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Representations of eye and image velocity in motion sensitive cortex.

机译:运动敏感皮层中眼睛和图像速度的表示。

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摘要

In order to successfully pursue a moving target, the oculomotor system must make accurate computations about both the velocity of image motion on the retina and the ongoing velocity of the eye. In sensory areas, such as primary visual cortex and the middle temporal area (MT), the responses of neurons to different image velocities have been examined in some detail. However, the responses of neurons to image velocities in later cortical areas have been comparatively less studied. Further, although neurons in some parts of cortex, including the medial superior temporal area (MST) are known to be sensitive to the direction of pursuit, their responses to different pursuit velocities have not been studied.;The thesis will begin with a series of behavioral experiments suggesting that the neurons sensitive to pursuit direction are likely also sensitive to pursuit velocity. In chapter 2, I will describe the responses of MST neurons during different pursuit and image velocities. Chapter 3 will detail how the responses of eye velocity tuned neurons might be combined to generate an accurate population estimate of eye velocity. Chapter 4 will explore how visual responses in MST change when the illusion of smooth motion is generated using apparent motion stimuli. The surprising response of MST neurons to these stimuli suggests that the neurons may be using a center-of-mass computation to decode responses from area MT. In the final chapter, I will use antidromic stimulation to ask whether the MST neurons projecting to the smooth eye movement region of the frontal eye fields are distinct from the general population.
机译:为了成功地跟踪运动目标,动眼系统必须对视网膜上图像运动的速度和持续的眼睛速度进行准确的计算。在感觉区域,例如初级视觉皮层和颞中部区域(MT),已对神经元对不同图像速度的响应进行了详细研究。但是,神经元对后期皮质区域中图像速度的响应的研究相对较少。此外,尽管已知皮质中某些部位的神经元(包括内侧颞上区(MST))对追击方向敏感,但尚未研究其对不同追击速度的反应。行为实验表明,对追踪方向敏感的神经元也可能对追踪速度敏感。在第2章中,我将描述MST神经元在不同追踪和图像速度下的反应。第3章将详细介绍如何将眼速调整后的神经元的响应结合起来,以生成对眼速的准确估计。第4章将探讨当使用视在运动刺激产生平滑运动的错觉时,MST中的视觉响应如何变化。 MST神经元对这些刺激的惊人反应表明,神经元可能正在使用质心计算来解码区域MT的反应。在最后一章中,我将使用反刺激来询问投射到额眼视野的平滑眼球运动区域的MST神经元是否与普通人群不同。

著录项

  • 作者

    Churchland, Anne Kathryn.;

  • 作者单位

    University of California, San Francisco.;

  • 授予单位 University of California, San Francisco.;
  • 学科 Biology Neuroscience.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 214 p.
  • 总页数 214
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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