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A behavioural shutdown can make sleeping safer: a strategic perspective on the function of sleep

机译:行为关闭可以使睡眠更安全:睡眠功能的战略观点

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摘要

Sleep appears to effect some sort of neural maintenance, but a complete theory of the function of sleep must address why such maintenance requires a behavioural shutdown (or unconsciousness) that leaves an animal vulnerable to predators. We present a simple, strategic model to determine the degree of sleep that minimizes the risk of predation. We assume that the brain is composed of neural units that can, in theory, 'sleep' independently of each other, and that a given neural unit must go offline for maintenance/ sleep. We also assume that the probability of detecting an attack depends on the fraction of neural units that are awake. We found that having all neural units offline simultaneously (i.e. shutdown sleep) is often the safest way to perform neural maintenance, even though partial sleep makes predators more detectable. This counterintuitive result reflects the assumptions that, in a state of partial sleep, (1) neural maintenance takes longer to complete and (2) predator detection is less effective than suggested by the proportion of neural units online. Partial sleep is a possible outcome when the risk of attack increases as more neural units are taken offline. Minimal sleep (with only one or a few units offline) is a possible outcome when the attack rate while awake is substantially higher than when asleep. Partial sleep of a sort is known to occur in some animals, but there is no apparent evidence for the idea of minimal sleep.
机译:睡眠似乎会影响某种神经系统的维持,但是关于睡眠功能的完整理论必须解决为什么这种维持需要行为停顿(或无意识)而使动物容易受到掠食者侵害的原因。我们提出了一个简单的战略模型来确定将捕食风险降至最低的睡眠程度。我们假设大脑由理论上可以彼此独立地“睡眠”的神经单元组成,并且给定的神经单元必须脱机进行维护/睡眠。我们还假设检测到攻击的可能性取决于醒着的神经单元的比例。我们发现,即使部分睡眠会使捕食者更容易被发现,同时使所有神经单元同时离线(即关闭睡眠)通常是执行神经维护的最安全方法。这一违反直觉的结果反映了以下假设:在部分睡眠状态下,(1)神经维持需要更长的时间才能完成,(2)捕食者检测的效率低于在线神经单元所占的比例。当更多的神经单位脱机时发作的风险增加时,可能会出现部分睡眠。当清醒时的攻击率显着高于睡着时,可能会导致睡眠不足(只有一个或几个单元脱机)。众所周知,某些动物会出现部分睡眠,但是没有明显证据表明极少睡眠的想法。

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