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磁引导微导管用于磁性粒子群的靶向注射。

Magnetically Guided Microcatheter for Targeted Injection of Magnetic Particle Swarms.

机构信息

Multi-Scale Robotics Lab, Institute of Robotics and Intelligent Systems, ETH Zurich, Tannenstrasse 3, Zurich, 8092, Switzerland.

Transport Phenomena Research Centre (CEFT), Engineering Faculty, Porto University, Porto, 4200, Portugal.

出版信息

Adv Sci (Weinh). 2024 Oct;11(38):e2404061. doi: 10.1002/advs.202404061. Epub 2024 Aug 9.

Abstract

The initial delivery of small-scale magnetic devices such as microrobots is a key, but often overlooked, aspect for their use in clinical applications. The deployment of these devices within the dynamic environment of the human body presents significant challenges due to their dispersion caused by circulatory flows. Here, a method is introduced to effectively deliver a swarm of magnetic nanoparticles in fluidic flows. This approach integrates a magnetically navigated robotic microcatheter equipped with a reservoir for storing the magnetic nanoparticles. The microfluidic flow within the reservoir facilitates the injection of magnetic nanoparticles into the fluid stream, and a magnetic field gradient guides the swarm through the oscillatory flow to a target site. The microcatheter and reservoir are engineered to enable magnetic steering and injection of the magnetic nanoparticles. To demonstrate this approach, experiments are conducted utilizing a spinal cord phantom simulating intrathecal catheter delivery for applications in the central nervous system. These results demonstrate that the proposed microcatheter successfully concentrates nanoparticles near the desired location through the precise manipulation of magnetic field gradients, offering a promising solution for the controlled deployment of untethered magnetic micro-/nanodevices within the complex physiological circulatory systems of the human body.

摘要

小型磁性装置(如微机器人)的初始输送是其在临床应用中的一个关键但经常被忽视的方面。由于循环流动引起的分散,这些装置在人体动态环境中的部署带来了重大挑战。在这里,引入了一种在流态中有效输送磁性纳米粒子群的方法。该方法集成了配备有用于存储磁性纳米粒子的储液器的磁导航式机器人微导管。储液器内的微流体流促进了磁性纳米粒子注入到流体流中,并且磁场梯度引导着粒子群通过振荡流到达目标位置。微导管和储液器经过设计,能够实现磁性转向和磁性纳米粒子的注入。为了验证该方法,利用模拟鞘内导管输送的脊髓体模进行了实验,这些实验适用于中枢神经系统。这些结果表明,通过精确操纵磁场梯度,所提出的微导管成功地将纳米粒子集中在期望的位置附近,为在人体复杂的生理循环系统中控制部署无绳磁性微/纳米设备提供了一种有前途的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04f8/11481240/95b10e33040e/ADVS-11-2404061-g007.jpg

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