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Heart Motion Prediction in Robotic-Assisted Beating Heart Surgery: A Nonlinear Fast Adaptive Approach

机译:机器人辅助心跳手术中的心脏运动预测:非线性快速自适应方法

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Off-pump Coronary Artery Bypass Graft (CABG) surgery outperforms traditional on-pump surgery because the assisted robotic tools can alleviate the relative motion between the beating heart and robotic tools. Therefore, it is possible for the surgeon to operate on the beating heart and thus lessens post surgery complications for the patients. Due to the highly irregular and non-stationary nature of heart motion, it is critical that the beating heart motion is predicted in the model-based track control procedures. It is technically preferable to model heart motion in a nonlinear way because the characteristic analysis of 3D heart motion data through Bi-spectral analysis and Fourier methods demonstrates the involved nonlinearity of heart motion. We propose an adaptive nonlinear heart motion model based on the Volterra Series in this paper. We also design a fast lattice structure to achieve computational-efficiency for real-time online predictions. We argue that the quadratic term of the Volterra Series can im...
机译:非体外循环冠状动脉旁路移植术(CABG)的手术优于传统的体外循环手术,因为辅助机器人工具可以减轻心脏跳动和机器人工具之间的相对运动。因此,外科医生可以在跳动的心脏上进行手术,从而减轻患者的术后并发症。由于心脏运动的高度不规则和非平稳性,在基于模型的跟踪控制程序中预测跳动的心脏运动至关重要。从技术上讲,最好以非线性方式对心脏运动进行建模,因为通过双光谱分析和傅里叶方法对3D心脏运动数据进行的特性分析证明了心脏运动存在非线性。本文提出了一种基于Volterra级数的自适应非线性心脏运动模型。我们还设计了一种快速的晶格结构,以实现实时在线预测的计算效率。我们认为沃尔泰拉级数的二次项可以表示...

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