AbstractCapturing the deformation of human brain during neurosurgical operations is an extremely impor'/> Models and tissue mimics for brain shift simulations
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Models and tissue mimics for brain shift simulations

机译:脑移模模拟模型和组织模拟

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AbstractCapturing the deformation of human brain during neurosurgical operations is an extremely important task to improve the accuracy or surgical procedure and minimize permanent damage in patients. This study focuses on the development of an accurate numerical model for the prediction of brain shift during surgical procedures and employs a tissue mimic recently developed to capture the complexity of the human tissue. The phantom, made of a composite hydrogel, was designed to reproduce the dynamic mechanical behaviour of the brain tissue in a range of strain rates suitable for surgical procedures. The use of a well-controlled, accessible and MRI compatible alternative to real brain tissue allows us to rule out spurious effects due to patient geometry and tissue properties variability, CSF amount uncertainties, and head orientation. The performance of different constitutive descriptions is evaluated using a brain–skull mimic, which enables 3D deformation measurements by means of MRI scans. Our combined experimental and numerical investigation demonstrates the importance of using accurate constitutive laws when approaching the modelling of this complex organic tissue and supports the proposal of a hybrid poro-hyper-viscoelastic material formulation for the simulation of brain shift.]]>
机译:<![cdata [ <标题>抽象 ara id =“par1”>在神经外科操作期间捕获人脑的变形是一个完全重要的任务,以提高准确性或手术程序,最大限度地减少患者的永久性损伤。本研究侧重于开发手术过程中脑移预测的准确数值模型,并使用最近开发的组织模仿以捕获人体组织的复杂性。由复合水凝胶制成的幻影被设计为在适合外科手术的一系列应变率中再现脑组织的动态力学行为。使用良好控制,可访问的和MRI兼容的真实脑组织的替代方案使我们能够在患者几何和组织特性变异,CSF量不确定性和头向方向上排除杂散效应。使用脑颅骨模拟评估不同组成型描述的性能,这使得通过MRI扫描能够实现3D变形测量。我们的合并实验和数值调查显示了在接近该复杂有机组织的建模时使用准确的本构规定的重要性,并支持杂交孔隙超粘弹性材料配方的提议进行脑移模拟。 ]]>

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