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Viscoelastic Modeling of Human Nasal Tissues with a Mobile Measurement Device

机译:具有移动测量装置的人鼻组织粘弹性建模

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Modeling the dynamic of tool-tissue interaction for the robotic minimally invasive surgeries is one of the main issues for designing appropriate robot controllers. A mobile measurement device is produced in order to model some nasal tissues of a human. This mobile device is a hand-held one which measures the applied moments and relative angular displacements about a fixed pivot point. The ex-vivo measurements are realized by surgeons on a relatively fresh human cadaver head. The tip of the nose and the nasal concha are the two tissues that are investigated. In this study, five different viscoelastic models are considered; Elastic, Kelvin-Voight, Kelvin-Boltzmann, Maxwell and Hunt-Crossley. The results are evaluated and cross-validated on each data set. Hunt-Crossley and Kelvin-Boltzmann models provided the minimum root-mean-square (RMS) error among the other models.
机译:为机器人微创手术的工具组织交互的动态建模是设计适当的机器人控制器的主要问题之一。 制备移动测量装置,以模拟人类的一些鼻组织。 该移动设备是手持式的,其测量施加的瞬间和关于固定枢轴点的相对角位移。 前体内测量由外科医生在相对新鲜的人类尸体头上实现。 鼻尖和鼻腔Concha是研究的两种组织。 在这项研究中,考虑了五种不同的粘弹性模型; Elastic,Kelvin-voight,Kelvin-Boltzmann,Maxwell和Hunt-Crossley。 在每个数据集上进行评估和交叉验证结果。 Hunt-Crossley和Kelvin-Boltzmann模型提供了其他模型中的最小根均值(RMS)错误。

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