跳至主要内容
临床试验/NCT03621540
NCT03621540已完成不适用

Augmentation of Working Memory Training With Transcranial Direct Current Stimulation (tDCS) in Patients With Schizophrenia

University Hospital Tuebingen4 个研究点 分布在 1 个国家目标入组 37 人开始时间: 2018年4月20日最近更新:
适应症

试验速览

阶段
不适用
状态
已完成
入组人数
37
试验地点
4
主要终点
Change (post training - pre training) in working memory task performance (1-,2-,3-back).

研究概览

简要总结

Cognitive impairment is a core symptom of schizophrenia and is in a large part responsible for the poor psychosocial outcome of the disorder. The use of non-invasive brain stimulation techniques as a therapeutic option is just commencing for neuropsychiatric patients. Concerning healthy subjects the investigators have previously shown that anodal tDCS to the right dorsolateral prefrontal cortex (DLPFC) parallel to working memory training can sustainingly enhance performance in a spatial n-back task. Additionally, first translational experiments regarding the use of anodal tDCS to improve working memory (WM) in patients with schizophrenia rendered promising results.

On those grounds, the investigators now test the hypothesis that anodal tDCS to the right DLPFC can augment working memory training in patients with schizophrenia.

详细描述

Cognitive impairments are a core and debilitating feature of schizophrenia, but effective treatment options are scarce. These deficits develop early in the progression of the disorder, frequently persist throughout lifespan and are considered a possible endophenotype of the disorder. Everyday functioning, work ability and social integration are substantially affected. A proper treatment of cognitive symptoms would probably reduce individual consequences like unemployment or early retirement and alleviate the resulting cost for our societies.

Working memory, the ability to temporally maintain and manipulate information, is critically relevant as interface between sensory input and the attainment of behavioral goals. It plays a pivotal role in executive functioning and shares overlapping cognitive processes with social cognition. The characteristic WM deficits in patients with schizophrenia are associated with aberrant dlPFC activation and connectivity, rendering this brain region a prime target for treatment interventions. Cognitive and specifically WM training have been proven effective to change prefrontal activation pattern resulting in improved performance. However, the effect sizes are moderate and the expenditure is high, so that training paradigms are not consistently implemented in regular treatment.

A possible way to increase the efficacy of WM training is the augmentation with non-invasive brain stimulation techniques. Transcranial direct current stimulation modulates neuronal membrane potentials and is regulating cortical excitability depending on polarity. Specifically, anodal stimulation can induce long-lasting cortical excitability elevations.

First translational studies exploring the effectiveness of tDCS to enhance cognition in patients with schizophrenia yielded promising results.To extend this knowledge, the investigators examine the effect of a tDCS augmented WM training (2 mA to the right dlPFC) in patients with schizophrenia. The WM training consists of two weeks (10 daily sessions) of 20 minute adaptive spatial n-back training, complemented by a Pre/Post session and two follow-up measurements after 4 and 12 weeks. In the two arms parallel study design, patients will be randomized either to the group receiving active anodal tDCS during the training or to the other group receiving sham stimulation during the training. The investigators hypothesize an enhancement of WM performance by anodal tDCS and investigate possible transfer effects in other cognitive tasks, psychopathology, quality of life and subjective cognitive capabilities. The investigators will further analyze the influence of the genetic make-up, neurophysiological signatures and other demographic and cognitive variables on the stimulation effect.

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
Triple (Participant, Care Provider, Investigator)

盲法说明

Use of NeuroConn Stimulator study mode

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

  • diagnosis of schizophrenia or schizoaffective disorder
  • age 18-60 years
  • Ability to give informed consent
  • right handedness
  • stable antipsychotic medication one week prior to the experiment and during the training sessions

排除标准

  • metal implants near the head
  • pregnancy
  • use of antiepileptics
  • use of benzodiazepines > 1 mg lorazepam equivalent
  • current substance abuse (excluding tabacco)
  • missing consent of the legal representative, if existing

结局指标

主要结局

Change (post training - pre training) in working memory task performance (1-,2-,3-back).

时间窗: Pre Training: 3-4 days before training start. Post Training: 3-4 days after completion of working memory training.

Use of d' and response time as dependent variables. Based on signal detection theory, the discriminability index d' (d-prime) is calculated by using the formula d' = Z(hit rate) - Z(false alarm rate).

次要结局

  • Change (post training - pre training) in cognitive flexibility and processing speed.(Pre Training: 3-4 days before training start. Post Training: 3-4 days after completion of training. And changes in follow-up sessions: 4 and 12 weeks after completion of working memory training.)
  • Change (post training - pre training) in cognition.(Pre Training: 3-4 days before training start. Post Training: 3-4 days after completion of training. And changes in follow-up sessions: 4 and 12 weeks after completion of working memory training.)
  • Change (post training - pre training) in depressive symptoms.(Pre Training: 3-4 days before training start. Post Training: 3-4 days after completion of training.)
  • Change (follow-up - pre training) in depressive symptoms.(Pre Training: 3-4 days before training start. Follow-up sessions: 4 and 12 weeks after completion of working memory training.)
  • Change (follow-up - pre training) in psychopathology.(Pre Training: 3-4 days before training start. Follow-up sessions: 4 and 12 weeks after completion of working memory training.)
  • Change (follow-up - pre training) in working memory task performance (1-,2-,3-back).(Pre Training: 3-4 days before training start. Follow up: 4 and 12 weeks after completion of working memory training.)
  • Change (post training - pre training) in psychopathology.(Pre Training: 3-4 days before training start. Post Training: 3-4 days after completion of training. And changes in follow-up sessions: 4 and 12 weeks after completion of working memory training.)
  • Change (follow-up - pre training) in cognitive flexibility and processing speed.(Pre Training: 3-4 days before training start. Follow-up sessions: 4 and 12 weeks after completion of working memory training.)
  • Change (follow-up - pre training) in cognition.(Pre Training: 3-4 days before training start. Follow-up sessions: 4 and 12 weeks after completion of working memory training.)
  • Change (post training - pre training) in negative symptoms(Pre Training: 3-4 days before training start. Post Training: 3-4 days after completion of training.)
  • Change (follow-up - pre training) in negative symptoms(Pre Training: 3-4 days before training start. And changes in follow-up sessions: 4 and 12 weeks after completion of working memory training.)
  • Change (post training - pre training) in quality of life.(Pre Training: 3-4 days before training start. Post Training: 3-4 days after completion of training.)
  • Change (follow-up - pre training) in quality of life.(Pre Training: 3-4 days before training start. Post Training: 3-4 days after completion of training. And changes in follow-up sessions: 4 and 12 weeks after completion of working memory training.)
  • Change (post training - pre training) in subjective cognitive capacity.(Pre Training: 3-4 days before training start. Post Training: 3-4 days after completion of training.)
  • Differences in EEG signatures between interventional arms.(Pre Training: 3-4 days before training start. Post Training: 3-4 days after completion of training)
  • Change (follow-up - pre training) in subjective cognitive capacity.(Pre Training: 3-4 days before training start. Follow-up sessions: 4 and 12 weeks after completion of working memory training.)

研究者

申办方类型
Other
责任方
Sponsor

研究点 (4)

Loading locations...

相似试验

Augmentation of Working Memory Training With... | 临床试验