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The Independent and Shared Mechanisms of Intrinsic Brain Dynamics: Insights From Bistable Perception

机译:内在的大脑动力学的独立和共享的机制:双稳态感知的见解。

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摘要

In bistable perception, constant input leads to alternating perception. The dynamics of the changing perception reflects the intrinsic dynamic properties of the “unconscious inferential” process in the brain. Under the same condition, individuals differ in how fast they experience the perceptual alternation. In this study, testing many forms of bistable perception in a large number of observers, we investigated the key question of whether there is a general and common mechanism or multiple and independent mechanisms that control the dynamics of the inferential brain. Bistable phenomena tested include binocular rivalry, vase-face, Necker cube, moving plaid, motion induced blindness, biological motion, spinning dancer, rotating cylinder, Lissajous-figure, rolling wheel, and translating diamond. Switching dynamics for each bistable percept was measured in 100 observers. Results show that the switching rates of subsets of bistable percept are highly correlated. The clustering of dynamic properties of some bistable phenomena but not an overall general control of switching dynamics implies that the brain’s inferential processes are both shared and independent – faster in constructing 3D structure from motion does not mean faster in integrating components into an objects.
机译:在双稳态感知中,恒定的输入会导致交替感知。感知变化的动力学反映了大脑“无意识推论”过程的内在动力学特性。在相同条件下,个体经历感知交替的速度不同。在这项研究中,在大量观察者中测试了多种形式的双稳态知觉,我们研究了关键问题,即是否存在控制推理大脑动力学的通用机制,通用机制或多种独立机制。测试的双稳态现象包括双目竞争,花瓶面,Necker立方体,移动格子,运动导致的失明,生物运动,旋转舞者,旋转圆柱体,李沙育图形,滚轮和平移钻石。在100位观察者中测量了每个双稳态感知的切换动力学。结果表明,双稳态感知子集的切换速率高度相关。某些双稳态现象的动力学特性聚集在一起,但对开关动力学的总体控制却不全面,这意味着大脑的推理过程既是共享的又是独立的–从运动构造3D结构的速度更快,并不意味着将组件集成到对象中的速度就更快。

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