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Stochastic resonance model of synaesthesia

机译:SYCOESTHESIA的随机共振模型

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摘要

In synaesthesia, stimulation of one sensory modality evokes additional experiences in another modality (e.g. sounds evoking colours). Along with these cross-sensory experiences, there are several cognitive and perceptual differences between synaesthetes and non-synaesthetes. For example, synaesthetes demonstrate enhanced imagery, increased cortical excitability and greater perceptual sensitivity in the concurrent modality. Previous models suggest that synaesthesia results from increased connectivity between corresponding sensory regions or disinhibited feedback from higher cortical areas. While these models explain how one sense can evoke qualitative experiences in another, they fail to predict the broader phenotype of differences observed in synaesthetes. Here, we propose a novel model of synaesthesia based on the principles of stochastic resonance. Specifically, we hypothesize that synaesthetes have greater neural noise in sensory regions, which allows pre-existing multisensory pathways to elicit supra-threshold activation (i.e. synaesthetic experiences). The strengths of this model are (a) it predicts the broader cognitive and perceptual differences in synaesthetes, (b) it provides a unified framework linking developmental and induced synaesthesias, and (c) it explains why synaesthetic associations are inconsistent at onset but stabilize over time. We review research consistent with this model and propose future studies to test its limits.
机译:在Synaesthessia中,一种感觉模态的刺激唤起另一种模态的额外经验(例如,声音唤起颜色)。随着这些交叉感官经验,在SynaeSthetes和非SynaeSthetes之间存在几种认知和感知差异。例如,SynaeSthetes展示了增强的图像,增加了皮质兴奋性和更高的同时模态的感知敏感性。以前的模型表明,Synaesthesia因来自更高皮质区域的相应感官区域或不列义反馈而导致的连通性增加。虽然这些模型解释了一个感觉如何唤起另一个感知的定性经验,但它们未能预测在SynaeSthetes中观察到的更广泛的差异表型。在此,我们提出了一种基于随机共振原理的基于转型原理的Synaesthesia模型。具体而言,我们假设SynaeSthets在感觉区域中具有更大的神经噪声,其允许预先存在的多思态途径来引出Supra-阈值激活(即Synaesthetic体验)。该模型的优点是(a)它预测了SynaeSthetes的更广泛的认知和感知差异,(b)它提供了联系发育和诱导的Synaesthesias的统一框架,并且(c)解释了为什么SynaeSthetic协会在发作时不一致,但稳定时间。我们审查了与此模型一致的研究,并提出了未来的研究以测试其限制。

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