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Spatial integration of motion signals in macaque MT.

机译:猕猴MT中运动信号的空间整合。

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摘要

The processing of moving stimuli presents many challenges to the visual system. Among the problems that must be solved are (1) that much of the motion information in early visual areas is ambiguous due to the aperture problem and (2) that suppressive surround mechanisms become counterproductive when the visual stimulus is weak. Neurons in the motion processing middle temporal visual area (MT) are able to overcome both of these problems through the spatial integration of motion signals. We have studied the integration of visual motion in alert macaque monkeys using extracellular electrodes to record from MT. Specifically, we have examined how the response properties of motion integration in MT generalize across different visual stimuli. We demonstrate that MT neurons systematically integrate the motion of diverse stimuli such as dots, gratings, plaids, bars and barber poles in accordance with the expectations of motion integration models. We also show that MT neurons improve spatial integration by decreasing the strength their suppressive surrounds for low contrast stimuli but not for other forms of noisy stimuli.
机译:运动刺激的处理对视觉系统提出了许多挑战。在必须解决的问题中,(1)由于孔径问题,早期视觉区域中的许多运动信息是模棱两可的;(2)当视觉刺激较弱时,抑制性环绕机制将适得其反。运动处理中颞视觉区域(MT)中的神经元能够通过运动信号的空间整合来克服这两个问题。我们已经研究了使用细胞外电极记录MT的猕猴的视觉运动的整合。具体来说,我们已经研究了MT中运动整合的响应特性如何在不同的视觉刺激中泛化。我们证明MT神经元根据运动集成模型的期望,系统地集成了各种刺激的运动,例如点,光栅,格子,条和理发杆。我们还显示,MT神经元通过降低低对比度刺激的抑制性周围环境的强度来改善空间整合,而对于其他形式的嘈杂刺激而言则没有。

著录项

  • 作者

    Hunter, John Nicholas.;

  • 作者单位

    Harvard University.;

  • 授予单位 Harvard University.;
  • 学科 Neurosciences.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 120 p.
  • 总页数 120
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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