首页> 外文期刊>Evolutionary biology >Virtual Functional Morphology: Novel Approaches to the Study of Craniofacial Form and Function
【24h】

Virtual Functional Morphology: Novel Approaches to the Study of Craniofacial Form and Function

机译:虚拟功能形态:颅面形式和功能研究的新方法

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Recent developments in simulating musculoskeletal functioning in the craniofacial complex using multibody dynamic analysis and finite elements analysis enable comprehensive virtual investigations into musculoskeletal form and function. Because the growth of the craniofacial skeleton is strongly influenced by mechanical functioning, these methods have potential in investigating the normal and abnormal development of the skull: loading history during development can be predicted and bony adaptations to these loads simulated. Thus these methods can be used to predict the impact of altered loading or modifications of skull form early in ontogeny on the subsequent development of structures. Combining functional models with geometric morphometric methods (GMM), which are principally concerned with the study of variations of form, offers the opportunity to examine variations in form during development and the covariations between form and factors such as functional performance. Such a combination of functional models and GMM can potentially be applied in many useful ways, for example: to build and modify functional models, to assess the outcomes of remodelling studies by comparing the results with morphological changes during ontogeny, and to compare the outcomes of finite element analyses within a multivariate framework. Studies using these tools can not only investigate the development of the skull but also the mechanical processes and thus to some degree, behaviours underlying the development of variation among extant and fossil skeletal elements. By bringing together these tools from quite different comparative traditions, a novel and potentially powerful framework for simulation and statistical biomechanical analyses of form and function emerges. This paper reviews these recent developments in the context of the evolutionary and functional influences on skull development.
机译:使用多体动力学分析和有限元分析来模拟颅面复合体中的骨骼肌肉功能的最新进展,可以对骨骼肌肉的形式和功能进行全面的虚拟研究。由于颅面骨骼的生长受到机械功能的强烈影响,因此这些方法在研究颅骨的正常和异常发育方面具有潜力:可以预测发育过程中的负荷历史并模拟对这些负荷的骨适应性。因此,这些方法可用于预测个体发育早期颅骨形态改变的负荷或修饰对结构后续发展的影响。将功能模型与几何形态计量学方法(GMM)结合在一起,这些方法主要关注形式变化的研究,从而提供了检查开发过程中形式变化以及形式与功能功能等因素之间的协变的机会。功能模型和GMM的这种组合可以潜在地以许多有用的方式应用,例如:建立和修改功能模型,通过将结果与个体发育过程中的形态学变化进行比较来评估重塑研究的结果以及比较多元框架内的有限元分析。使用这些工具进行的研究不仅可以研究颅骨的发育,而且可以研究机械过程,因此可以在一定程度上研究现存和化石骨骼元素之间变异发展背后的行为。通过将来自截然不同的比较传统的这些工具整合在一起,出现了一种新颖且可能强大的框架,用于对形式和功能进行仿真和统计生物力学分析。本文在对头骨发育的进化和功能影响的背景下回顾了这些最新进展。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号