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Representation and processing of spatial information in lateral occipital cortex

Representation and processing of spatial information in lateral occipital cortex
外侧枕叶皮层空间信息的表示和处理
批准号:
BB/L007770/1
负责人:
Antony Morland
金额:
$48.09万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2014
资助国家:
英国
项目状态:
已结题
起止时间:
2014 至 --

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项目成果

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中文摘要
翻译
人类有一个非常复杂的视觉。这种复杂性大部分存在于大脑中,大脑皮层的大片区域专门用于视觉。然而,了解人类大脑如何赋予我们视觉能力仍然是一个重大挑战。功能性磁共振成像(fMRI)提供了一种信息丰富的方法,通过产生测量结果,将大脑划分为不同的视觉区域,从而在这个问题上获得牵引力。两种广泛的方法已经被采用:首先,视觉皮层内的区域已经被描述为它们如何对不同类型的刺激做出反应。研究揭示了对颜色和运动等属性或物体类别(如面部,地点或日常物体)有选择性反应的区域。其次,当参与者观察系统地通过视野移动的刺激时,记录大脑活动可以确定大脑的哪些部分包含视野的地图。这样的视野图在人脑的早期视觉处理阶段中很容易检测到,并且随着技术的改进,已经清楚的是,在更高的处理阶段也可以发现更多的视野图。重要的是,一些对特定类型的视觉刺激有选择性反应的区域也包含多个视野图。因此,这种选择性不太可能来自在每个组成视野图中执行和复制的神经处理。相反,每个地图将在视觉处理中扮演一个或多个关键角色,并有助于在包含它们的区域中发现的类别选择性。然而,到目前为止,关于多个视野图扮演什么样的处理角色,以及它们如何对人类视觉感知做出贡献,还远远没有完成。这项计划的目的是研究人类大脑的外侧枕叶区域,该区域专门用于视觉物体感知。大脑的这个区域也被证明包含六个独立的视野图(LO 1 -6)。我们提出的工作取决于两个最近的发现。首先,我们希望研究的六个视野图是最近才发现的,但我们的实验室是少数能够可靠识别它们的实验室之一。其次,我们已经成功地使用经颅磁刺激(TMS)选择性地干扰了两个视野图中的处理过程,并确定了它们在方向和形状感知中的因果作用,而不是仅仅依靠功能磁共振成像来探测大脑视觉区域的功能。综上所述,这些发现给了我们独特的能力,以评估如何视野映射LO 1 -6的过程和代表视觉信息。我们将确定LO 1 -6和使用TMS来评估其因果关系的作用,在空间视觉。这就要求我们测量TMS在空间视觉任务中改变视觉表现的方式。我们将确定方向和形状任务的表现是否取决于LO 1和LO 2中的处理,但扩展我们以前的工作,看看当方向和形状由不同的属性(如颜色和运动)定义时,情况是否仍然如此。为了进一步扩展我们对LO图在空间视觉中的作用的评估,我们将考虑需要在大空间尺度上整合信息的空间处理,这是我们组装对轮廓和对称性感知至关重要的连贯线索所必需的。TMS实验将由功能磁共振成像实验来补充,功能磁共振成像实验可以在更精细的空间尺度上检查反应,从而可以仔细检查较小LO图的单独作用。最后,我们将使用可以评估fMRI活动模式的措施来预测参与者所看到的刺激类型,这将使我们能够获得有关视觉信息如何在大脑中表示以及它如何与我们对日常事物的感知相互关联的新见解。
英文摘要
Humans have a very sophisticated vision. Much of this sophistication lies within the brain where large expanses of cortex are devoted to vision. However, understanding how the human brain endows us with our visual abilities remains a significant challenge. Functional Magnetic Resonance Imaging (fMRI) has provided an informative way in which to gain traction on this issue by yielding measurements that allow the brain to be divided into different visual areas. Two broad approaches have been adopted: Firstly, regions within the visual cortex have been characterised in terms of how they respond to different kinds of stimuli. Research has revealed areas that are selectively responsive to properties such as colour and motion or object categories such as faces, places or everyday objects. Secondly, recording brain activity while participants view stimuli that move systematically through the visual field can determine which parts of the brain contain maps of the visual field. Such visual field maps are easy to detect in the early visual processing stages of the human brain and, as techniques have been refined, it has become clear that many more visual field maps can also be found at higher processing stages. Importantly, some areas that are selectively responsive to specific kinds of visual stimuli also contain multiple maps of the visual field. This selectivity is unlikely therefore to arise from the neural processing that is performed and replicated in each constituent visual field map. Instead, each map will perform one or more crucial roles in visual processing and contribute to the category selectivity found in the regions that encompass them. As yet, however, the