School of Psychology, University of Birmingham, Birmingham, UK.
Centre for Computational Neuroscience and Cognitive Robotics, University of Birmingham, Birmingham, UK.
Eur J Neurosci. 2020 Dec;52(12):4709-4731. doi: 10.1111/ejn.14928. Epub 2020 Sep 1.
Asynchrony is a critical cue informing the brain whether sensory signals are caused by a common source and should be integrated or segregated. This psychophysics-electroencephalography (EEG) study investigated the influence of asynchrony on how the brain binds audiotactile (AT) signals to enable faster responses in a redundant target paradigm. Human participants actively responded (psychophysics) or passively attended (EEG) to noise bursts, "taps-to-the-face" and their AT combinations at seven AT asynchronies: 0, ±20, ±70 and ±500 ms. Behaviourally, observers were faster at detecting AT than unisensory stimuli within a temporal integration window: the redundant target effect was maximal for synchronous stimuli and declined within a ≤70 ms AT asynchrony. EEG revealed a cascade of AT interactions that relied on different neural mechanisms depending on AT asynchrony. At small (≤20 ms) asynchronies, AT interactions arose for evoked response potentials (ERPs) at 110 ms and ~400 ms post-stimulus. Selectively at ±70 ms asynchronies, AT interactions were observed for the P200 ERP, theta-band inter-trial coherence (ITC) and power at ~200 ms post-stimulus. In conclusion, AT binding was mediated by distinct neural mechanisms depending on the asynchrony of the AT signals. Early AT interactions in ERPs and theta-band ITC and power were critical for the behavioural response facilitation within a ≤±70 ms temporal integration window.
失步是一个关键线索,它向大脑表明感觉信号是由共同的来源引起的,应该进行整合还是分离。这项心理物理学-脑电图(EEG)研究调查了失步对大脑如何将听觉触觉(AT)信号绑定以在冗余目标范式中实现更快响应的影响。人类参与者主动(心理物理学)或被动(EEG)响应噪声突发、“面部轻拍”及其在七个 AT 失步下的 AT 组合:0、±20、±70 和 ±500 ms。行为上,观察者在时间整合窗口内比单感觉刺激更快地检测到 AT:同步刺激的冗余目标效应最大,而在 ≤70 ms 的 AT 失步范围内下降。脑电图揭示了一系列 AT 相互作用,这些相互作用依赖于不同的神经机制,具体取决于 AT 失步。在较小的(≤20 ms)失步下,AT 相互作用出现在 110 ms 和刺激后约 400 ms 的诱发反应电位(ERP)中。仅在 ±70 ms 的失步下,AT 相互作用出现在 P200 ERP、θ带试验间相干性(ITC)和刺激后约 200 ms 的功率中。总之,AT 绑定是由依赖于 AT 信号失步的不同神经机制介导的。ERP 和θ带 ITC 和功率中的早期 AT 相互作用对于在 ≤±70 ms 的时间整合窗口内的行为响应促进至关重要。