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Auditory signal detection appears to depend on temporal integration of subthreshold activity in auditory cortex

机译:听觉信号检测似乎取决于听觉皮层亚阈活动的时间整合

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摘要

The threshold of hearing decreases with increasing sound duration up to a limit of a few hundred milliseconds, whereas other auditory time constants are orders of magnitude shorter. A possible solution to this resolution-integration paradox is that temporal integration occurs more centrally than computations depending on high temporal resolution. But this would require information about subthreshold events in the periphery to reach higher centers. Here we show that this prerequisite is fulfilled. The auditory evoked response to a just perceptible pulse series does basically not depend on whether single pulses are below or above behavioral threshold. The failure to find evidence of temporal integration up to response latencies of 30 ms suggests that the integrator is located more centrally than primary auditory cortex. By using noise to its advantage, the auditory system apparently has established a central integration mechanism that is about as efficient as the peripheral one in the visual system.
机译:听力阈值随着声音持续时间的增加而减小,直至达到几百毫秒的极限,而其他听觉时间常数则缩短了几个数量级。解决此分辨率积分悖论的一种可能解决方案是,时间积分比依赖于高时间分辨率的计算更集中地发生。但这需要有关外围阈值事件的信息才能到达更高的中心。在这里,我们证明满足了此先决条件。听觉诱发的对可感知的脉冲序列的响应基本上不取决于单个脉冲是低于还是高于行为阈值。未能找到直至30 ms的反应潜伏期的时间整合的证据表明,整合者的位置比初级听觉皮层更集中。通过利用噪声的优势,听觉系统显然已经建立了一种中央集成机制,该机制与视觉系统中的外围机制一样有效。

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