Biomechanics and Structure-property Relationship in Solid Tumour
Biomechanics and Structure-property Relationship in Solid Tumour
批准号:
2517845
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2020
资助国家:
英国
项目状态:
已结题
起止时间:
2020 至 --
中文摘要
这是一个机械工程学的博士研究项目。生物组织往往具有独特的三维分层微结构和微形态,在其发育和病理生理阶段不断进化。对于实体瘤,例如前列腺癌、乳腺癌、皮肤癌和结直肠癌,了解其组织微结构的演变是临床诊断的关键。此外,由于无论是固体还是流体的力学行为都高度依赖于组织的微观结构,因此可以通过定量了解癌症组织的结构-性质关系来利用其力学性质用于诊断目的。这个PHD项目将使用医学成像和处理技术、3D CAD、有限元方法和其他先进的数学和数值方法,例如均质化方法(以其渐近或数值形式),以量化各种类型的实体肿瘤的结构-性质关系。该项目将受益于由陈宇航博士领导的组织力学小组在癌症力学领域现有的和正在进行的工作的数据,这些数据描述了前列腺/结直肠组织的各种形式的力学特征。虽然这个项目的主要目标是开发新的计算方法,但也预计可能需要某些实验数据(如软组织的力学特性)来验证所提出的建模方法。
英文摘要
This is a PhD research project in Mechanical Engineering.Biological tissue often has unique three-dimensional hierarchical microstructures and micro-morphologies, constantly evolving through their development and patho-physiological stages. For solid tumour, e.g. in forms of prostate, breast, skin and colorectal cancers, understanding the evolutions of their tissue microstructures is key to their clinical diagnosis. In addition, since the mechanical behaviours, in terms of both solid and fluid ones, highly depend on the tissue microstructures, it becomes possible to utilize the mechanical properties of the cancerous tissue for diagnosis purposes, through quantitative understanding of its structure-property relationship. This PhD project will employ medical imaging and processing techniques, 3D CAD, Finite Element Method and other advanced mathematical and numerical methods, such as homogenisation method (in its asymptotic or numerical forms), in order to quantify the structure-property relationship in various types of solid tumours. This project will benefit from data from existing and on-going work in the area of cancer mechanics in Tissue Mechanics Group, led by Dr Yuhang Chen, in various forms of mechanical characterisations of prostate/colorectal tissues. Although the main goal of this project is to develop novel computational approaches, it is also expected that certain experimental data (such as mechanical characterisation of soft tissue) may be required to validate the proposed modelling approaches.
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