首页> 外文会议>2013 IEEE International Conference on Medical Imaging Physics and Engineering >Preliminary fMRI research of the human brain activation under stereoscopic vision
【24h】

Preliminary fMRI research of the human brain activation under stereoscopic vision

机译:立体视觉下人脑激活的功能磁共振成像的初步研究

获取原文
获取原文并翻译 | 示例

摘要

Binocular disparity is of vital importance in stereoscopic vision. It determines the depth magnitude and effects the impression formation when human watch three-dimensional things. However so far how binocular disparity activates the brain regions hasn't got consistent conclusions. So a fMRI(functional magnetic resonance imaging) experiment was designed to locate cortex areas related with stereoscopic vision using modified random dot stereogram(RDS) as stimuli. This experiment adopted block design and used SPM8 to analyze the data. The results are: (1) hV3A, LG, hMT/V5, LOS and VIPS being the main activated regions in this experiment.(2) The dorsal stream areas are strongly activated while the ventral stream areas are slightly activated. Thus we inferred that (1) There is no single regions that can account for the stereoscopic depth perception completely. Stereoscopic vision is produced by several regions pulling together. (2)The dorsal stream system plays an important role in processing the stereoscopic vision. This phenomenon is consistent with the functions of the two visual systems. There are some differences between these activating areas and results from previous experiments. Here the activated regions and reasons for the differences are discussed. By comparing these results with other studies, the mechanisms of binocular disparity could be further understood. If the activation areas among people with normal stereoscopic vision could be made clear and definite, it will contribute to screening the amblyopia more easily and efficiently by using fMRI scanning.
机译:双眼视差在立体视觉中至关重要。当人们观看三维物体时,它确定深度的大小并影响印象的形成。然而,到目前为止,双目视差如何激活大脑区域尚未得出一致的结论。因此,设计了功能磁共振成像(fMRI)实验,以改进的随机点立体图(RDS)作为刺激来定位与立体视觉相关的皮层区域。该实验采用模块设计,并使用SPM8分析数据。结果是:(1)hV3A,LG,hMT / V5,LOS和VIPS是该实验的主要激活区域。(2)背流区域被强烈激活,而腹侧流区域被轻微激活。因此,我们推断出(1)没有任何一个区域可以完全解释立体深度感知。立体视觉是由多个区域聚集在一起产生的。 (2)背流系统在处理立体视觉中起重要作用。这种现象与两个视觉系统的功能一致。这些激活区域与先前实验的结果之间存在一些差异。这里讨论了激活区域和差异的原因。通过将这些结果与其他研究进行比较,可以进一步了解双眼视差的机制。如果可以清晰,明确地确定具有正常立体视觉的人群中的激活区域,则将有助于通过使用fMRI扫描更轻松有效地筛查弱视。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号