论文标题

在腹腔镜检查中的拉格朗日相干结构上

On Lagrangian Coherent Structures in Laparoscopy

论文作者

Kumar, Sandeep, Crowley, Caroline, Khan, Mohammad Faraz, Bustamante, Miguel D., Cahill, Ronan, Nolan, Kevin

论文摘要

腹腔镜检查是一种电外科医学操作,通常涉及高频交替电流的应用,以从可通过入口和插座trocars访问的腹部不希望的生物组织中去除不希望的生物组织。此过程中的主要副产品之一是气态颗粒,称为手术烟雾,这对患者和手术室工作人员都有危险。消除这种危险材料是医学界积极研究的领域。因此,理解受腹部内部流动影响的动态至关重要。在本文中,我们提出了一个计算流体动力学模型,并通过识别负责流量中材料颗粒的运输,混合和积累的拉格朗日相干结构(LCS),分析腹部不足的腹部形状结构域中的速度场。通过计算混合强度,我们表明这些材料曲线揭示的区域取决于出口和入口的角度,位置和数量。因此,提出了LCS在医疗手术中的一种新型效用,可以详细介绍手术烟雾的动力学,从而为更好地设计有效的烟雾清除技术设计。

Laparoscopy is an electrosurgical medical operation often involving an application of high-frequency alternating current to remove undesired biological tissue from the insufflated abdomen accessible through inlet and outlets trocars. One of the main byproducts in this process are the gaseous particles, called surgical smoke, which is found hazardous for both the patient and the operating room staff. The elimination of this hazardous material is an area of active research in the medical community. Thus, understanding dynamics influenced by the underlying flow inside the abdomen is crucial. In this article, we propose a computational fluid dynamics model and analyse the velocity field in an insufflated abdomen shaped domain by identifying the Lagrangian Coherent Structures (LCS) that are responsible for the transportation, mixing and accumulation of the material particles in the flow. By calculating the mixing strength we show that the regions revealed by these material curves are dependent on the angle, positions and number of the outlets and inlets. Hence, a novel utility of LCS in medical surgery is presented that can detail the dynamics of surgical smoke informing better design of effective smoke removal technologies.

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