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首页> 外文期刊>Behaviour >Postnatal persistence of episodic spontaneous rapid-body-movement bursts and twitches in the cuttlefish, Sepia officinalis
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Postnatal persistence of episodic spontaneous rapid-body-movement bursts and twitches in the cuttlefish, Sepia officinalis

机译:墨鱼乌贼墨中发作性自发快速身体运动爆发和抽搐的产后持续性

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摘要

Measurements made under microscopic examination of spontaneous motility shortly before and after hatching in the cuttlefish, Sepia officinalis, revealed a developmental continuity wherein bursts of vigorous mantle contractions lasting a few seconds atmost, often associated with irregular twitching of the tentacles and head (but less often of the eyes or chromatophores), follow each other at variable intervals ranging from less than 5 s to many minutes. Releasing the animals prematurely into sea water had no qualitative effect on visible movements but augmented their incidence considerably if done several days before hatching, while reducing it if done shortly prior to hatching. That this was not an age effect is suggested by the lack of any difference between the two groups after their emergence from the egg capsule. The temporal patterning of these stereotyped 'rapid-body-movements', defined here as an immature subclass of 'motorically active sleep', differed both quantitatively and qualitativelyfrom the repetitive bouts of swimming ('active wakefulness') that also occur episodically in hatchlings but not in embryos. Similar to endothermic vertebrates, sleep bursts in cuttlefish rapidly became much less frequent with increasing age as the incidence of wake-like behaviour increased. Spontaneous embryonic motility, c.q., active sleep, thus appears to constitute an ontogenetically and phylogenetically primordial behavioural state which continues without discontinuity into postnatal life, with classical 'rapid-eye-movement', c.q., 'paradoxical' sleep, being a later appearing special case.
机译:在乌贼墨鱼孵化前后不久,通过显微镜检查自发运动的能力,发现其发育连续性,其中剧烈的地幔收缩爆发最多持续数秒,通常与触手和头部的不规则抽搐有关(但不经常发生)眼或色谱),彼此之间的间隔不固定,从不到5秒到很多分钟不等。将动物过早释放到海水中对可见的运动没有定性影响,但是如果在孵化前几天进行,则可大大增加其发生率,而如果在孵化前不久进行,则可降低其发生率。两组从卵囊中出来后没有任何区别,表明这不是年龄效应。这些刻板印象的“快速身体运动”的时间模式在这里被定义为“运动活跃睡眠”的不成熟子类,在数量和质量上都与重复的泳动(“活跃的清醒”)不同,后者在孵化场中也很常见。不在胚胎中。与吸热脊椎动物相似,随着尾流行为的发生率增加,墨鱼的睡眠突发频率随着年龄的增长而迅速减少。因此,自发的胚胎运动性,运动性,活跃睡眠似乎构成了本体和系统发育的原始行为状态,这种状态一直持续到产后生活中,而经典的“快速眼动”,运动性,“反常”睡眠成为后来出现的特殊现象案件。

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