基于单元刀具切削的活检针切削力模型
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教育部新世纪优秀人才支持计划(2007),山东大学自主创新基金(2011JC023 ),山东省自然科学基金(ZR2010EM002),山东大学研究生自主创新基金(yzc09062)


Cutting force model of biopsy needle based on cutting of elementary cutting tools
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    目的 从切削力学角度构建活检针切削力模型,揭示针尖几何形状与活检针切削力之间的内在联系。方法 借鉴传统金属切削理论建立针尖几何结构的数学模型,在此基础上将针尖切削刃离散成一系列单元刀具,在软组织切削试验平台上进行斜角切削试验,获得单位刃长切削力参数模型,最后采用单元刀具综合法构建活检针切削力泛函模型。结果 该模型能够较好地预测活检针切削力,针尖顶角ξ为30°、45°、60°的18 G活检针切削力试验值为1.33、1.38、1.56 N,预测值为1.29、1.43、1.52 N,相对误差小于5%。结论 活检针切削力泛函模型定量描述了切削力与针尖几何结构之间的关系,可以用于新型针尖设计、评价及术前穿刺路径规划。

    Abstract:

    Objective To establish the cutting force model of biopsy needle from the aspect of cutting mechanics and to reveal the relationship between cutting force of the needle and geometry of the needle tip. Methods Based on the traditional theory of metal cutting, a mathematical model of biopsy needle geometry was established. The needle cutting edge was divided into a series of elementary cutting tools (ECTs) with varying inclination and normal rake angles. The oblique cutting experiment was performed on the soft tissue cutting setup and a functional cutting force model was developed based on these ECTs. Results The force model could predict the cutting force of biopsy needle well. When the bevel angle ξwas 30°, 45° and 60°, the experimental forces of 18 G biopsy needle were 1.33, 1.38, and 1.56 N, respectively, while the predicted values were 1.29, 1.43, and 1.52 N, respectively. The relative error was less than 5%. Conclusions This cutting force model of biopsy needle quantitatively describes the relationship between the cutting force and geometry of the needle tip. The results can be used for the design and evaluation of new needle, and preoperative planning of needle insertion trajectory.

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高立营,张勤河,刘明,秦雪梅.基于单元刀具切削的活检针切削力模型[J].医用生物力学,2012,27(1):77-83

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  • 收稿日期:2011-10-23
  • 最后修改日期:2011-12-16
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