Suppr超能文献

一名患有V5区双侧病变的患者中与残余运动视觉相关的脑活动。

The brain activity related to residual motion vision in a patient with bilateral lesions of V5.

作者信息

Shipp S, de Jong B M, Zihl J, Frackowiak R S, Zeki S

机构信息

Department of Anatomy, University College London, UK.

出版信息

Brain. 1994 Oct;117 ( Pt 5):1023-38. doi: 10.1093/brain/117.5.1023.

Abstract

We have used the technique of PET to chart the cortical areas activated by visual motion in the brain of a patient with a severe impairment in the ability to recognize the motion of objects (akinetopsia), following bilateral lesions which have so far been presumed to include area V5. High resolution MRI of her brain showed that the zone occupied by area V5 had indeed been destroyed bilaterally. Positron emission tomography activation images, co-registered to the MRIs, showed three principal regions of the cortex activated by motion. These were located (i) bilaterally in the precuneus of superior parietal cortex (area 7 of Brodmann); (ii) bilaterally in the cuneus (a region considered to represent upper V3); (iii) in the left lingual and fusiform gyri (possibly lower V3 and adjacent areas). In contrast to normal subjects, there was no significant activation of area V1 or V2. The stimuli used for scanning were chosen by prior testing of the patient's visual capacities. The control stimulus was a static random distribution of light squares on a dark background. In the moving stimulus these squares moved coherently, the direction of motion changing periodically between the cardinal directions (left, right, up and down). It was ascertained that the patient could correctly identify these directions. We also found (i) that her occasional errors were always in the direction opposite to the motion presented, so that her identification of axis of motion (i.e. vertical or horizontal) was 100% correct; (ii) that when a few static squares were added to the moving the display her identification of direction fell to chance but her identification of the axis of motion remained 100%; (iii) that when a few squares moving opposite and orthogonal to the predominant direction of motion were incorporated, her performance on both direction and axis fell to chance; (iv) that she was unable to identify motion in oblique directions between the horizontal or vertical axes, always guessing one of the cardinal directions. In accounting for her residual vision in terms of cortex, which remains active, we hypothesize; (i) that the bilateral loss of V5 has affected direction sensitive mechanisms at other sites in the cortex which are interconnected with V5 and (ii) that in consequence her performance on our tests reflects the properties of dynamic orientation selective mechanisms that were also differentially activated by the stimuli used during scanning.

摘要

我们运用正电子发射断层扫描(PET)技术,对一名患有严重物体运动识别能力受损(即运动失认症)的患者大脑中由视觉运动激活的皮质区域进行了绘图。该患者双侧大脑受损,目前推测受损区域包括V5区。对其大脑进行的高分辨率磁共振成像(MRI)显示,V5区所占据的区域确实已双侧受损。与MRI图像配准的正电子发射断层扫描激活图像显示,有三个主要的皮质区域被运动激活。它们分别位于:(i)双侧顶上叶皮质的楔前叶(Brodmann第7区);(ii)双侧楔叶(一个被认为代表V3区上部的区域);(iii)左侧舌回和梭状回(可能是V3区下部及相邻区域)。与正常受试者不同,V1区或V2区没有明显激活。用于扫描的刺激是根据对患者视觉能力的预先测试来选择的。对照刺激是在黑色背景上随机分布的静态亮方块。在运动刺激中,这些方块连贯移动,运动方向在基本方向(左、右、上、下)之间周期性变化。经确定,该患者能够正确识别这些方向。我们还发现:(i)她偶尔出现的错误总是与所呈现运动的方向相反,因此她对运动轴(即垂直或水平)的识别正确率为100%;(ii)当在运动显示中添加一些静态方块时,她对方向的识别降至随机水平,但对运动轴的识别仍为100%;(iii)当加入一些与主要运动方向相反且正交的方块时,她在方向和轴的识别上都降至随机水平;(iv)她无法识别水平或垂直轴之间的倾斜方向运动,总是猜测基本方向之一。在根据仍保持活跃的皮质来解释她的残余视觉时,我们推测:(i)V5区的双侧缺失影响了皮质中其他与V5区相互连接的对方向敏感的机制;(ii)因此,她在我们测试中的表现反映了动态方向选择机制的特性,这些机制在扫描过程中也被所用刺激以不同方式激活。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验