论文标题
细针的超声驱动可改善活检产量
Ultrasonic Actuation of a Fine-Needle Improves Biopsy Yield
论文作者
论文摘要
尽管在过去的150年中使用无处不在,但当前医疗针的功能仅通过机械剪切和切成尖端(即柳叶刀)来促进。在这项研究中,我们证明了非线性超声波(NLU)如何扩展了医疗针的功能,远远超出了目前的能力。发现NLU的作用位于针尖(Sonolancet)的近距离,但效果从物理针边界延伸了几毫米。观察到的非线性现象,瞬态空化,流体流,微颗粒和纳米颗粒的翻译以及雾化。在细针活检中,与使用相同的21G针的常规针头活检技术相比,在不同组织类型中,Sonolancet在不同组织类型中获得组织核的核心核心,从而获得组织核心的核心。总之,Sonolancet可能会引起其他几种医疗应用,包括药物或基因递送,细胞调节和微创手术程序。
Despite the ubiquitous use over the past 150 years, the functions of the current medical needle are facilitated only by mechanical shear and cutting by the needle tip,i.e.the lancet. In this study, we demonstrate how nonlinear ultrasonics (NLU) extends the functionality of the medical needle far beyond its present capability. The NLU actions were found to be localized to the proximity of the needle tip, the SonoLancet, but the effects extend several millimeters from the physical needle boundary. The observed nonlinear phenomena, transient cavitation, fluid streams, translation of micro- and nanoparticles and atomization, were quantitatively characterized. In the fine-needle biopsy application, the SonoLancet contributed to obtaining tissue cores with increase in tissue yield by 3-6x in different tissue types compared to conventional needle biopsy technique using the same 21G needle. In conclusion, the SonoLancet could be of interest to several other medical applications, including drug or gene delivery, cell modulation, and minimally invasive surgical procedures.