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Training Rats to Voluntarily Dive Underwater: Investigations of the Mammalian Diving Response

机译:训练大鼠自愿在水下潜水:哺乳动物潜水反应的调查

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摘要

Underwater submergence produces autonomic changes that are observed in virtually all diving animals. This reflexly-induced response consists of apnea, a parasympathetically-induced bradycardia and a sympathetically-induced alteration of vascular resistance that maintains blood flow to the heart, brain and exercising muscles. While many of the metabolic and cardiorespiratory aspects of the diving response have been studied in marine animals, investigations of the central integrative aspects of this brainstem reflex have been relatively lacking. Because the physiology and neuroanatomy of the rat are well characterized, the rat can be used to help ascertain the central pathways of the mammalian diving response. Detailed instructions are provided on how to train rats to swim and voluntarily dive underwater through a 5 m long Plexiglas maze. Considerations regarding tank design and procedure room requirements are also given. The behavioral training is conducted in such a way as to reduce the stressfulness that could otherwise be associated with forced underwater submergence, thus minimizing activation of central stress pathways. The training procedures are not technically difficult, but they can be time-consuming. Since behavioral training of animals can only provide a model to be used with other experimental techniques, examples of how voluntarily diving rats have been used in conjunction with other physiological and neuroanatomical research techniques, and how the basic training procedures may need to be modified to accommodate these techniques, are also provided. These experiments show that voluntarily diving rats exhibit the same cardiorespiratory changes typically seen in other diving animals. The ease with which rats can be trained to voluntarily dive underwater, and the already available data from rats collected in other neurophysiological studies, makes voluntarily diving rats a good behavioral model to be used in studies investigating the central aspects of the mammalian diving response.
机译:水下淹没会产生自主变化,几乎所有潜水动物都会观察到这种变化。这种反射性反应包括呼吸暂停,副交感神经引起的心动过缓和交感神经引起的血管阻力改变,维持血液流向心脏,大脑和锻炼肌肉。尽管已经在海洋动物中研究了潜水反应的许多代谢和心肺方面,但相对缺乏这种脑干反射的中央整合方面的研究。因为大鼠的生理和神经解剖学已被很好地表征,所以该大鼠可用于帮助确定哺乳动物潜水反应的中枢途径。提供了有关如何训练老鼠游泳并自愿通过5 m长的Plexiglas迷宫在水下潜水的详细说明。还给出了有关储罐设计和手术室要求的注意事项。进行行为训练的方式可以减少原本可能与强迫水下淹没相关的压力,从而最大程度地减少中央应力路径的激活。培训程序在技术上并不困难,但可能很耗时。由于对动物的行为训练只能提供一种可与其他实验技术结合使用的模型,因此示例了如何将自愿潜水大鼠与其他生理和神经解剖学研究技术结合使用,以及如何可能需要修改基本训练程序以适应还提供了这些技术。这些实验表明,自愿潜水的大鼠表现出与其他潜水动物相同的心肺变化。可以轻松训练大鼠自愿在水下潜水,以及从其他神经生理学研究中收集到的老鼠已经获得的数据,使自愿潜水大鼠成为一种良好的行为模型,可用于研究哺乳动物潜水反应的主要方面。

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