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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Method to Reduce Target Motion Through Needle-Tissue Interactions
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Method to Reduce Target Motion Through Needle-Tissue Interactions

机译:通过针-组织相互作用减少目标运动的方法

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摘要

During minimally invasive surgical procedures, it is often important to deliver needles to particular tissue volumes. Needles, when interacting with a substrate, cause deformation and target motion. To reduce reliance on compensatory intra-operative imaging, a needle design and novel delivery mechanism is proposed. Three-dimensional finite element simulations of a multi-segment needle inserted into a pre-existing crack are presented. The motion profiles of the needle segments are varied to identify methods that reduce target motion. Experiments are then performed by inserting a needle into a gelatine tissue phantom and measuring the internal target motion using digital image correlation. Simulations indicate that target motion is reduced when needle segments are stroked cyclically and utilise a small amount of retraction instead of being held stationary. Results are confirmed experimentally by statistically significant target motion reductions of more than 8% during cyclic strokes and 29% when also incorporating retraction, with the same net insertion speed. By using a multi-segment needle and taking advantage of frictional interactions on the needle surface, it is demonstrated that target motion ahead of an advancing needle can be substantially reduced.
机译:在微创外科手术过程中,将针输送到特定组织体积通常很重要。针与基材相互作用时,会引起变形和目标运动。为了减少对代偿性术中成像的依赖,提出了一种针头设计和新颖的输送机制。提出了插入到预先存在的裂缝中的多段针的三维有限元模拟。改变针段的运动轮廓以识别减少目标运动的方法。然后通过将针插入明胶组织体模中并使用数字图像相关性测量内部目标运动来进行实验。仿真表明,当针段周期性地冲程并且使用少量的缩回而不是保持静止时,目标运动会减少。实验证明,在相同的净插入速度下,在循环笔触中目标运动减少了8%以上,在还包括收缩的情况下达到了29%,具有统计学意义的目标运动减少。通过使用多段针并利用在针表面上的摩擦相互作用,证明了可以大大减少前进针之前的目标运动。

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