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临床试验/NCT04961645
NCT04961645终止不适用

Brain Stimulation Study of Human Visually-guided Navigation Using Repetitive Transcranial Magnetic Stimulation (rTMS)

Emory University1 个研究点 分布在 1 个国家目标入组 11 人开始时间: 2023年3月3日最近更新:
适应症
干预措施

试验速览

阶段
不适用
状态
终止
入组人数
11
试验地点
1
主要终点
Accuracy During Visually-guided Navigation Computer-based Task

研究概览

简要总结

This study investigates the neural mechanisms causally involved in how people navigate through their immediately visible environment (e.g., walking around one's bedroom flawlessly and effortlessly, not bumping into the walls or furniture). To investigate whether particular neural mechanisms are causally involved in "visually-guided navigation", repetitive transcranial magnetic stimulation (rTMS) is used to temporarily disrupt the functioning of particular brain regions in healthy adults while they are shown simple visual stimuli of places (e.g., bedrooms, kitchens, and living rooms) and asked to perform simple computer tasks or to complete simple behavioral tasks.

详细描述

Human ability to navigate through the immediately visible environment is crucial for survival. However, the representations and computations underlying this remarkable ability are not well understood, and current computer vision algorithms (robots) still lag far behind human performance. One promising strategy for attempting to understand "visually-guided navigation" is to characterize the neural systems that accomplish it. The results from functional magnetic resonance (fMRI) on adult humans have begun to elucidate the cortical regions involved in visually-guided navigation, with the central finding that there is at least one visual cortical region - called the occipital place area (OPA) that may play a central role in the ability to navigate through currently visible places (e.g., walking around our bedroom flawlessly and effortlessly, not bumping into the walls or furniture our bedroom). However, fMRI is a correlational method, and research still needs to determine if this functionally specific brain region is causally involved in visually-guided navigation. Understanding the causal involvement of this region will provide important clues about how humans navigate their world, and also perhaps someday be harnessed to help those individuals who devastatingly lose the ability to navigate, as a result of eye diseases, brain surgery, stroke, neurodegenerative diseases, or developmental disorders.

The use of rTMS to investigate the causal involvement of particular brain regions in particular human abilities is not novel, having been used to investigate face recognition, scene recognition, and object recognition. The general question for this research is to determine, using rTMS, the causal involvement of OPA in visually-guided navigation.

Participants will have an fMRI scan to identify the OPA location in each individual participant. Once the OPA location is known, participants will receive the rTMS study intervention.

研究设计

研究类型
Interventional
分配方式
Non Randomized
干预模型
Sequential
主要目的
Basic Science
盲法
None

入排标准

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

入选标准

  • •Normal or corrected-to-normal vision

排除标准

  • •Metal in the body
  • •Personal or first-degree family history of epileptic seizure
  • •A known brain injury
  • •Claustrophobia
  • •Taking certain medications that may increase the risk of seizures (e.g., bupropion, varenicline, chlorpromazine, theophylline) or reduce the effects of rTMS, such as benzodiazepines
  • •Adults who are unable to consent, pregnant women, and prisoners

研究组 & 干预措施

Repetitive Transcranial Magnetic Stimulation (rTMS) During Computer-based Task

Experimental

Participants receiving rTMS while they perform computer-based tests to examine the causal involvement of OPA in visually-guided navigation. The study visit lasts approximately 90 minutes.

干预措施: Repetitive Transcranial Magnetic Stimulation (rTMS) (Device)

Repetitive Transcranial Magnetic Stimulation (rTMS) During Computer-based Task

Experimental

Participants receiving rTMS while they perform computer-based tests to examine the causal involvement of OPA in visually-guided navigation. The study visit lasts approximately 90 minutes.

干预措施: Computer-based Test (Behavioral)

Repetitive Transcranial Magnetic Stimulation (rTMS) During Behavioral-based Task

Experimental

Participants receiving rTMS while they perform behavioral-based tests to examine the causal involvement of OPA in visually-guided navigation. The study visit lasts approximately 90 minutes.

干预措施: Repetitive Transcranial Magnetic Stimulation (rTMS) (Device)

Repetitive Transcranial Magnetic Stimulation (rTMS) During Behavioral-based Task

Experimental

Participants receiving rTMS while they perform behavioral-based tests to examine the causal involvement of OPA in visually-guided navigation. The study visit lasts approximately 90 minutes.

干预措施: Behavioral-based Test (Behavioral)

结局指标

主要结局

Accuracy During Visually-guided Navigation Computer-based Task

时间窗: During rTMS of control site and during rTMS of OPA, on Day 1

To assess performance during the visually-guided navigation computer-based task, rTMS is applied to to the control vertex site, which is not implicated in visually-guided navigation, as well as the occipital place area (OPA) site. While participants are shown simple visual stimuli of places (e.g., bedrooms, kitchens, and living rooms) they are asked to perform simple computer-based tasks (e.g., imagine they are walking through the room, and respond via button press whether they can leave through a door on the left, center, or right wall, as indicated by a continuous path on the floor). Performance is measured in task accuracy (the percentage of tasks performed correctly). A decrease in performance on the visually-guided navigation task only after rTMS is applied to OPA (but not vertex) indicates causal involvement of OPA in visually-guided navigation.

Reaction Time During Visually-guided Navigation Computer-based Task

时间窗: During rTMS of control site and during rTMS of OPA, on Day 1

To assess performance during the visually-guided navigation computer-based task, rTMS is applied to to the control vertex site, which is not implicated in visually-guided navigation, as well as the occipital place area (OPA) site. While participants are shown simple visual stimuli of places (e.g., bedrooms, kitchens, and living rooms) they are asked to perform simple computer-based tasks (e.g., imagine they are walking through the room, and respond via button press whether they can leave through a door on the left, center, or right wall, as indicated by a continuous path on the floor). Performance is measured in the time (in milliseconds) that it takes to complete the task correctly. A decrease in performance on the visually-guided navigation task only after rTMS is applied to OPA (but not vertex) indicates causal involvement of OPA in visually-guided navigation.

Accuracy During Visually-guided Navigation Behavioral-based Task

时间窗: During rTMS of control site and during rTMS of OPA, on Day 1

To assess performance during the visually-guided navigation behavior-based task, rTMS is applied to to the control vertex site, which is not implicated in visually-guided navigation, as well as the occipital place area (OPA) site. Participants are asked to complete simple behavioral-based tasks (e.g., actually walk around a small room and search for hidden objects). Performance is measured in task accuracy (the percentage of tasks performed correctly). A decrease in performance on the visually-guided navigation task only after rTMS is applied to OPA (but not vertex) indicates causal involvement of OPA in visually-guided navigation.

Reaction Time During Visually-guided Navigation Behavioral-based Task

时间窗: During rTMS of control site and during rTMS of OPA, on Day 1

To assess performance during the visually-guided navigation behavioral-based task, rTMS is applied to to the control vertex site, which is not implicated in visually-guided navigation, as well as the occipital place area (OPA) site. Participants are asked to complete simple behavioral tasks (e.g., actually walk around a small room and search for hidden objects). Performance is measured as the time (in milliseconds) that it takes to complete the task correctly. A decrease in performance on the visually-guided navigation task only after rTMS is applied to OPA (but not vertex) indicates causal involvement of OPA in visually-guided navigation.

次要结局

未报告次要终点

研究者

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

Daniel Dilks

Associate Professor

Emory University

研究点 (1)

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