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Developmental fMRI study: Face and object recognition.

机译:发育性fMRI研究:面部和物体识别。

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摘要

Visual processing, though seemingly automatic, is complex. Typical humans process objects and faces routinely. Yet, when a disease or disorder disrupts face and object recognition, the effects are profound. Because of its importance and complexity, visual processing has been the subject of many adult functional imaging studies. However, relatively little is known about the development of the neural organization and underlying cognitive mechanisms of face and object recognition. The current project used functional magnetic resonance imaging (fMRI) to identify maturational changes in the neural substrates of face and object recognition in 5-8 year olds, 9-11 year olds, and adults. A passive face and object viewing task revealed cortical shifts in the face-responsive loci of the ventral processing stream (VPS), an inferior occipito-temporal region known to function in higher visual processing. Older children and adults recruited more anterior regions of the ventral processing stream than younger children. To investigate the potential cognitive basis for these developmental changes, researchers implemented a shape-matching task with parametric variations of shape overlap, structural similarity (SS), in stimulus pairs. VPS regions sensitive to high SS emerged in older children and adults. Younger children recruited no structurally-sensitive regions in the VPS. Two right hemisphere VPS regions were sensitive to maturational changes in SS. A comparison of face-responsive regions from the passive viewing task and the VPS SS regions did not reveal overlap. Though SS drives organization of the VPS, it did not explain the cortical shifts in the neural substrates for face processing. In addition to VPS regions, results indicated additional maturational SS changes in frontal, parietal, and cerebellar regions. Based on these findings, further analyses were conducted to quantify and qualify maturational changes in face and object processing throughout the brain. Results indicated developmental changes in activation extent, signal magnitude, and lateralization of face and object recognition networks. Collectively, this project supports a developmental change in visual processing between 5-8 years and 9-11 years of age. Chapters Four through Six provide an in-depth discussion of the implications of these findings.
机译:视觉处理虽然看似自动,但却很复杂。典型的人类会定期处理物体和面孔。然而,当一种疾病或紊乱破坏了人脸和物体的识别能力时,其影响是深远的。由于其重要性和复杂性,视觉处理已成为许多成人功能成像研究的主题。然而,关于神经组织的发展以及面部和物体识别的潜在认知机制知之甚少。当前的项目使用功能磁共振成像(fMRI)来识别5-8岁,9-11岁和成年人的面部和物体识别的神经基质的成熟变化。被动的面部和对象观察任务显示了腹侧处理流(VPS)的面部响应基因座中的皮层移位,该区域是下枕骨-颞部区域,在较高的视觉处理中起作用。年龄较大的儿童和成年人比年龄较小的儿童招募了更多的腹侧加工流。为了研究这些发育变化的潜在认知基础,研究人员在刺激对中实施了形状匹配任务,该任务具有形状重叠,结构相似性(SS)的参数变化。对高SS敏感的VPS区域出现在较大的儿童和成年人中。幼儿在VPS中没有募集任何结构敏感区域。右半球的两个VPS区域对SS的成熟变化敏感。来自被动观看任务的面部反应区域与VPS SS区域的比较未发现重叠。尽管SS推动了VPS的组织,但它没有解释用于面部处理的神经基质中的皮质变化。除VPS区域外,结果表明额叶,顶叶和小脑区域还有其他成熟的SS变化。基于这些发现,进行了进一步的分析,以量化和限定整个大脑中面部和物体处理过程中的成熟变化。结果表明,激活程度,信号强度以及人脸和物体识别网络的侧向化都发生了发展变化。该项目共同支持5-8岁至9-11岁之间视觉处理的发展变化。第四章至第六章对这些发现的含义进行了深入的讨论。

著录项

  • 作者

    Gathers, Ann D.;

  • 作者单位

    University of Kentucky.;

  • 授予单位 University of Kentucky.;
  • 学科 Biology Neuroscience.;Biology Anatomy.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 170 p.
  • 总页数 170
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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