首页> 外文期刊>Cerebral cortex >Visual and Vestibular Selectivity for Self-Motion in Macaque Posterior Parietal Area 7a
【24h】

Visual and Vestibular Selectivity for Self-Motion in Macaque Posterior Parietal Area 7a

机译:在猕猴视位区域7a中的自动运动视觉和前庭选择性

获取原文
获取原文并翻译 | 示例
           

摘要

We examined the responses of neurons in posterior parietal area 7a to passive rotational and translational self-motion stimuli, while systematically varying the speed of visually simulated (optic flow cues) or actual (vestibular cues) self-motion. Contrary to a general belief that responses in area 7a are predominantly visual, we found evidence for a vestibular dominance in self-motion processing. Only a small fraction of neurons showed multisensory convergence of visual/vestibular and linear/angular self-motion cues. These findings suggest possibly independent neuronal population codes for visual versus vestibular and linear versus angular self-motion. Neural responses scaled with self-motion magnitude (i.e., speed) but temporal dynamics were diverse across the population. Analyses of laminar recordings showed a strong distance-dependent decrease for correlations in stimulus-induced (signal correlation) and stimulus-independent (noise correlation) components of spike-count variability, supporting the notion that neurons are spatially clustered with respect to their sensory representation of motion. Single-unit and multiunit response patterns were also correlated, but no other systematic dependencies on cortical layers or columns were observed. These findings describe a likely independent multimodal neural code for linear and angular self-motion in a posterior parietal area of the macaque brain that is connected to the hippocampal formation.
机译:我们检查了后部区域7a中神经元对被动旋转和平移自动运动刺激的反应,同时系统地改变了视觉模拟(光学流动提示)或实际(前庭提示)自动运动的速度。与普遍认为,面积7a的反应主要是视觉的,我们发现了自我运动处理中前庭占主导地位的证据。只有一小部分神经元显示出视觉/前庭和线性/角度自动运动提示的多思索趋同。这些发现表明可能的视觉与前庭和线性与角度自动运动的独立神经元群体码。神经响应以自动运动幅度(即速度)缩放,但在整个人口中不同的时间动态。层层记录的分析显示刺激诱导的(信号相关)和刺激 - 计数变异性的刺激诱导的(信号相关)和刺激 - 无关(噪声相关)组件的相关性降低,支持神经元在其感觉形象方面被空间聚集的观念运动。单单元和多单响应模式也相关,但没有观察到皮质层或列的其他系统依赖性。这些发现描述了一种可能的独立多模式神经码,用于线性和角度自动运动在与海马形成连接的短尾脑后区域。

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