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首页> 外文期刊>Scientific reports. >Fabrication and Characterization of a Magnetic Drilling Actuator for Navigation in a Three-dimensional Phantom Vascular Network
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Fabrication and Characterization of a Magnetic Drilling Actuator for Navigation in a Three-dimensional Phantom Vascular Network

机译:三维虚线血管网络中导航磁钻致动器的制造与表征

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Intravascular microrobots have emerged as a promising tool for vascular diseases. They can be wirelessly and precisely manipulated with a high degree of freedom. Previous studies have evaluated their drilling performance and locomotion, and showed the feasibility of using microrobots for biomedical applications in two-dimensional space. However, it is critical to validate micro-drillers in a three-dimensional (3D) environment because gravity plays an important role in a 3D environment and significantly affects the performance of the micro-drillers in vascular networks. In this work, we fabricated magnetic drilling actuators (MDAs) and characterized their locomotion and drilling performance in vascular network-mimicking fluidic channels. The MDAs were precisely manipulated in the fluidic channel network in both horizontal and vertical planes, selecting and moving through the desired path via the junctions of multiple channels. The MDAs also accurately navigated an artificial thrombosis in an artificial 3D vascular network and successfully drilled through it. The results obtained here confirmed the precise manipulation and drilling performance of the developed MDAs in 3D. We think that the MDAs presented in this paper have great potential as intravascular drillers for precise thrombus treatment.
机译:血管内微生物被出现为血管疾病的有希望的工具。它们可以通过高度自由进行无线且精确地操纵。以前的研究已经评估了它们的钻井性能和运动,并显示了使用微米的可行性用于二维空间中的生物医学应用。然而,在三维(3D)环境中验证微钻机至关重要,因为重力在3D环境中起重要作用,并且显着影响微钻在血管网络中的性能。在这项工作中,我们制造了磁钻致动器(MDA),并在血管网络模仿流体通道中表征了它们的运动和钻孔性能。在水平和垂直平面中,在流体通道网络中精确地操纵MDA,通过多个通道的连接选择和通过所需路径。 MDAS还准确地在人造3D血管网络中进行了人工血栓形成,并通过它成功钻探。这里获得的结果证实了开发MDA在3D中的精确操作和钻井性能。我们认为本文提出的MDA具有巨大潜力,含有精确血栓处理的血管内钻孔。

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