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分段几何:一种用于在3D Slicer中测量面积二次矩的工具。

SegmentGeometry: A Tool for Measuring Second Moment of Area in 3D Slicer.

作者信息

Huie Jonathan M, Summers Adam P, Kawano Sandy M

机构信息

Department of Biological Sciences, George Washington University, Washington, DC 20052, USA.

Biology and SAFS, Friday Harbor Laboratories, University of Washington, Friday Harbor, WA 98250, USA.

出版信息

Integr Org Biol. 2022 Feb 28;4(1):obac009. doi: 10.1093/iob/obac009. eCollection 2022.

Abstract

Second moment of area is a measure of how well the cross-section of a beam will resist bending because of its shape. Many have used second moment of area to investigate the mechanical adaptations of biological structures from stingray jaws to animal limb bones. In this context it is important to acknowledge the assumptions of beam theory, in which second moment of area plays a key role, if reasonable results are desired. For example, to minimize shear the structure should be at least 10 times longer than it is wide and deflection should be minimal. Analyzing the internal geometry of biological structures has never been easier or more accessible given the wide, and growing availability of micro-CT scans. Here, we offer a guide on the care that needs to be taken when interpreting second moment of area, and present open-access, open-source software that can process hundreds if not thousands of structures in a short time frame. , an extension for the open-source imaging platform 3D Slicer, iterates slice-by-slice through 3D structures to calculate second moment of area and other cross-sectional properties. We analyzed 2 case studies to demonstrate the power of this tool and to highlight interpretations that can be gleaned from second moment of area. Second moment of area is just one part of the Euler-Bernoulli beam theory and considering the full equation would greatly increase the number and diversity of questions that can be answered.

摘要

截面二次矩是衡量梁的横截面因其形状而抵抗弯曲能力的一种度量。许多人利用截面二次矩来研究从黄貂鱼颌骨到动物肢体骨骼等生物结构的力学适应性。在这种情况下,如果想要得到合理的结果,就必须认识到梁理论的假设,其中截面二次矩起着关键作用。例如,为了使剪切力最小化,结构的长度应至少是其宽度的10倍,并且挠度应最小。鉴于微计算机断层扫描(micro-CT)扫描的广泛且不断增加的可用性,分析生物结构的内部几何形状从未如此简单或容易实现。在这里,我们提供了一份关于解释截面二次矩时需要注意的事项的指南,并展示了一款开放获取、开源的软件,该软件能够在短时间内处理数百个甚至数千个结构。(该软件)是开源成像平台3D Slicer的一个扩展,它逐片遍历三维结构以计算截面二次矩和其他横截面属性。我们分析了两个案例研究,以展示该工具的强大功能,并突出从截面二次矩中可以得出的解释。截面二次矩只是欧拉 - 伯努利梁理论的一部分,考虑完整的方程将极大地增加可以回答的问题的数量和多样性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f775/8919404/e2e74d519008/obac009fig1.jpg

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