivity and hallucinations would suggest this region may be optimal for modulation via non-invasive brain stimulation.

One method by which cortical excitability can be altered is with transcranial direct current stimulation (tDCS), a non-invasive brain stimulation technique. High definition tDCS (HD-tDCS) is a refined version of tDCS with improved spatial precision of cortical stimulation. This involves the application of a weak electrical current (1-2 mA) delivered to the brain via scalp electrodes. tDCS can modulate cortical excitability, where anodal stimulation tends to increase (i.e. the resting potential becomes less negative) and cathodal stimulation tends to decrease the underlying membrane potential (i.e. the resting potential becomes more negative). While tDCS is a promising adjunctive treatment of auditory hallucinations and negative symptoms in schizophrenia, less is known about its role in treating hallucinations overall. To date, no study has non-invasively stimulated the rSTS with tDCS in psychosis and examined its effects on hallucinations. However, there are studies in healthy volunteers showing that anodal stimulation to the STS resulted in increased auditory false perceptions, while cathodal stimulation decreased false perceptions and was lower than the sham condition. Taken together, the recent lesion network mapping identifying the rSTS as a major source of hallucinations combined with prior studies showing that the rSTS is associated with hallucinations suggest that it may be possible to alleviate hallucinations by designing a tDCS protocol that targets the rSTS with cathodal stimulation. Technological advances in noninvasive neuromodulation and electrical field modeling further allow us to create a tDCS protocol specifically guided by the results of lesion network mapping studies with high spatial resolution.

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

Double Blinded

入排标准

年龄范围
18 Years 至 50 Years(Adult)
性别
All
接受健康志愿者
否

入选标准

  • •Aged 18-50 years of age
  • •Proficient in English
  • •Able to give informed consent
  • •Actively experiencing hallucinations (tactile, auditory, visual, etc.)
  • •Has not recently participated in tES/TMS treatments

排除标准

  • •Substance abuse or dependence (w/in past 6 months)
  • •Those who are pregnant/breastfeeding
  • •History of head injury with > 15 minutes of loss of consciousness/mal sequelae
  • •DSM-V intellectual disability
  • •Having a non-removable ferromagnetic metal within the body (particularly in the head)
  • •History of seizures

研究组 & 干预措施

Active Stimulation with TDCS

Experimental

10 tDCS; Two, twenty-minute sessions of tDCS to the rSTS for 5 days (10 total sessions).

干预措施: Transcranial Electrical Stimulation (Device)

SHAM Stimulation

Sham Comparator

10 passive sham control; Two, twenty-minute sessions of passive sham control to the rSTS for a 30 second ramped up and down at the beginning and end of the 20 min period for 5 days (10 total sessions).

干预措施: Transcranial Electrical Stimulation (Device)

结局指标

主要结局

Positive and Negative Syndrome Scale (PANSS)

时间窗: Change from baseline to month follow-up

Measuring total psychosis symptoms score (Total score minimum = 30, maximum = 210); General symptoms (minimum score = 16, maximum score = 112); Negative Symptoms (minimum score = 16, maximum score = 112); and Positive Symptoms (minimum score = 16, maximum score = 112); higher scores represent higher severity of symptoms

University of Miami Parkinson's Disease Hallucinations Questionnaire (UM-PDHQ)

时间窗: Change from baseline to month follow-up

Measuring severity and duration of hallucinations; 20-item questionnaire to be used as a screening instrument to assess hallucinations (6 quantitative and 14 qualitative items); higher scores represent higher severity of symptoms. Total quantitative score (min = 0; max = 14).

7-item Auditory Hallucinations Rating Scale (AHRS)

时间窗: Change from baseline to month follow-up

Measuring severity and duration of hallucinations; severity for each item is rated on a 7-point scale; higher scores represent higher severity of symptoms. Total score (0-41).

