Girard Pascal, Lomber Stephen G, Bullier Jean
Centre de Recherche Cerveau et Cognition, CNRS-UPS UMR 5549, Université Paul Sabatier, 133, Route de Narbonne, 31062 Toulouse Cedex, France.
Cereb Cortex. 2002 Nov;12(11):1146-56. doi: 10.1093/cercor/12.11.1146.
The role of area V4 in the primate extrastriate cortex has received much attention in recent years. However, the deficit specificity following area V4 ablations has been difficult to determine due to the ablations including area V4 and additional adjacent areas, deficit attenuation and the numerous variations in the results of different research teams. In order to address these issues, we examined the role of area V4 during reversible deactivation of the lower visual field representation within this area while macaque monkeys performed simple pattern discriminations and their eye position was monitored. Specifically, the monkeys were trained to perform a match-to-sample task with the sample stimulus placed within or outside the visual field quadrant represented within the deactivated region of area V4. The sample and match stimuli had the same salience (same size or luminance). Using this approach, we identified significant simple shape discrimination deficits during deactivation of area V4 that did not attenuate with time. Deficits were also identified when the discriminanda were the same figure viewed at different orientations (rotated shapes). In contrast, no deficits were identified during simple hue discriminations. Furthermore, no saccadic eye movement deficits were identified during deactivation of area V4. Therefore, we conclude that deactivation of area V4 yields specific deficits on simple and rotated shape discriminations. These results show that area V4 is an important step in shape and form processing along the ventral visual stream leading to the inferotemporal cortex.
近年来,灵长类动物纹外皮层中V4区的作用备受关注。然而,由于V4区损毁包括V4区及其他相邻区域、功能缺损减弱以及不同研究团队结果存在诸多差异,V4区损毁后的缺损特异性一直难以确定。为解决这些问题,我们在猕猴进行简单图案辨别并监测其眼位时,研究了V4区下部视野表征可逆失活期间V4区的作用。具体而言,训练猕猴执行匹配样本任务,样本刺激置于V4区失活区域所代表的视野象限内或外。样本和匹配刺激具有相同的显著性(相同大小或亮度)。采用这种方法,我们发现V4区失活期间存在显著的简单形状辨别缺损,且不会随时间减弱。当辨别对象为不同方向观察到的相同图形(旋转形状)时,也发现了缺损。相比之下,简单色调辨别过程中未发现缺损。此外,V4区失活期间未发现扫视眼动缺损。因此,我们得出结论,V4区失活会导致简单形状和旋转形状辨别出现特定缺损。这些结果表明,V4区是沿着通向颞下皮层的腹侧视觉通路进行形状和形态加工的重要环节。