School of Engineering, RMIT University, Bundoora, VIC, 3083, Australia.
Med Biol Eng Comput. 2018 Dec;56(12):2163-2176. doi: 10.1007/s11517-018-1849-5. Epub 2018 May 30.
Soft tissue deformation modelling forms the basis of development of surgical simulation, surgical planning and robotic-assisted minimally invasive surgery. This paper presents a new methodology for modelling of soft tissue deformation based on reaction-diffusion mechanics via neural dynamics. The potential energy stored in soft tissues due to a mechanical load to deform tissues away from their rest state is treated as the equivalent transmembrane potential energy, and it is distributed in the tissue masses in the manner of reaction-diffusion propagation of nonlinear electrical waves. The reaction-diffusion propagation of mechanical potential energy and nonrigid mechanics of motion are combined to model soft tissue deformation and its dynamics, both of which are further formulated as the dynamics of cellular neural networks to achieve real-time computational performance. The proposed methodology is implemented with a haptic device for interactive soft tissue deformation with force feedback. Experimental results demonstrate that the proposed methodology exhibits nonlinear force-displacement relationship for nonlinear soft tissue deformation. Homogeneous, anisotropic and heterogeneous soft tissue material properties can be modelled through the inherent physical properties of mass points. Graphical abstract Soft tissue deformation modelling with haptic feedback via neural dynamics-based reaction-diffusion mechanics.
软组织变形建模是手术模拟、手术规划和机器人辅助微创手术发展的基础。本文提出了一种基于神经动力学的反应扩散力学的软组织变形建模新方法。由于机械载荷使组织变形离开其静止状态而存储在软组织中的势能被视为等效跨膜势能,并且以非线性电波及在组织质量中的传播方式分布。机械势能的反应扩散传播和非刚性运动力学相结合,对软组织变形及其动力学进行建模,这两者进一步被表述为细胞神经网络的动力学,以实现实时计算性能。该方法通过触觉设备实现了具有力反馈的交互式软组织变形,触觉设备可以实现实时计算性能。实验结果表明,所提出的方法表现出非线性软组织变形的非线性力-位移关系。通过质点的固有物理特性可以对均匀、各向异性和非均匀的软组织材料特性进行建模。