跳至主要内容
临床试验/NCT02467114
NCT02467114已完成不适用

Interactions Between Attentional Networks and Their Influence on Perception: a Project in Healthy Subjects and Hemispatial Neglect Patients

Insel Gruppe AG, University Hospital Bern1 个研究点 分布在 1 个国家目标入组 214 人开始时间: 2015年6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
214
试验地点
1
主要终点
Cortical excitability, as measured by motor evoked potentials (MEPs)

研究概览

简要总结

Attention can be defined as the preparedness to rapidly and accurately respond to stimuli coming from the investigators environment and to effectively select between relevant and irrelevant information. According to a current model, visual attentional control is based on two separate groups of brain regions, so called brain networks. These networks control different attentional aspects (e.g., spatial/non-spatial attention) and they interact with each other. A disruption of these interactions can lead to attentional disorders such as hemispatial neglect. Patients with hemispatial neglect have difficulties directing their attention to the left visual field and they act as though the latter does not exist.

To date, the interactions between the two attentional networks are poorly understood. The aim of this study consists in further clarifying different aspects of these interactions and their influence on visual perception in healthy participants and in patients with hemispatial neglect. Transcranial magnetic stimulation (TMS) will be the principal method applied in this study. TMS is a painless and non-invasive method, with which the activity of brain areas can be influenced temporarily. This allows us to draw conclusions regarding the functions and interactions of these brain areas.

This study is designed to have a significant impact on the basic understanding of attentional control in the human brain and it can benefit the comprehension and treatment of attentional disorders, such as hemispatial neglect.

详细描述

Background

Attention can be defined as the preparedness to rapidly and accurately respond to stimuli coming from the investigators environment and to effectively select between relevant and irrelevant information. Attention is a complex cognitive function based on multiple components. A recent model postulates that attentional control in the brain is based on two discrete neural networks. The ventral (temporo-parietal - ventral frontal) network controls non-spatial aspects of attention, such as alertness and vigilance, and stimulus detection and reorientation in both hemifields. This network is lateralized towards the right hemisphere and plays a role as a 'circuit-breaker'. The dorsal (superior parietal - dorsal frontal) network controls spatial attentional shifts, is largely top-down driven, and substantially overlaps with eye movement control. This network is not functionally lateralized, each hemisphere containing dynamic topographical maps of the contralateral space. Moreover, the dorsal networks of the two hemispheres compete to direct attention to the contralateral hemispace, thereby exerting reciprocal inhibition.

Hemispatial neglect - the failure to detect, orient, or respond to stimuli located in the contralesional side of space - has been interpreted in terms of pathological changes in the interaction between the two attentional networks. Neglect is very common after cerebral lesions of the right hemisphere, usually affecting the ventral attentional network. The structurally intact right dorsal network would thus receive a weakened input from the right ventral network. The ensuing imbalance in the inhibition between the dorsal networks of the two hemispheres would then result in the rightward bias in attentional allocation, typically observed in hemispatial neglect.

However, little is known regarding the interactions between ventral and dorsal attentional networks and their influence on perception, and the greatest part of the evidence has been acquired through correlational approaches. The aim of this study is to further elucidate different aspects of these interactions and to investigate their influence on spatial and non-spatial attentional performance and on visual perception.

Objective

研究设计

研究类型
Interventional
分配方式
Na
干预模型
Single Group
主要目的
Basic Science
盲法
Single (Participant)

入排标准

年龄范围
18 Years 至 80 Years(Adult, Older Adult)
性别
All
接受健康志愿者
是

入选标准

  • •Written informed consent
  • •Healthy participants:
  • •Age 18-80 years
  • •Neurologically healthy, i.e., with no documented or present neurological disease or brain injury
  • •normal or corrected-to-normal visual acuity
  • •Patients:
  • •Age 18-80 years
  • •Showing signs of left hemispatial neglect after a right-hemispheric brain lesion, as assessed by previous neuropsychological testing and clinical judgment
  • •Normal or corrected-to-normal visual acuity

排除标准

  • •Healthy participants:
  • •Any instable medical condition, in particular epilepsy (past or present, including seizures or febrile convulsions)
  • •Any surgical intervention to the brain
  • •Implanted medical devices (e.g., cochlear implants, infusion pumps, neurostimulators, pacemakers)
  • •Presence of metal in the region of the head (excluding fixed dental implants such as tooth fillings or fixed dental braces)
  • •Drug or alcohol abuse
  • •Intake of any medication that is likely to lower seizure threshold
  • •For female participants: pregnancy or breast feeding or intention to become pregnant during the course of the experiment. All participants of childbearing potential will be asked to take a pregnancy test.
  • •Patients:
  • •Any instable medical condition, in particular epilepsy (past or present, including seizures or febrile convulsions)
  • •Implanted medical devices (e.g., cochlear implants, infusion pumps, neurostimulators, pacemakers)
  • •Presence of metal in the region of the head (excluding fixed dental implants such as tooth fillings or fixed dental braces)
  • •Drug or alcohol abuse
  • •Intake of any medication that is likely to lower seizure threshold
  • •For female participants: pregnancy or breast feeding or intention to become pregnant during the course of the experiment. All participants of childbearing potential will be asked to take a pregnancy test

研究组 & 干预措施

All study participants

Experimental

Stimulation with TMS, a sham coil & no intervention

干预措施: Transcranial magnetic stimulation (TMS) (Device)

All study participants

Experimental

Stimulation with TMS, a sham coil & no intervention

干预措施: Sham coil stimulation (Device)

All study participants

Experimental

Stimulation with TMS, a sham coil & no intervention

干预措施: Control without stimulation (Other)

结局指标

主要结局

Cortical excitability, as measured by motor evoked potentials (MEPs)

时间窗: During or within 1 hour after application

Spatial attentional performance, as measured by cognitive testing

时间窗: During or within 1 hour after application

Duration of dominance phases of perceptual switches

时间窗: During or within 1 hour after application

Measured in seconds

Number of perceptual switches

时间窗: During or within 1 hour after application

次要结局

  • Spatial bias of attentional allocation, as measured by free visual exploration with eye movement measurement(During or 1 hour after application)
  • Alertness level, as measured subjectively by a visual analogue scale (VAS)(During or 1 hour after application)
  • Spatial bias of attentional allocation, as measured by standardised paper-pencil neuropsychological tests(During or 1 hour after application)
  • Alertness level, as measured objectively by cognitive testing(During or 1 hour after application)

研究者

申办方类型
Other
责任方
Sponsor

研究点 (1)

Loading locations...

相似试验