van de Kamp Thomas, dos Santos Rolo Tomy, Vagovič Patrik, Baumbach Tilo, Riedel Alexander
ANKA/Institute for Photon Science and Synchrotron Radiation, Karlsruhe Institute of Technology (KIT), Eggenstein-Leopoldshafen, Germany; State Museum of Natural History (SMNK), Karlsruhe, Germany.
ANKA/Institute for Photon Science and Synchrotron Radiation, Karlsruhe Institute of Technology (KIT), Eggenstein-Leopoldshafen, Germany.
PLoS One. 2014 Jul 16;9(7):e102355. doi: 10.1371/journal.pone.0102355. eCollection 2014.
Digital surface mesh models based on segmented datasets have become an integral part of studies on animal anatomy and functional morphology; usually, they are published as static images, movies or as interactive PDF files. We demonstrate the use of animated 3D models embedded in PDF documents, which combine the advantages of both movie and interactivity, based on the example of preserved Trigonopterus weevils. The method is particularly suitable to simulate joints with largely deterministic movements due to precise form closure. We illustrate the function of an individual screw-and-nut type hip joint and proceed to the complex movements of the entire insect attaining a defence position. This posture is achieved by a specific cascade of movements: Head and legs interlock mutually and with specific features of thorax and the first abdominal ventrite, presumably to increase the mechanical stability of the beetle and to maintain the defence position with minimal muscle activity. The deterministic interaction of accurately fitting body parts follows a defined sequence, which resembles a piece of engineering.
基于分割数据集的数字表面网格模型已成为动物解剖学和功能形态学研究不可或缺的一部分;通常,它们以静态图像、电影或交互式PDF文件的形式发布。我们以保存下来的三棱象鼻虫为例,展示了嵌入在PDF文档中的动画3D模型的使用,该模型兼具电影和交互性的优点。该方法特别适用于模拟由于精确的形状闭合而具有很大确定性运动的关节。我们展示了单个螺母螺杆式髋关节的功能,并进而展示了整个昆虫达到防御姿势的复杂运动。这种姿势是通过一系列特定的运动实现的:头部和腿部相互联锁,并与胸部和第一腹节的特定特征联锁,大概是为了提高甲虫的机械稳定性,并以最小的肌肉活动维持防御姿势。精确匹配的身体部位之间的确定性相互作用遵循一个定义的顺序,这类似于一项工程设计。