构成模型用于生物组织的风湿学
Suzanne M Fielding1, James O Cochran1, Junxiang Huang2
1Department of Physics, Durham University, Science Laboratories, South Road, Durham DH1 3LE, UK.
Physical review. E
|November 18, 2023
概括
生物组织风湿学对发育和疾病至关重要,表现出液体-固体过渡和粘性弹性. 这项研究模拟了跨剪切速率的组织力学,揭示了细胞形状和流动的新构成模型.
科学领域:
- 生物物理学的生物物理.
- 类风病学 类风病学 类风病学
- 计算生物学 计算生物学
背景情况:
- 生物组织风湿学对胚胎发育,伤口愈合和癌症转移至关重要.
- 顶点模型揭示了由细胞形状和剪切影响的组织液体-固体过渡.
- 生物组织表现出固有的粘性弹性,显示时间和速率依赖的机制.
研究的目的:
- 通过广泛的切割速率,研究非线性切割中顶点模型的整形学.
- 阐明非线性应力-应变曲线和稳定状态流量曲线.
- 开发一种可以捕捉组织过渡和机制的质构成模型.
主要方法:
- 结合模拟和连续理论.
- 检查了近静态到快速剪切速率的非线性剪切.
- 制定了一个类风学构成模型.
主要成果:
- 在剪切开始后阐明非线性应力-应变曲线.
- 压力与延展率的稳定状态流动曲线的特征.
- 开发了一个模型,将细胞形状与流动动力学结合起来.
结论:
- 这项研究为汇聚组织单层提供了一个全面的风学模型.
- 该模型捕捉了固体-液体过渡和复杂的线性/非线性形学.
- 这项工作促进了对发育和疾病中的组织力学的理解.
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