Institute of Neuroscience, The Center for Excellence in Brain Science and Intelligence Technology, State Key Laboratory of Neuroscience, Key Laboratory of Primate Neurobiology, Chinese Academy of Sciences, Shanghai 200031, China.
Institute of Neuroscience, The Center for Excellence in Brain Science and Intelligence Technology, State Key Laboratory of Neuroscience, Key Laboratory of Primate Neurobiology, Chinese Academy of Sciences, Shanghai 200031, China; University of Chinese Academy of Sciences, Shanghai 200031, China.
Neuron. 2018 Apr 18;98(2):417-428.e3. doi: 10.1016/j.neuron.2018.03.009. Epub 2018 Apr 5.
How primates perceive objects along with their detailed features remains a mystery. This ability to make fine visual discriminations depends upon a high-acuity analysis of spatial frequency (SF) along the visual hierarchy from V1 to inferotemporal cortex. By studying the transformation of SF across macaque parafoveal V1, V2, and V4, we discovered SF-selective functional domains in V4 encoding higher SFs up to 12 cycles/°. These intermittent higher-SF-selective domains, surrounded by domains encoding lower SFs, violate the inverse relationship between SF preference and retinal eccentricity. The neural activities of higher- and lower-SF domains correspond to local and global features, respectively, of the same stimuli. Neural response latencies in high-SF domains are around 10 ms later than in low-SF domains, consistent with the coarse-to-fine nature of perception. Thus, our finding of preserved resolution from V1 into V4, separated both spatially and temporally, may serve as a connecting link for detailed object representation.
灵长类动物如何感知物体及其详细特征仍然是一个谜。这种进行精细视觉区分的能力依赖于从 V1 到颞下回的视觉层级中对空间频率 (SF) 的高敏分析。通过研究猕猴旁中心 V1、V2 和 V4 中的 SF 转换,我们发现 V4 中存在 SF 选择性功能域,可对高达 12 个周/度的 SF 进行编码。这些间歇性的高 SF 选择性域,被编码低 SF 的域所包围,违反了 SF 偏好与视网膜偏心之间的反比关系。高 SF 域和低 SF 域的神经活动分别对应于相同刺激的局部和全局特征。高 SF 域的神经反应潜伏期比低 SF 域晚约 10 毫秒,与感知的粗到精性质一致。因此,我们发现从 V1 到 V4 的分辨率得以保留,无论是在空间上还是在时间上都得到了分离,这可能是对详细物体进行表示的一个连接环节。