AUTHOR=Adamczak S. K. , Pabst Ann , McLellan W. A. , Thorne L. H. TITLE=Using 3D Models to Improve Estimates of Marine Mammal Size and External Morphology JOURNAL=Frontiers in Marine Science VOLUME=6 YEAR=2019 URL=https://www.frontiersin.org/journals/marine-science/articles/10.3389/fmars.2019.00334 DOI=10.3389/fmars.2019.00334 ISSN=2296-7745 ABSTRACT=
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 (produced using the open access software Blender) in quantifying the SA and V of both long-finned pilot whales and short-finned pilot whales (