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Investigating the Interaction Between Form and Motion Processing: A Review of Basic Research and Clinical Evidence

机译:调查形式和运动处理之间的相互作用:对基础研究和临床证据的综述

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A widely held view of the visual system supported the perspective that the primate brain is organized in two main specialized streams, called the ventral and the dorsal stream. The ventral stream is known to be involved in object recognition (e.g., form and orientation). In contrast, the dorsal stream is thought to be more involved in spatial recognition (e.g., the spatial relationship between objects and motion direction). Recent evidence suggests that these two streams are not segregated but interact with each other. A class of visual stimuli known as Glass patterns has been developed to shed light on this process. Glass patterns are visual stimuli made of pairs of dots, called dipoles, that give the percept of a specific form or apparent motion, depending on the spatial and temporal arrangement of the dipoles. In this review, we show an update of the neurophysiological, brain imaging, psychophysical, clinical, and brain stimulation studies which have assessed form and motion integration mechanisms, and the level at which this occurs in the human and non-human primate brain. We also discuss several studies based on non-invasive brain stimulation techniques that used different types of visual stimuli to assess the cortico-cortical interactions in the visual cortex for the processing of form and motion information. Additionally, we discuss the timing of specific visual processing in the ventral and dorsal streams. Fi-nally, we report some parallels between healthy participants and neurologically impaired patients in the conscious processing of form and motion.
机译:广泛认为视觉系统的视图支持透视的视角,即在两个主要的专业流中组织了灵长类的大脑,称为腹侧和背部流。已知腹侧流涉及物体识别(例如,形式和方向)。相反,据认为,背部流更涉及空间识别(例如,物体和运动方向之间的空间关系)。最近的证据表明,这两个流没有被隔离,但相互互动。已经开发了一类被称为玻璃图案的视觉刺激以在该过程上脱光。玻璃图案是由成对的点,称为偶极物的视觉刺激,这取决于偶极子的空间和时间布置,给出特定形式或表观运动的感知。在该综述中,我们展示了具有评估形式和运动整合机制的神经生理学,脑成像,心理物理,临床和脑刺激研究的更新,以及这种情况发生在人和非人类灵长类动物中的水平。我们还基于非侵入性脑刺激技术讨论了几种研究,该技术使用了不同类型的视觉刺激来评估视觉皮质中的皮质皮质相互作用以处理形式和运动信息。此外,我们讨论腹侧和背部流中特定视觉处理的时间。我们在健康参与者和神经学障碍的患者中报告了一些患者的形式和动作的有意识加工之间的一些相似之处。

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