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颅骨生长中的尺寸、几何形状和物理限制

Dimensional, Geometrical, and Physical Constraints in Skull Growth.

作者信息

Weickenmeier Johannes, Fischer Cedric, Carter Dennis, Kuhl Ellen, Goriely Alain

机构信息

Department of Mechanical Engineering, Stanford University, Stanford, California 94305, USA.

Department of Mechanical and Process Engineering, ETH Zurich, 8092 Zurich, Switzerland.

出版信息

Phys Rev Lett. 2017 Jun 16;118(24):248101. doi: 10.1103/PhysRevLett.118.248101.

Abstract

After birth, the skull grows and remodels in close synchrony with the brain to allow for an increase in intracranial volume. Increase in skull area is provided primarily by bone accretion at the sutures. Additional remodeling, to allow for a change in curvatures, occurs by resorption on the inner surface of the bone plates and accretion on their outer surfaces. When a suture fuses too early, normal skull growth is disrupted, leading to a deformed final skull shape. The leading theory assumes that the main stimulus for skull growth is provided by mechanical stresses. Based on these ideas, we first discuss the dimensional, geometrical, and kinematic synchrony between brain, skull, and suture growth. Second, we present two mechanical models for skull growth that account for growth at the sutures and explain the various observed dysmorphologies. These models demonstrate the particular role of physical and geometrical constraints taking place in skull growth.

摘要

出生后,颅骨与大脑紧密同步生长和重塑,以增加颅内容积。颅骨面积的增加主要通过缝合处的骨质增生实现。为适应曲率变化而进行的额外重塑,是通过骨板内表面的吸收和外表面的增生来完成的。当缝合过早融合时,正常的颅骨生长就会受到干扰,导致最终颅骨形状变形。主流理论认为,颅骨生长的主要刺激因素是机械应力。基于这些观点,我们首先讨论大脑、颅骨和缝合处生长之间的尺寸、几何和运动学同步性。其次,我们提出了两个颅骨生长的力学模型,这些模型考虑了缝合处的生长,并解释了观察到的各种畸形形态。这些模型展示了在颅骨生长过程中物理和几何约束所起的特殊作用。

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