...
首页> 外文期刊>Journal of Cognitive Neuroscience >Functional reorganization of the visual dorsal stream as probed by 3-D visual coherence in Williams syndrome
【24h】

Functional reorganization of the visual dorsal stream as probed by 3-D visual coherence in Williams syndrome

机译:3-D视觉连贯性在威廉姆斯综合症中探明的视觉背面流的功能重组

获取原文
获取原文并翻译 | 示例

摘要

Object and depth perception from motion cues involves the recruitment of visual dorsal stream brain areas. In 3-D structure-from-motion (SFM) perception, motion and depth information are first extracted in this visual stream to allow object categorization, which is in turn mediated by the ventral visual stream. Such interplay justifies the use of SFM paradigms to understand dorsal-ventral integration of visual information. The nature of such processing is particularly interesting to be investigated in a neurological model of cognitive dissociation between dorsal (impaired) and ventral stream (relatively preserved) processing, Williams syndrome (WS). In the current fMRI study, we assessed dorsal versus ventral stream processing by using a performance-matched 3-D SFM object categorization task. We found evidence for substantial reorganization of the dorsal stream in WS as assessed by whole-brain ANOVA random effects analysis, with subtle differences in ventral activation. Dorsal reorganization was expressed by larger medial recruitment in WS (cuneus, precuneus, and retrosplenial cortex) in contrast with controls, which showed the expected dorsolateral pattern (caudal intraparietal sulcus and lateral occipital cortex). In summary, we found a substantial reorganization of dorsal stream regions in WS in response to simple visual categories and 3-D SFM perception, with less affected ventral stream. Our results corroborate the existence of a medial dorsal pathway that provides the substrate for information rerouting and reorganization in the presence of lateral dorsal stream vulnerability. This interpretation is consistent with recent findings suggesting parallel routing of information in medial and lateral parts of dorsal stream.
机译:运动线索的物体和深度感知涉及视觉背流大脑区域的募集。在3-D运动构造(SFM)感知中,首先在此视觉流中提取运动和深度信息以允许对象分类,而物体分类又由腹侧视觉流介导。这种相互作用证明了使用SFM范例来理解视觉信息的背腹融合。这种处理的性质特别令人感兴趣,可以在背侧(受损)和腹侧流(相对保留)处理之间的认知分离神经模型威廉姆斯综合征(WS)中进行研究。在当前的fMRI研究中,我们通过使用性能匹配的3-D SFM对象分类任务评估了背侧和腹侧流处理。我们发现了通过全脑ANOVA随机效应分析评估的WS背流实质性重组的证据,腹侧激活存在细微差异。与对照组相比,WS的更大的内侧募集(cuneus,precuneus和脾后皮质)表达了背侧重组,对照显示了预期的背外侧模式(尾顶顶沟和枕外侧皮)。总之,我们发现WS中的背流区域发生了实质性的重组,以响应简单的视觉类别和3-D SFM感知,而腹侧流的影响较小。我们的研究结果证实了内侧背侧通路的存在,该通路为外侧背侧流脆弱性的存在提供了信息重路由和重组的基础。这种解释与最近的发现一致,表明在背流的内侧和外侧部分并行路由信息。

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