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A Method for Generating Natural and User-Defined Sniffing Patterns in Anesthetized or Reduced Preparations

机译:一种在麻醉或精制制剂中生成天然和用户定义的嗅探模式的方法

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摘要

Sniffing has long been thought to play a critical role in shaping neural responses to odorants at multiple levels of the nervous system. However, it has been difficult to systematically examine how particular parameters of sniffing behavior shape odorant-evoked activity, in large part because of the complexity of sniffing behavior and the difficulty in reproducing this behavior in an anesthetized or reduced preparation. Here we present a method for generating naturalistic sniffing patterns in such preparations. The method involves a nasal ventilator whose movement is controlled by an analog command voltage. The command signal may consist of intranasal pressure transients recorded from awake rats and mice or user-defined waveforms. This “sniff playback” device generates intranasal pressure and airflow transients in anesthetized animals that approximate those recorded from the awake animal and are reproducible across trials and across preparations. The device accurately reproduces command waveforms over an amplitude range of approximately 1 log unit and up to frequencies of approximately 12 Hz. Further, odorant-evoked neural activity imaged during sniff playback appears similar to that seen in awake animals. This method should prove useful in investigating how the parameters of odorant sampling shape neural responses in a variety of experimental settings.
机译:长期以来,嗅觉一直被认为在影响神经系统多个层面对气味的神经反应中起着至关重要的作用。然而,由于嗅探行为的复杂性以及在麻醉或减少的制剂中难以再现这种行为的难度,因此一直难以系统地检查嗅探行为的特定参数如何形成气味诱发的活动。在这里,我们提出了一种在这种准备中产生自然嗅探图案的方法。该方法涉及一种鼻呼吸机,其运动由模拟指令电压控制。命令信号可以包括从清醒的大鼠和小鼠记录的鼻内压力瞬变或用户定义的波形。这种“嗅探回放”设备可在麻醉动物中产生鼻内压力和气流瞬变,其近似于从清醒动物记录的鼻内压力和气流瞬变,并且可在试验和制剂之间重现。该设备可在大约1 log单位的幅度范围内以及高达大约12 Hz的频率范围内精确地再现命令波形。此外,嗅探回放期间成像的气味诱发的神经活动看起来类似于在清醒的动物中看到的那样。该方法在研究各种实验环境中加味剂采样参数如何影响神经反应方面应被证明是有用的。

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