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磁共振成像兼容的光驱动微型无线模块化洛伦兹力致动器

Magnetic Resonance Imaging-Compatible Optically Powered Miniature Wireless Modular Lorentz Force Actuators.

作者信息

Mutlu Senol, Yasa Oncay, Erin Onder, Sitti Metin

机构信息

Physical Intelligence Department Max Planck Institute for Intelligent Systems Stuttgart 70569 Germany.

Department of Electrical and Electronics Engineering Bogazici University Istanbul 34342 Turkey.

出版信息

Adv Sci (Weinh). 2020 Dec 4;8(2):2002948. doi: 10.1002/advs.202002948. eCollection 2021 Jan.

Abstract

Minimally invasive medical procedures under magnetic resonance imaging (MRI) guidance have significant clinical promise. However, this potential has not been fully realized yet due to challenges regarding MRI compatibility and miniaturization of active and precise positioning systems inside MRI scanners, i.e., restrictions on ferromagnetic materials and long conductive cables and limited space around the patient for additional instrumentation. Lorentz force-based electromagnetic actuators can overcome these challenges with the help of very high, axial, and uniform magnetic fields (3-7 Tesla) of the scanners. Here, a miniature, MRI-compatible, and optically powered wireless Lorentz force actuator module consisting of a solar cell and a coil with a small volume of 2.5 × 2.5 × 3.0 mm is proposed. Many of such actuator modules can be used to create various wireless active structures for future interventional MRI applications, such as positioning needles, markers, or other medical tools on the skin of a patient. As proof-of-concept prototypes toward such applications, a single actuator module that bends a flexible beam, four modules that rotate around an axis, and six modules that roll as a sphere are demonstrated inside a 7 Tesla preclinical MRI scanner.

摘要

在磁共振成像(MRI)引导下的微创医疗程序具有重大的临床应用前景。然而,由于MRI兼容性以及MRI扫描仪内部有源精确定位系统的小型化方面存在挑战,即对铁磁材料和长导电电缆的限制以及患者周围用于额外仪器的空间有限,这种潜力尚未得到充分实现。基于洛伦兹力的电磁致动器可以借助扫描仪非常高的轴向均匀磁场(3 - 7特斯拉)克服这些挑战。在此,提出了一种微型、MRI兼容且由太阳能电池和体积为2.5×2.5×3.0毫米的线圈组成的光驱动无线洛伦兹力致动器模块。许多这样的致动器模块可用于创建各种无线有源结构,以用于未来的介入MRI应用,例如在患者皮肤上定位针、标记物或其他医疗工具。作为此类应用的概念验证原型,在一台7特斯拉的临床前MRI扫描仪内展示了一个使柔性梁弯曲的单个致动器模块、四个绕轴旋转的模块以及六个像球体一样滚动的模块。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/555b/7816712/9eb0e0268d0e/ADVS-8-2002948-g001.jpg

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