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实体肿瘤生长对皮质折叠的力学作用。

Mechanical role of a growing solid tumor on cortical folding.

作者信息

Razavi Mir Jalil, Reeves Mary, Wang Xianqiao

机构信息

a College of Engineering, University of Georgia , Athens , GA , USA.

b College of Engineering and Science, Clemson University , Clemson , SC , USA.

出版信息

Comput Methods Biomech Biomed Engin. 2017 Aug;20(11):1212-1222. doi: 10.1080/10255842.2017.1340465. Epub 2017 Jul 5.

Abstract

Cortical folding, or convolution of the brain, is a vital process in mammals that causes the brain to have a wrinkled appearance. The existence of different types of prenatal solid tumors may alter this complex phenomenon and cause severe brain disorders. Here we interpret the effects of a growing solid tumor on the cortical folding in the fetal brain by virtue of theoretical analyses and computational modeling. The developing fetal brain is modeled as a simple, double-layered, and soft structure with an outer cortex and an inner core, in combination with a circular tumor model imbedded in the structure to investigate the developmental mechanism of cortical convolution. Analytical approaches offer introductory insight into the deformation field and stress distribution of a developing brain. After the onset of instability, analytical approaches fail to capture complex secondary evolution patterns, therefore a series of non-linear finite element simulations are carried out to study the crease formation and the influence from a growing solid tumor inside the structure. Parametric studies show the dependency of the cortical folding pattern on the size, location, and growth speed of a solid tumor in fetal brain. It is noteworthy to mention that there is a critical distance from the cortex/core interface where the growing tumor shows its pronounced effect on the cortical convolution, and that a growing tumor decreases the gyrification index of cortical convolution while its stiffness does not have a profound effect on the gyrification process.

摘要

皮质折叠,即大脑的卷曲,是哺乳动物中的一个重要过程,它使大脑呈现出褶皱的外观。不同类型的产前实体瘤的存在可能会改变这一复杂现象,并导致严重的脑部疾病。在此,我们借助理论分析和计算建模来阐释生长中的实体瘤对胎儿大脑皮质折叠的影响。发育中的胎儿大脑被建模为一个简单的双层软结构,包括外层皮质和内层核心,并结合嵌入该结构的圆形肿瘤模型,以研究皮质卷曲的发育机制。分析方法为发育中大脑的变形场和应力分布提供了初步见解。在不稳定性开始后,分析方法无法捕捉复杂的二次演化模式,因此进行了一系列非线性有限元模拟,以研究褶皱的形成以及结构内生长中的实体瘤的影响。参数研究表明,皮质折叠模式取决于胎儿大脑中实体瘤的大小、位置和生长速度。值得一提的是,从皮质/核心界面存在一个临界距离,在该距离处生长中的肿瘤对皮质卷曲有显著影响,并且生长中的肿瘤会降低皮质卷曲的脑回化指数,而其刚度对脑回化过程没有深远影响。

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