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首页> 外文期刊>Frontiers in Marine Science >Using 3D models to improve estimates of marine mammal size and external morphology
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Using 3D models to improve estimates of marine mammal size and external morphology

机译:使用3D模型来改善海洋哺乳动物大小和外部形态的估计

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Studies of animal morphology inform our understanding of many combined aspects of biology, including thermal ecology, biomechanics and energetics. Studies that accurately describe the size and shape of marine mammals, for example, can be particularly useful in understanding the challenges an endotherm faces when moving and thermoregulating in an aquatic environment. The relationship between surface area (SA) and volume (V) plays a key role in the energetics of thermoregulation and locomotion, but detailed morphometric measurements of marine mammals are often limited. Thus, SA and V are typically estimated using a series of conical frustrums and cylinders (the truncated cones method), which provides a repeatable but abstracted depiction of morphology. In contrast, digital 3D modeling systems can offer more detailed representations of animal size and shape. We compared the results of the truncated cones method and a 3D modeling system (using the open access software Blender) in quantifying the SA and V of both long-finned pilot whales and short-finned pilot whales (Globicephala spp.). We developed a 3D model of pilot whales using measurements and images collected by stranding networks. The 3D model provided a more realistic depiction of pilot whale morphology than the truncated cones method, particularly in the tail stock region where the truncated cones method greatly overestimated both SA and V. The difference between SA and V estimates of the two methods was greater for larger individuals, suggesting that as animals become larger, the truncated cones method increasingly overestimated SA and V. Further, the 3D model was more robust to changes in the number of morphometric girth measurements used when estimating SA and V compared to the truncated cones method. Results of this study demonstrate that 3D models can provide realistic depictions of cetacean morphology and can be used to provide more accurate estimates of morphological metrics than geometric models of morphology. The 3D modeling techniques employed in this study could be used in a variety of other applications which require accurate estimates of morphological metrics.
机译:动物形态学的研究可通知我们对生物学的许多组合方面的理解,包括热生态学,生物力学和能量学。例如,准确描述海洋哺乳动物的尺寸和形状的研究可以特别有用于在水生环境中移动和热调节时对吸热器面临的挑战特别有用。表面积(SA)和体积(V)之间的关系在热度调节和运动的能量学中起关键作用,但是海洋哺乳动物的详细的形态测量通常是有限的。因此,通常使用一系列锥形电影和圆柱(截锥法)估计SA和V,其提供可重复但抽象的形态描绘。相比之下,数字3D建模系统可以提供更详细的动物尺寸和形状的表示。我们将截短的锥体方法和3D建模系统(使用开放式访问软件搅拌机)进行比较了量化SA和V的长翅片飞行员鲸鱼和短翅片飞行员(GlobeEphala SPP)的结果。我们开发了使用绞线网络收集的测量和图像的飞行员鲸鱼的3D模型。 3D模型提供了比截短的锥体方法更真实地描绘,比截断的锥形方法,特别是在尾透镜方法中,截断锥形方法大大高估了SA和V.这两种方法的SA和V估计之间的差异更大较大的个体,表明随着动物变得更大,截短的锥体方法越来越高估了SA和V.此外,与截断的锥体法相比,3D模型更稳定地变化在估计SA和V时使用的变形围绕测量的变化。该研究的结果表明,3D模型可以提供依锡的形态的现实描述,可用于提供比形态学的几何模型提供更准确的形态学估算。本研究中使用的3D建模技术可用于各种其他应用,这些应用需要准确估计形态学。

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