Probing the Role of Feature Dimension Maps in Visual Cognition: Expt 1.1
试验速览
- 阶段
- 不适用
- 状态
- 已完成
- 入组人数
- 10
- 试验地点
- 2
- 主要终点
- Gaze position
研究概览
简要总结
How does one know what to look at in a scene? Imagine a "Where's Waldo" game - it's challenging to find Waldo because there are many 'salient' locations in the picture, each vying for one's attention. One can only attend to a small location on the picture at a given moment, so to find Waldo, one needs to direct their attention to different locations. One prominent theory about how one accomplishes this claims that important locations are identified based on distinct feature types (for example, motion or color), with locations most unique compared to the background most likely to be attended. An important component of this theory is that individual feature dimensions (again, color or motion) are computed within their own 'feature maps', which are thought to be implemented in specific brain regions. However, whether and how specific brain regions contribute to these feature maps remains unknown.
The goal of this study is to determine how brain regions that respond strongly to different feature types (color and motion) and which encode spatial locations of visual stimuli extract 'feature dimension maps' based on stimulus properties, including feature contrast. The investigators hypothesize that feature-selective brain regions act as neural feature dimension maps, and thus encode representations of salient location(s) based on their preferred feature dimension. The investigators will scan healthy human participants using functional MRI (fMRI) in a repeated-measures design while they view visual stimuli made salient based on different combinations of feature dimensions. The investigators will employ state-of-the-art multivariate analysis techniques that allow them to reconstruct an 'image' of the stimulus representation encoded by each brain region to dissect how neural tissue identifies salient locations. Each participant will perform a challenging task at the center of the screen to ensure they keep their eyes still and ignore the stimuli presented in the periphery, which are used to gauge how the visual system automatically extracts important locations without confounding factors like eye movements. Across trials and experiments the investigators will manipulate 1) the 'strength' of the salient locations based on how different the salient stimulus is compared to the background, 2) the number of salient locations, and 3) the feature value(s) used to make each location salient. Altogether, these manipulations will help the investigators fully understand these critical salience computations in the healthy human visual system.
详细描述
In this experiment, participants will engage in all task conditions in a repeated-measures design. Participants are not randomly assigned to groups, as all participants will experience the same set of experimental manipulations. In this experiment, participants will engage in a series of challenging visual attention tasks while their eye position is tracked during fMRI scanning.
In all tasks, participants will perform challenging discrimination judgments based on a stimulus presented at the fixation point (discriminate the aspect ratio of a + target - wide or tall?). Behavioral responses will be recorded with a button press, which participants will make using a fMRI-compatible button box held in their right hand.
In this Experiment, the investigators will manipulate aspects of the stimulus display while holding the behavioral task constant. These manipulations will allow the investigators to test the role of feature-selective retinotopic regions of interest (ROIs) in automatically extracting salient information from the environment to guide visual attention.
In this Experiment (Experiment 1.1), the investigators will test the effect of changing the salience-defining feature of a visual stimulus display on stimulus representations reconstructed from fMRI activation patterns in feature-selective retinotopic ROIs. Participants will continuously perform the challenging fixation discrimination task while occasional salient stimuli appear. Stimuli will consist of flickering checkerboards, static colored dot fields with localized salient patches of differently-colored dots, and moving grayscale dot fields with localized salient patches of dots moving in a different direction. Single neurons in macaque visual cortex have been shown to respond to salient stimuli, and so the investigators expect to see, based on these previous studies, a substantial representation of the salient stimulus location in response patterns measured from feature-selective brain regions.
Participants will also be scanned for an anatomical & retinotopic mapping session, which will allow the investigators to identify brain regions for further analysis using well-established and standardized procedures.
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
- None
盲法说明
Participants will typically be unaware of the conditions presented, though because these involve manipulations of stimuli or task demands, they may be aware of the manipulation. This is not expected to impact the primary outcome measures (e.g., BOLD signal activation patterns).
入排标准
- 年龄范围
- 18 Years 至 55 Years(Adult)
- 性别
- All
- 接受健康志愿者
- 是
入选标准
- •between 18 and 55 years of age
- •normal or corrected-to-normal vision
排除标准
- •neurological disease based on self-report
- •implanted medical devices (e.g., cardiac pacemaker; metallic aneurism clip)
- •non-removable metallic piercings
- •metal fragments in the body (e.g., from welding)
- •pregnant and have a chance of being pregnant (if female)
- •history of claustrophobia
- •history of hearing loss/damage
结局指标
主要结局
Gaze position
时间窗: Through study completion, an average of two weeks
The investigators will use the measured gaze position in (x,y) coordinates to verify stable fixation throughout the experiment. Trials with poor fixation performance may be excluded from further analyses.
Blood Oxygenation Level Dependent (BOLD) fMRI signal
时间窗: Through study completion, an average of two weeks
The investigators will use BOLD activation patterns measured from each retinotopic ROI to fit quantitative models of spatial encoding. These models will be used to reconstruct stimulus representations on experimental trials to quantify how stimulus representations are encoded in each brain region studied, and how these representations change across experimental manipulations. These measurements will be used to test the impact of stimulus manipulations on stimulus representations in different brain regions.
Behavioral response (button press)
时间窗: Through study completion, an average of two weeks
On all trials participants will be instructed to attend carefully to the fixation point and report the shape of a target '+' (wide or tall) by pressing one of two buttons held in their hand inside the scanner. The left button will indicate wide; the right button will indicate tall. The investigators will ensure participants are performing the task as instructed by assessing the accuracy of their behavioral responses.
次要结局
未报告次要终点
