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Influence of Stimulus Intensity on Multimodal Integration in the Startle Escape System of Goldfish

机译:刺激强度对金鱼惊逃系统中多峰整合的影响

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摘要

Processing of multimodal information is essential for an organism to respond to environmental events. However, how multimodal integration in neurons translates into behavior is far from clear. Here, we investigate integration of biologically relevant visual and auditory information in the goldfish startle escape system in which paired Mauthner-cells (M-cells) initiate the behavior. Sound pips and visual looms as well as multimodal combinations of these stimuli were tested for their effectiveness of evoking the startle response. Results showed that adding a low intensity sound early during a visual loom (low visual effectiveness) produced a supralinear increase in startle responsiveness as compared to an increase expected from a linear summation of the two unimodal stimuli. In contrast, adding a sound pip late during the loom (high visual effectiveness) increased responsiveness consistent with a linear multimodal integration of the two stimuli. Together the results confirm the Inverse Effectiveness Principle (IEP) of multimodal integration proposed in other species. Given the well-established role of the M-cell as a multimodal integrator, these results suggest that IEP is computed in individual neurons that initiate vital behavioral decisions.
机译:多模式信息的处理对于有机体对环境事件的响应至关重要。然而,神经元中的多峰整合如何转化为行为尚不清楚。在这里,我们研究了成对的Mauthner细胞(M细胞)启动行为的金鱼惊逃系统中生物学相关的视觉和听觉信息的整合。测试了声音刺激和视觉织机以及这些刺激的多模式组合引起惊吓反应的有效性。结果表明,与从两个单峰刺激的线性求和预期的增加相比,在视觉织机的早期添加低强度声音(视觉效果低)会产生超线性的惊吓反应。相反,在织机后期添加声音点(高视觉效果)会增加响应速度,这与两种刺激的线性多峰积分相一致。在一起的结果证实了在其他物种中提出的多峰整合的逆有效性原理(IEP)。鉴于M细胞作为多模态整合者已确立的作用,这些结果表明IEP是在启动重要行为决定的单个神经元中计算得到的。

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