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首页> 外文期刊>International Journal of Advanced Robotic Systems >A Quadratic Nonlinear Prediction-Based Heart Motion Model Following Control Algorithm in Robotic-Assisted Beating Heart Surgery Regular Paper
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A Quadratic Nonlinear Prediction-Based Heart Motion Model Following Control Algorithm in Robotic-Assisted Beating Heart Surgery Regular Paper

机译:机器人辅助搏动心脏手术普通纸上控制算法的二次非线性预测基于心脏运动模型

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摘要

Off-pump coronary artery bypass graft surgery outperforms the traditional on-pump surgery because the assisted robotic tools can cancel the relative motion between the beating heart and the robotic tools, which reduces post-surgery complications for patients. The challenge for the robot assisted tool when tracking the beating heart is the abrupt change caused by the nonlinear nature of heart motion and high precision surgery requirements. A characteristic analysis of 3D heart motion data through bi-spectral analysis demonstrates the quadratic nonlinearity in heart motion. Therefore, it is necessary to introduce nonlinear heart motion prediction into the motion tracking control procedures. In this paper, the heart motion tracking problem is transformed into a heart motion model following problem by including the adaptive heart motion model into the controller. Moreover, the model following algorithm with the nonlinear heart motion model embedded inside provides more accurate future reference by the quadratic term of sinusoid series, which could enhance the tracking accuracy of sharp change point and approximate the motion with sufficient detail. The experiment results indicate that the proposed algorithm outperforms the linear prediction-based model following controller in terms of tracking accuracy (root mean square).
机译:泵浦冠状动脉旁路移植手术优于传统的泵手术,因为辅助机器人工具可以取消跳动心脏和机器人工具之间的相对运动,从而降低患者的手术后并发症。在跟踪跳动心脏时机器人辅助工具的挑战是心动非线性和高精度手术要求引起的突然变化。通过双光谱分析的3D心动数据的特征分析证明了心脏运动中的二次非线性。因此,必须将非线性心脏运动预测引入运动跟踪控制程序中。在本文中,通过将自适应心动模型进入控制器,将心动跟踪问题转换为内心运动模型。此外,嵌入内部的非线性心脏运动模型的算法算法提供了通过正弦序列的二次术语提供更准确的未来参考,这可以提高急剧改变点的跟踪精度,并以充分的细节近似运动。实验结果表明,该算法在跟踪精度(根均线)方面占据了基于线性预测的模型。

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