Positive and Negative Syndrome Scale (PANSS)

时间窗: Change from baseline to month follow-up

Measuring total psychosis symptoms score (Total score minimum = 30, maximum = 210); General symptoms (minimum score = 16, maximum score = 112); Negative Symptoms (minimum score = 16, maximum score = 112); and Positive Symptoms (minimum score = 16, maximum score = 112); higher scores represent higher severity of symptoms

University of Miami Parkinson's Disease Hallucinations Questionnaire (UM-PDHQ)

时间窗: Change from baseline to month follow-up

Measuring severity and duration of hallucinations; 20-item questionnaire to be used as a screening instrument to assess hallucinations (6 quantitative and 14 qualitative items); higher scores represent higher severity of symptoms. Total quantitative score (min = 0; max = 14).

7-item Auditory Hallucinations Rating Scale (AHRS)

时间窗: Change from baseline to month follow-up

Measuring severity and duration of hallucinations; severity for each item is rated on a 7-point scale; higher scores represent higher severity of symptoms. Total score (0-41).

Positive and Negative Syndrome Scale (PANSS)

时间窗: Change from baseline to day 5

Measuring total psychosis symptoms score (Total score minimum = 30, maximum = 210); General symptoms (minimum score = 16, maximum score = 112); Negative Symptoms (minimum score = 16, maximum score = 112); and Positive Symptoms (minimum score = 16, maximum score = 112); higher scores represent higher severity of symptoms

University of Miami Parkinson's Disease Hallucinations Questionnaire (UM-PDHQ)

时间窗: Change from baseline to day 5

Measuring severity and duration of hallucinations; 20-item questionnaire to be used as a screening instrument to assess hallucinations (6 quantitative and 14 qualitative items); higher scores represent higher severity of symptoms. Total quantitative score (min = 0; max = 14).

7-item Auditory Hallucinations Rating Scale (AHRS)

时间窗: Change from baseline to day 5

Measuring severity and duration of hallucinations; severity for each item is rated on a 7-point scale; higher scores represent higher severity of symptoms. Total score (0-41).

次要结局

  • Symptom Checklist-90(Change from baseline to month follow-up)
  • Resting State EEG(Change from baseline to month follow-up)
  • Neurological Evaluation Scale; Sensory Integration(Change from baseline to month follow-up)
  • Montgomery-Asberg Depression Rating Scale (MADRS)(Change from baseline to month follow-up)
  • Young Mania Rating Scale (YMRS)(Change from baseline to month follow-up)
  • Brief Assessment of Cognition (BACS)(Change from baseline to month follow-up)
  • Auditory Steady State Evoked Potential(Change from baseline to month follow-up)
  • Steady State Visual Evoked Potential(Change from baseline to month follow-up)
  • Cross Modal Steady State Evoked Potential(Change from baseline to month follow-up)
  • Resting State EEG(Change from baseline to month follow-up)
  • Biological Motion(Change from baseline to month follow-up)
  • Neurological Evaluation Scale; Sensory Integration(Change from baseline to month follow-up)
  • Global Assessment of Function (GAF)(Change from baseline to month follow-up)
  • Montgomery-Asberg Depression Rating Scale (MADRS)(Change from baseline to month follow-up)
  • Young Mania Rating Scale (YMRS)(Change from baseline to month follow-up)
  • Brief Assessment of Cognition (BACS)(Change from baseline to month follow-up)
  • Symptom Checklist-90(Change from baseline to month follow-up)
  • Auditory Steady State Evoked Potential(Change from baseline to day 5)
  • Steady State Visual Evoked Potential(Change from baseline to day 5)
  • Cross Modal Steady State Evoked Potential(Change from baseline to day 5)
  • Resting State EEG(Change from baseline to 5 day)
  • Biological Motion(Change from baseline to 5 day)
  • Neurological Evaluation Scale; Sensory Integration(Change from baseline to 5 day)
  • Global Assessment of Function (GAF)(Change from baseline to day 5)
  • Montgomery-Asberg Depression Rating Scale (MADRS)(Change from baseline to 5 day)
  • Young Mania Rating Scale (YMRS)(Change from baseline to 5 day)
  • Brief Assessment of Cognition (BACS)(Change from baseline to 5 day)
  • Symptom Checklist-90(Change from baseline to 5 day)

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Paulo Lizano

Assistant Professor

Beth Israel Deaconess Medical Center

研究点 (1)

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