首页> 外文期刊>Journal of Computational Neuroscience >Comparison of neuronal responses in primate inferior-temporal cortex and feed-forward deep neural network model with regard to information processing of faces
【24h】

Comparison of neuronal responses in primate inferior-temporal cortex and feed-forward deep neural network model with regard to information processing of faces

机译:关于脸部信息处理的灵长类动物劣质时间皮质和前馈深神经网络模型的神经元应答的比较

获取原文
获取原文并翻译 | 示例

摘要

Feed-forward deep neural networks have better performance in object categorization tasks than other models of computer vision. To understand the relationship between feed-forward deep networks and the primate brain, we investigated representations of upright and inverted faces in a convolutional deep neural network model and compared them with representations by neurons in the monkey anterior inferior-temporal cortex, area TE. We applied principal component analysis to feature vectors in each model layer to visualize the relationship between the vectors of the upright and inverted faces. The vectors of the upright and inverted monkey faces were more separated through the convolution layers. In the fully-connected layers, the separation among human individuals for upright faces was larger than for inverted faces. The Spearman correlation between each model layer and TE neurons reached a maximum at the fully-connected layers. These results indicate that the processing of faces in the fully-connected layers might resemble the asymmetric representation of upright and inverted faces by the TE neurons. The separation of upright and inverted faces might take place by feed-forward processing in the visual cortex, and separations among human individuals for upright faces, which were larger than those for inverted faces, might occur in area TE.
机译:前馈深度神经网络在对象分类任务中具有比其他计算机视觉模型更好的性能。要了解前馈深网络和灵长类大脑之间的关系,我们在卷积深神经网络模型中调查了直立和倒立面的表示,并将其与神经元在猴前劣质时间皮层中的神经元的表示进行了比较。我们将主成分分析应用于每个模型层中的特征向量,以可视化直立和反相面之间的矢量之间的关系。直立和倒的猴面的载体通过卷积层更分开。在完全连接的层中,用于直立面的人体之间的分离大于倒面。每个模型层和TE神经元之间的矛盾相关性在完全连接的层处达到最大值。这些结果表明,完全连接层中的面的处理可能类似于TE神经元的直立和倒置面的不对称表示。在视觉皮层中的前馈处理中可能发生直立和倒置面的分离,并且在区域TE中可能发生直立面的人类个体的分离,这可能发生在倒置面上。

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