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Morphological characterization of particles emitted from monopolar electrosurgical pencils

机译:单极电外科铅笔发出的粒子的形态学特征

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Monopolar electrosurgical pencils are used extensively in surgical operations. With such pencils, electric current passes to the tissue, and as such, electrosurgical pencil operation generates a significant amount of thermal energy, which in turn leads to the generation of electrosurgical smoke (ES). The health risks of ES are dependent on the size distributions as well as the morphologies of the produced particles. To better characterize such particles, in this study we utilized (1) differential mobility analysis with a condensation particle counter (DMA-CPC), (2) an aerodynamic particle spectrometer (APS), (3) DMA-transmission electron microscopy analysis (DMATEM), and (4) DMA-aerosol particle mass analysis (DMA-APM) to examine the size distribution and morphologies of particles produced during simulated operation of an electmsurgical pencil (Neptune E-SEP, Stryker Corporation) on bovine, porcine, and ovine tissue. We find that under a variety of operating conditions, ES particles are broadly distributed, with a mode mobility diameter in the 150-200 nm size range, and concentrations well above background levels in the 50 nm-5 mu m size range. We also find that the "cut" mode of monopolar electrosurgical pencil operation generates higher particle concentrations than the "coagulate" mode, and that increasing the maximum applied power from 20 W to 50 W also increases ES particle concentrations. TEM images of mobility selected particles reveal both spherical particles and fractal-like agglomerates in ES; these different particle types are produced under the same operation conditions leading to an externally-mixed, morphologically-complex aerosol. Quantitative analysis of the agglomerate images revealed that agglomerates have an average fractal dimension near 1.93 and that they are structurally similar to agglomerates expected from a diffusion limited cluster aggregation growth mechanism. Despite the presence of both spheres and agglomerates, DMAAPM analysis reveals that all particles have effective densities in the 1000-2000 kg M-3 range, suggesting that they likely contain inorganic components. Finally, we determined that the collection efficiency of the ES capture suction unit attached to the electrosurgical pencil was >95% for particles in the 50-400 nm mobility diameter range.
机译:单极电外科铅笔广泛用于外科手术。通过这种铅笔,电流通过组织,因此,电外科手写铅笔操作产生大量的热能,这又导致电外科烟雾的产生。 ES的健康风险取决于尺寸分布以及产生的颗粒的形态。为了更好地表征这些颗粒,在该研究中,我们利用(1)差动迁移率分析用冷凝颗粒计数器(DMA-CPC),(2)一种空气动力学粒子光谱仪(APS),(3)DMA透射电子显微镜分析(DMatem (4)DMA - 气溶胶颗粒质量分析(DMA-APM),以检查在牛,猪和绵羊的选育铅笔(海王星E-SEP,Stryker Corporation)模拟操作期间产生的粒子的尺寸分布和形态组织。我们发现,在各种操作条件下,ES粒子广泛分布,在150-200nm尺寸范围内的模式移动性直径,并且在50nm-5 mu m尺寸范围内的背景水平高于背景水平。我们还发现单极电外科手写铅笔操作的“切割”模式产生比“凝结”模式更高的颗粒浓度,并且增加20W至50W的最大施加功率也增加了ES颗粒浓度。迁移率的TEM图像选择的颗粒揭示了ES中的球形颗粒和分形颗粒;在相同的操作条件下产生这些不同的颗粒类型,导致外部混合的形态学 - 复杂气溶胶。聚集图像的定量分析显示,附聚物在1.93附近的平均分形尺寸,并且它们在结构上与来自扩散有限簇聚集生长机制的预期的聚集体。尽管存在球体和凝聚,DMAAPM分析表明,所有颗粒在1000-2000千克M-3范围内具有有效密度,表明它们可能含有无机组分。最后,我们确定,在50-400nm迁移率范围内,粒子的颗粒的ES捕获吸入装置的收集效率> 95%。

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