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Multisensory space: from eye-movements to self-motion

机译:多感官空间:从眼球运动到自我运动

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We perceive the world around us as stable. This is remarkable given that our body parts as well as we ourselves are constantly in motion. Humans and other primates move their eyes more often than their hearts beat. Such eye movements lead to coherent motion of the images of the outside world across the retina. Furthermore, during everyday life, we constantly approach targets, avoid obstacles or otherwise move in space. These movements induce motion across different sensory receptor epithels: optical flow across the retina, tactile flow across the body surface and even auditory flow as detected from the two ears. It is generally assumed that motion signals as induced by one's own movement have to be identified and differentiated from the real motion in the outside world. In a number of experimental studies we and others have functionally characterized the primate posterior parietal cortex (PPC) and its role in multisensory encoding of spatial and motion information. Extracellular recordings in the macaque monkey showed that during steady fixation the visual, auditory and tactile spatial representations in the ventral intraparietal area (VIP) are congruent. This finding was of major importance given that a functional MRI (fMRI) study determined the functional equivalent of macaque area VIP in humans. Further recordings in other areas of the dorsal stream of the visual cortical system of the macaque pointed towards the neural basis of perceptual phenomena (heading detection during eye movements, saccadic suppression, mislocalization of visual stimuli during eye movements) as determined in psychophysical studies in humans.
机译:我们认为周围的世界是稳定的。鉴于我们的身体部位以及我们自己一直在运动,这一点非常了不起。人类和其他灵长类动物动眼的频率超过其心脏跳动的频率。这种眼睛运动导致外界图像跨视网膜的连贯运动。此外,在日常生活中,我们会不断接近目标,避开障碍物或以其他方式在太空中移动。这些运动在不同的感觉受体上皮上引起运动:从视网膜上流过光学流,从身体表面流过触觉流,甚至从两只耳朵都检测到听觉流。通常假定必须识别由自身运动引起的运动信号,并将其与外界的真实运动区分开。在许多实验研究中,我们和其他人在功能上表征了灵长类动物后顶叶皮层(PPC)及其在空间和运动信息的多感觉编码中的作用。猕猴的细胞外记录表明,在稳固固定过程中,腹顶壁内区域(VIP)的视觉,听觉和触觉空间表示是一致的。鉴于功能性MRI(fMRI)研究确定了人类猕猴区VIP的功能等同物,因此这一发现非常重要。猕猴的视觉皮层系统背流其他区域的进一步记录指向了人类心理生理研究中确定的知觉现象的神经基础(眼动过程中的航向检测,眼跳抑制,眼动过程中视觉刺激的误定位)。 。

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