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Audiovisual Integration Enhances Stimulus Detection Performance in Mice

机译:视听集成增强了小鼠的刺激检测性能

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摘要

The detection of objects in the external world improves when humans and animals integrate object features of multiple sensory modalities. Behavioral and neuronal mechanisms underlying multisensory stimulus detection are poorly understood, mainly because they have not been investigated with suitable behavioral paradigms. Such behavioral paradigms should (i) elicit a robust multisensory gain, (ii) incorporate systematic calibration of stimulus amplitude to the sensory capacities of the individual subject, (iii) yield a high trial count, and (iv) be easily compatible with a large variety of neurophysiological recording techniques. We developed an audiovisual stimulus detection task for head-fixed mice which meets all of these critical behavioral constraints. Behavioral data obtained with this task indicated a robust increase in detection performance of multisensory stimuli compared with unisensory cues, which was maximal when both stimulus constituents were presented at threshold intensity. The multisensory behavioral effect was associated with a change in the perceptual performance which consisted of two components. First, the visual and auditory perceptual systems increased their sensitivity meaning that low intensity stimuli were more often detected. Second, enhanced acuity enabled the systems to better classify whether there was a stimulus or not. Fitting our data to signal detection models revealed that the multisensory gain was more likely to be achieved by integration of sensory signals rather than by stimulus redundancy or competition. This validated behavioral paradigm can be exploited to reliably investigate the neuronal correlates of multisensory stimulus detection at the level of single neurons, microcircuits, and larger perceptual systems.
机译:当人类和动物整合多种感官模式的物体特征时,对外部世界中物体的检测将得到改善。对多感官刺激检测基础的行为和神经机制知之甚少,主要是因为尚未对它们进行适当的行为范例研究。此类行为范式应(i)引起稳健的多感官增益,(ii)将刺激幅度的系统校准结合到个体受试者的感觉能力中,(iii)产生较高的试验次数,并且(iv)容易与大型受试者兼容多种神经生理学记录技术。我们开发了满足所有这些关键行为约束的头戴固定鼠标的视听刺激检测任务。通过此任务获得的行为数据表明,与单感觉线索相比,多感觉刺激的检测性能有了显着提高,当两种刺激成分均以阈值强度呈现时,这是最大的。多感官行为效应与包括两个部分的感知性能的变化有关。首先,视觉和听觉感知系统增加了它们的敏感性,这意味着低强度刺激被更多地检测到。其次,增强的敏锐度使系统能够更好地分类是否有刺激。将我们的数据拟合到信号检测模型后发现,多感官增益更可能是通过感官信号的整合而不是通过刺激冗余或竞争来实现的。可以利用这种经过验证的行为范式在单个神经元,微电路和较大的感知系统水平上可靠地研究多感觉刺激检测的神经元相关性。

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