Gu Jin, Liu Baolin, Yan Weiran, Miao Qiaomu, Wei Jianguo
College of Intelligence and Computing, Tianjin University, Tianjin, China.
School of Computer and Communication Engineering, University of Science and Technology Beijing, Beijing, China.
Front Neurorobot. 2020 Dec 17;14:597471. doi: 10.3389/fnbot.2020.597471. eCollection 2020.
Significant objects in a scene can make a great contribution to scene recognition. Besides the three scene-selective regions: parahippocampal place area (PPA), retrosplenial complex (RSC), and occipital place area (OPA), some neuroimaging studies have shown that the lateral occipital complex (LOC) is also engaged in scene recognition processing. In this study, the multivariate pattern analysis was adopted to explore the object-scene association in scene recognition when different amounts of significant objects were masked. The scene classification only succeeded in the intact scene in the ROIs. In addition, the average signal intensity in LOC [including the lateral occipital cortex (LO) and the posterior fusiform area (pF)] decreased when there were masked objects, but such a decrease was not observed in scene-selective regions. These results suggested that LOC was sensitive to the loss of significant objects and mainly involved in scene recognition by the object-scene semantic association. The performance of the scene-selective areas may be mainly due to the fact that they responded to the change of the scene's entire attribute, such as the spatial information, when they were employed in the scene recognition processing. These findings further enrich our knowledge of the significant objects' influence on the activation pattern during the process of scene recognition.
场景中的重要物体对场景识别有很大贡献。除了三个场景选择性区域:海马旁回位置区(PPA)、压后复合体(RSC)和枕叶位置区(OPA)外,一些神经影像学研究表明,外侧枕叶复合体(LOC)也参与场景识别处理。在本研究中,采用多变量模式分析来探索在不同数量的重要物体被遮挡时场景识别中的物体-场景关联。场景分类仅在感兴趣区域(ROIs)的完整场景中成功。此外,当存在被遮挡物体时,LOC[包括外侧枕叶皮质(LO)和后梭状回区域(pF)]的平均信号强度降低,但在场景选择性区域未观察到这种降低。这些结果表明,LOC对重要物体的缺失敏感,并且主要通过物体-场景语义关联参与场景识别。场景选择性区域的表现可能主要是因为它们在用于场景识别处理时对场景的整体属性变化(如空间信息)做出反应。这些发现进一步丰富了我们对重要物体在场景识别过程中对激活模式影响的认识。