自身运动中眼动补偿机制研究 | |
其他题名 | Mechanism of eye movements compensation in heading perception |
石金富 | |
2017-05 | |
摘要 |
判断自身运动方向是绝大部分能自主运动的生物的一项重要能力,这点在生物体趋利避害行为中体现尤为明显。包括人类在内的灵长类生物体,其主要信息来源的获取依赖视觉途径。通常我们把观察者自身运动引起的视网膜图像变化称为光流(optic flow),它是判断自身运动方向的重要视觉线索。由于自然情境下个体进行自身运动的同时往往伴随有眼球或头部的转动,虽然这会严重扭曲视网膜上光流的放射状图样,但往往对个体正确判断自身运动方向影响很小。因此视觉系统必然存在眼动补偿机制,以还原真实的自身运动方向,然而我们对自身运动方向判别中影响眼动补偿的各种因素及其神经机制都知之甚少。 |
其他摘要 |
It is critical to correctly judge their self-motion direction for most of free moving animals, especially when they are hunting or being hunted. The primates, including human being, largely depend on the visual system to attain the information from outside world. Normally we define the retinal flow changes caused by self-motion as optic flow, which is an important cue for heading judgements. In natural conditions, eye/head rotations are common during self-motion. This will severely distort the radical image pattern of the retinal optic flow. However, we can still estimate the heading direction correctly. Therefore, the visual system must have a mechanism to compensate the eye movements and recover the real direction of self-motion. Unfortunately, the neuronal mechanism of eye movements compensation during self-motion are still unclear. We first conducted a series of behavioral experiments to test how eye movement speed, self-motion speed and visual signal reliability affect heading perception and eye movements compensation. The visual stimuli were generated by computer to simulate the retinal flow when the observer was moving towards a 3D cloud of points. Heading direction was varied along horizontal line. The participants were asked to report the perceived heading direction, either left or right. In real eye movements condition, the subject was required to pursuit moving target with their eyes. In simulated eye movements condition, subjects had to hold their gaze at fixation point but was presented with visual stimuli combined the effects of pursuit eye movements. In another word, the distortion on retinal flow cause by pursuit eye movement was superimposed on each heading stimulus to keep the retinal image equal, frame by frame, but no presence of extra-retinal signals. The error rate was used to evaluate the behavioral performance. We found that the levels of extra-retinal contributions increased with increasing pursuit speed (stronger extra-retinal signal), and with decreasing heading speed (weaker retinal signal). In addition, extra-retinal contributions also increased as we corrupted retinal signals with noise. Our results suggest that neural system can flexible integrate the retinal and non-retinal signal based on the reliability of the information and optimally percept the direction of self-motion. |
关键词 | 自身运动认知 光流 眼动补偿 顶内沟 猕猴 |
学位类型 | 博士 |
语种 | 中文 |
学位专业 | 认知神经科学 |
学位授予单位 | 中国科学院研究生院 |
学位授予地点 | 北京 |
文献类型 | 学位论文 |
条目标识符 | http://ir.psych.ac.cn/handle/311026/21435 |
专题 | 认知与发展心理学研究室 |
作者单位 | 中国科学院心理研究所 |
推荐引用方式 GB/T 7714 | 石金富. 自身运动中眼动补偿机制研究[D]. 北京. 中国科学院研究生院,2017. |
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石金富-博士学位论文.pdf(6803KB) | 学位论文 | 限制开放 | CC BY-NC-SA | 请求全文 |
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