首页> 外文期刊>Journal of Biomechanical Science and Engineering >Frictional Force Modeling Ranging from Hyper to Slow Relative Velocity between a Needle and Liver Tissue
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Frictional Force Modeling Ranging from Hyper to Slow Relative Velocity between a Needle and Liver Tissue

机译:摩擦力模型在针与肝组织之间从高到慢的相对速度变化

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References(23) Needle insertion treatments require accurate placement of a needle tip into the target cancer. However, it is difficult to insert the needle into a lesion because of tumor displacement during organ deformation. Therefore, path planning using a needle insertion simulation to analyze deformation of an organ is important for accurate needle insertion. A frictional model for needle insertion simulation is presented in this report. In particular, we focus on a model of frictional force based on the relative velocity between a needle and liver tissue ranging from hyper to slow velocity. In vitro experiments using porcine liver were performed at several relative velocities to measure the velocity dependence of the frictional force. Sixty trials of frictional force data were used to obtain average data at each relative velocity. The model of frictional force was then developed using the averages of the experimental results. This model was defined according to relative velocity, including hyper-slow velocity. Our modeling and experimental results show that the frictional force between the tissue and the needle increased during low relative velocity (under 1.5mm/s) and became constant (over 1.5mm/s).
机译:参考文献(23)针头插入治疗要求将针尖准确地放置到目标癌症中。但是,由于器官变形过程中的肿瘤移位,很难将针插入病变处。因此,使用针头插入仿真来分析器官变形的路径规划对于精确的针头插入非常重要。本报告介绍了用于针头插入模拟的摩擦模型。特别是,我们将重点放在基于针与肝组织之间相对速度(从超速到慢速)的摩擦力模型上。在几个相对速度下进行了使用猪肝的体外实验,以测量摩擦力的速度依赖性。使用摩擦力数据的60个试验来获得每个相对速度下的平均数据。然后,使用实验结果的平均值建立摩擦力模型。该模型是根据相对速度(包括超慢速度)定义的。我们的模型和实验结果表明,在较低的相对速度(低于1.5mm / s)期间,组织与针头之间的摩擦力增加,并保持恒定(超过1.5mm / s)。

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