The contact goniometer is a commonly used tool in lithic and zooarchaeological analysis, despite suffering from a number of shortcomings due to the physical interaction between the measuring implement, the object being measured, and the individual taking the measurements. However, lacking a simple and efficient alternative, researchers in a variety of fields continue to use the contact goniometer to this day. In this paper, we present a new goniometric method that we call the virtual goniometer, which takes angle measurements virtually on a 3D model of an object. The virtual goniometer allows for rapid data collection, and for the measurement of many angles that cannot be physically accessed by a manual goniometer. We compare the intra-observer variability of the manual and virtual goniometers, and find that the virtual goniometer is far more consistent and reliable. Furthermore, the virtual goniometer allows for precise replication of angle measurements, even among multiple users, which is important for reproducibility of goniometric-based research. The virtual goniometer is available as a plug-in in the open source mesh processing packages Meshlab and Blender, making it easily accessible to researchers exploring the potential for goniometry to improve archaeological methods and address anthropological questions.
翻译:尽管测量执行、测量对象和测量对象个人之间的物理互动存在一些缺陷,但接触气压计是利氏和动物考古分析中常用的工具,尽管由于测量执行、测量对象和测量对象之间的物理互动存在一些缺陷,然而,由于缺乏简单有效的替代方法,各个领域的研究人员继续使用接触气压计,直到今天为止。在本文中,我们提出了一个新的测量方法,我们称之为虚拟气压计,它几乎可以对一个物体的3D模型进行角测量。虚拟气压计可以快速收集数据,并测量无法用人工气压计实际访问的许多角度。我们比较了手动和虚拟气压计的观测器内部变异性,发现虚拟气压计更加一致和可靠。此外,虚拟气压计可以精确地复制角度测量方法,即使是在多个用户中,这对于重新恢复以3D为主的研究十分重要。虚拟气压计仪可用于快速收集数据,并用于测量许多无法用手动气压计实际访问的角度。我们比较了手动气压和虚拟气压计的观测仪内部观察器内部变化,发现虚拟气压仪的变式测量方法,从而可以方便地探索研究人员对空间进行探索。