首页> 美国卫生研究院文献>Frontiers in Physiology >Size Matters: Observed and Modeled Camouflage Response of European Cuttlefish (Sepia officinalis) to Different Substrate Patch Sizes during Movement
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Size Matters: Observed and Modeled Camouflage Response of European Cuttlefish (Sepia officinalis) to Different Substrate Patch Sizes during Movement

机译:大小事项:运动期间欧洲墨鱼(棕褐色)对不同基质斑块大小的观察和建模伪装响应

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摘要

Camouflage is common throughout the phylogenetic tree and is largely used to minimize detection by predator or prey. Cephalopods, and in particular Sepia officinalis cuttlefish, are common models for camouflage studies. Predator avoidance behavior is particularly important in this group of soft-bodied animals that lack significant physical defenses. While previous studies have suggested that immobile cephalopods selectively camouflage to objects in their immediate surroundings, the camouflage characteristics of cuttlefish during movement are largely unknown. In a heterogenic environment, the visual background and substrate feature changes quickly as the animal swim across it, wherein substrate patch is a distinctive and high contrast patch of substrate in the animal's trajectory. In the current study, we examine the effect of substrate patch size on cuttlefish camouflage, and specifically the minimal size of an object for eliciting intensity matching response while moving. Our results indicated that substrate patch size has a positive effect on animal's reflectance change, and that the threshold patch size resulting in camouflage response falls between 10 and 19 cm (width). These observations suggest that the animal's length (7.2–12.3 cm mantle length in our case) serves as a possible threshold filter below which objects are considered irrelevant for camouflage, reducing the frequency of reflectance changes—which may lead to detection. Accordingly, we have constructed a computational model capturing the main features of the observed camouflaging behavior, provided for cephalopod camouflage during movement.
机译:伪装在整个系统发育树中都很常见,并广泛用于最大程度地减少捕食者或猎物的发现。头足类动物,尤其是乌贼墨鱼是迷彩研究的常见模型。在这组缺乏明显身体防御能力的软体动物中,避免掠食者行为尤其重要。尽管先前的研究表明,固定的头足类动物会选择性地伪装其周围环境中的物体,但在移动过程中墨鱼的伪装特征在很大程度上尚不清楚。在异质环境中,视觉背景和底物特征会随着动物游过而快速变化,其中底物斑块是动物轨迹中底物的独特且高对比度的斑块。在当前的研究中,我们研究了底物斑块尺寸对乌贼伪装的影响,尤其是物体在移动时引起强度匹配响应的最小尺寸。我们的结果表明底物斑块尺寸对动物的反射率变化具有积极影响,导致伪装响应的阈值斑片尺寸落在10到19厘米(宽度)之间。这些观察结果表明,动物的长度(在我们的案例中为7.2-12.3 cm的地幔长度)可以作为阈值过滤器,在该阈值过滤器以下,物体被认为与伪装无关,从而减少了反射率变化的频率,这可能导致检测。因此,我们构建了一个计算模型,该模型捕获了观察到的伪装行为的主要特征,为运动过程中的头足类伪装提供了条件。

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