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Haptic-Based Manipulation Scheme of Magnetic Nanoparticles in a Multi-Branch Blood Vessel for Targeted Drug Delivery

机译:基于分支的多分支血管中的磁性纳米粒子的靶向操纵方案。

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摘要

Magnetic drug targeting is a promising technique that can deliver drugs to the diseased region, while keeping the drug away from healthy parts of body. Introducing a human in the control loop of a targeted drug delivery system and using inherent bilateralism of a haptic device at the same time can considerably improve the performance of targeted drug delivery systems. In this paper, we suggest a novel intelligent haptic guidance scheme for steering a number of magnetic nanoparticles (MNPs) using forbidden region virtual fixtures and a haptic rendering scheme with multi particles. Forbidden region virtual fixtures are a general class of guidance modes implemented in software, which help a human-machine collaborative system accomplish a specific task by constraining a movement into limited regions. To examine the effectiveness of our proposed scheme, we implemented a magnetic guided drug delivery system in a virtual environment using a physics-based model of targeted drug delivery including a multi-branch blood vessel and realistic blood dynamics. We performed user studies with different guidance modes: unguided, semi virtual fixture and full virtual fixture modes. We found out that the efficiency of targeting was significantly improved using the forbidden region virtual fixture and the proposed haptic rendering of MNPs. We can expect that using intelligent haptic feedback in real targeted drug delivery systems can improve the targeting efficiency of MNPs in multi-branch vessels.
机译:磁性药物靶向是一种有前途的技术,可以将药物输送到患病区域,同时使药物远离身体的健康部位。将人引入目标药物输送系统的控制回路中,并同时使用触觉设备的固有双侧性可以大大提高目标药物输送系统的性能。在本文中,我们提出了一种新颖的智能触觉引导方案,该方案用于使用禁区虚拟固定装置操纵多个磁性纳米颗粒(MNP),并提出了一种具有多个颗粒的触觉渲染方案。禁区虚拟固定装置是在软件中实现的一般指导模式,可通过将运动限制在有限区域内来帮助人机协作系统完成特定任务。为了检验我们提出的方案的有效性,我们在虚拟环境中使用了基于物理的靶向药物递送模型(包括多分支血管和逼真的血液动力学),实施了一种电磁引导药物递送系统。我们使用不同的指导模式进行了用户研究:非指导,半虚拟夹具和完全虚拟夹具模式。我们发现,使用禁区虚拟固定装置和拟议的MNP触觉渲染可以大大提高目标定位的效率。我们可以预期,在实际的靶向药物递送系统中使用智能触觉反馈可以提高多分支血管中MNP的靶向效率。

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