【2h】

Temporal mechanisms of multimodal binding

机译:多峰结合的时间机制

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摘要

The simultaneity of signals from different senses—such as vision and audition—is a useful cue for determining whether those signals arose from one environmental source or from more than one. To understand better the sensory mechanisms for assessing simultaneity, we measured the discrimination thresholds for time intervals marked by auditory, visual or auditory–visual stimuli, as a function of the base interval. For all conditions, both unimodal and cross-modal, the thresholds followed a characteristic ‘dipper function’ in which the lowest thresholds occurred when discriminating against a non-zero interval. The base interval yielding the lowest threshold was roughly equal to the threshold for discriminating asynchronous from synchronous presentations. Those lowest thresholds occurred at approximately 5, 15 and 75 ms for auditory, visual and auditory–visual stimuli, respectively. Thus, the mechanisms mediating performance with cross-modal stimuli are considerably slower than the mechanisms mediating performance within a particular sense. We developed a simple model with temporal filters of different time constants and showed that the model produces discrimination functions similar to the ones we observed in humans. Both for processing within a single sense, and for processing across senses, temporal perception is affected by the properties of temporal filters, the outputs of which are used to estimate time offsets, correlations between signals, and more.
机译:来自不同感觉(例如视觉和听觉)的信号的同时性对于确定这些信号是来自一个环境源还是来自多个环境源是有用的提示。为了更好地理解评估同时性的感觉机制,我们测量了听觉,视觉或听觉-视觉刺激标记的时间间隔的辨别阈值,该阈值是基本间隔的函数。对于所有条件,无论是单峰还是跨峰,阈值都遵循特征性的“ dipper函数”,其中区分非零间隔时最低阈值出现。产生最低阈值的基本间隔大约等于用于区分异步与同步表示的阈值。这些最低阈值分别发生在听觉,视觉和听觉-视觉刺激的大约5、15和75μms处。因此,用交叉模态刺激介导性能的机制比在特定意义上介导性能的机制要慢得多。我们开发了一个具有不同时间常数的时间滤波器的简单模型,并表明该模型产生的辨别函数与我们在人类中观察到的相似。对于在单个感觉内进行处理以及对于跨感觉进行处理,时间感知都受到时间滤波器的属性的影响,时间滤波器的输出用于估计时间偏移,信号之间的相关性等等。

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