首页> 外文期刊>分子与细胞生物力学(英文) >An Isogeometric Analysis Computational Platform for Material Transport Simulation in Complex Neurite Networks
【24h】

An Isogeometric Analysis Computational Platform for Material Transport Simulation in Complex Neurite Networks

机译:复杂神经突网络中材料传输模拟的异步分析计算平台

获取原文
获取原文并翻译 | 示例
       

摘要

Neurons exhibit remarkably complex geometry in their neurite networks.So far,how materials are transported in the complex geometry for survival and function of neurons remains an unanswered question.Answering this question is fundamental to understanding the physiology and disease of neurons.Here,we have developed an isogeometric analysis(IGA)based platform for material transport simulation in neurite networks.We modeled the transport process by reaction-diffusion-transport equations and represented geometry of the networks using truncated hierarchical tricubic B-splines(THB-spline3D).We solved the Navier-Stokes equations to obtain the velocity field of material transport in the networks.We then solved the transport equations using the streamline upwind/Petrov-Galerkin(SU/PG)method.Using our IGA solver,we simulated material transport in three basic models of the network geometry:a single neurite,a neurite bifurcation,and a neurite tree with three bifurcations.In addition,the robustness of our solver is illustrated by simulating material transport in three representative and complex neurite networks.From the simulation we discovered several spatial patterns of the transport process.Together,our simulation provides key insights into how material transport in neurite networks is mediated by their complex geometry.
机译:神经元在其神经突网络中表现出显着的复杂几何形状。因此,如何在复杂的几何形状中运输材料,以进行神经元的存活,神经元的功能仍然是一个未答复的问题。对于理解神经元的生理学和疾病,社会造成的问题是对神经元的生理和疾病的生存和函数。我们有开发了基于ISogeometic分析(IGA)神经钻网络中的材料传输模拟平台.WE通过反应扩散传输方程建模运输过程,并使用截短的分层三曲面(THB-SPLINE3D)表示网络的几何形状。我们解决了Navier-Stokes方程以获得网络中的材料传输的速度场。然后,使用流线Upwind / Petrov-Galerkin(SU / PG)方法解决了传输方程。我们的IGA求解器,我们模拟了三个基本的材料运输网络几何模型:单一的神经突,神经突分叉和具有三个分叉的神经突树。此外,鲁棒性通过在三个代表和复杂的神经突网络中模拟材料传输来说明我们的解决方案。从模拟中发现了几种运输过程的空间模式。我们的仿真提供了对神经钻网络中的材料传输如何由其复杂的几何进行介导的关键洞察。

著录项

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