account of what processing roles the multiple visual field maps play, and how they contribute to human visual perception, is far from complete. The aim of this proposal is to study the lateral occipital area of the human brain, which is known to be specialised for visual object perception. This area of the brain has also been shown to contain six separate visual field maps (LO1-6). Our proposed work hinges on two very recent findings. Firstly, the six visual field maps that we wish to investigate have only relatively recently been discovered, but our lab is one of only a few that is able to reliably identify them. Secondly, rather than relying on fMRI alone to probe the function of visual areas of the brain, we have successfully used transcranial magnetic stimulation (TMS) to selectively disrupt processing in two of the visual field maps and have determined their causal roles in orientation and shape perception. Taken together, these findings give us the unique capability to evaluate how the visual field maps LO1-6 process and represent visual information.We will identify LO1-6 and use TMS to assess their causal role in spatial vision. This requires that we measure the way TMS changes visual performance in spatial visual tasks. We will determine whether orientation and shape task performance depends crucially on processing in LO1 and LO2, but extend our previous work to see whether this remains the case when orientation and shape are defined by different attributes such as colour and motion. To extend further our assessment of the roles of LO maps in spatial vision we will consider spatial processing that requires integration of information across large spatial scales, which is required for us to assemble coherent cues that are crucial for perception of contours and symmetry. The TMS experiments will be complemented by fMRI experiments that can examine responses at a finer spatial scale allowing the separate roles of the smaller LO maps to be examined closely. Finally, we will use measures that can assess the pattern of fMRI activity to predict the type of stimulus the participant viewed which will allow us to derive new insight about how visual information is represented in the brain and how it interrelates to our perception of everyday objects.
期刊论文(9)
专著(0)
科研奖励(0)
会议论文
DOI: 10.1016/j.neuroimage.2017.11.022
发表时间: 2018-02-15
期刊: NeuroImage
影响因子: 5.7
作者: [Welbourne LE, Morland AB, Wade AR]
通讯作者: Wade AR
Effects of TMS to occipital face area on the perception of face viewpoint cued only by shape changes in the external contour of the face
TMS 对枕叶面部区域的影响仅由面部外部轮廓的形状变化提示的面部视点感知
DOI: 10.1167/15.12.432
发表时间: 2015
期刊: Journal of Vision
影响因子: 1.8
作者: [Lawrence S]
通讯作者: Lawrence S
A bias-free measure of the face viewpoint aftereffect from radial frequency patterns
基于径向频率模式的人脸视点后效应的无偏差测量
DOI: 10.1167/15.12.1194
发表时间: 2015
期刊: Journal of Vision
影响因子: 1.8
作者: [Keefe B]
通讯作者: Keefe B
Multivariate Patterns in the Human Object-Processing Pathway Reveal a Shift from Retinotopic to Shape Curvature Representations in Lateral Occipital Areas, LO-1 and LO-2.
人类对象处理途径中的多元模式揭示了枕外侧区域 LO-1 和 LO-2 从视网膜主题到形状曲率表示的转变。
DOI: 10.1523/jneurosci.3603-15.2016
发表时间: 2016
期刊: the official journal of the Society for Neuroscience
影响因子: --
作者: [Vernon RJ]
通讯作者: Vernon RJ
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