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喙部的生物力学及面部缝线的作用

Biomechanics of the rostrum and the role of facial sutures.

作者信息

Rafferty Katherine L, Herring Susan W, Marshall Christopher D

机构信息

Department of Orthodontics, University of Washington, Seattle, Washington 98195, USA.

出版信息

J Morphol. 2003 Jul;257(1):33-44. doi: 10.1002/jmor.10104.

Abstract

The rostrum is a large diameter, thin-walled tubular structure that receives loads from the teeth. The rostrum can be conceptualized both as a rigid structure and as an assemblage of several bones that interface at sutures. Using miniature pigs, we measured in vivo strains in rostral bones and sutures to gain a better understanding of how the rostrum behaves biomechanically. Strains in the premaxillary and nasal bones were low but the adjacent maxillary-premaxillary, internasal, and intermaxillary suture strains were larger by an order of magnitude. While this finding emphasizes the composite nature of the rostrum, we also found evidence in the maxillary and nasal bones for rigid structural behavior. Namely, maxillary strain is consistent with a short beam model under shear deformation from molar loading. Strain in the nasal bones is only partially supported by a long beam model; rather, a complex pattern of dorsal bending of the rostrum from incisor contact and lateral compression is suggested. Torsion of the maxilla is ruled out due to the bilateral occlusion of pigs and the similar working and balancing side strains, although it may be important in mammals with a unilateral bite. Torsional loading does appear important in the premaxillae, which demonstrate working and balancing side changes in strain orientation. These differences are attributed to asymmetrical incisor contact occurring at the end of the power stroke.

摘要

吻部是一个大直径、薄壁的管状结构,它承受来自牙齿的负荷。吻部既可以被概念化为一个刚性结构,也可以被看作是在缝合处相接的几块骨头的组合。我们使用小型猪测量了吻部骨骼和缝合处的体内应变,以便更好地了解吻部在生物力学上的行为方式。上颌骨和鼻骨中的应变较低,但相邻的上颌-上颌骨、鼻内和上颌间缝合处的应变大一个数量级。虽然这一发现强调了吻部的复合性质,但我们也在上颌骨和鼻骨中发现了刚性结构行为的证据。具体而言,上颌应变与磨牙加载引起的剪切变形下的短梁模型一致。鼻骨中的应变仅部分由长梁模型支持;相反,提示吻部因切牙接触和侧向压缩而出现复杂的背侧弯曲模式。由于猪的双侧咬合以及工作侧和平衡侧应变相似,上颌的扭转被排除,尽管它在单侧咬合的哺乳动物中可能很重要。扭转加载在前上颌骨中似乎很重要,前上颌骨显示出应变方向在工作侧和平衡侧的变化。这些差异归因于动力冲程末期发生的不对称切牙接触。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fff3/2819158/873875e6f699/nihms171165f1.jpg

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