Size and Illumination Matters: Local Magnetic Actuation and Fluorescence Imaging for Microrobotics

IF 1.8 4区 综合性期刊 Q2 MULTIDISCIPLINARY SCIENCES
Juan J. Huaroto, Sarthak Misra
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引用次数: 0

Abstract

Combining local magnetic actuation with fluorescence imaging modalities promises to introduce significant advances in microrobotic-guided procedures. This review presents the advantages and challenges of this approach, emphasizing the need for careful design considerations to optimize performance and compatibility. Traditional microrobotic actuation systems rely on bulky electromagnets, which are unsuitable for clinical use due to high power requirements and limited operational workspace. In contrast, miniaturized electromagnets can be integrated into surgical instruments, offering low power consumption and high actuation forces at the target site. Fluorescence imaging modalities have been explored in microrobotics, showcasing spatiotemporal resolution and the capability to provide information from biological entities. However, limitations, such as shallow penetration depth and out-of-focus fluorescence, have motivated the development of advanced techniques such as two-photon microscopy. The potential of two-photon microscopy to overcome these limitations is highlighted, with supporting evidence from previous studies on rat tissue samples. Current challenges in optical penetration depth, temporal resolution, and field of view are also addressed in this review. While integrating miniaturized electromagnets with fluorescence imaging modalities holds the potential for microrobotic-guided procedures, ongoing research and technological advancements are essential to translating this approach into clinical practice.

尺寸和照明问题:微型机器人的局部磁致动和荧光成像
结合局部磁驱动与荧光成像模式,有望在微机器人引导程序中引入重大进展。本文介绍了这种方法的优点和挑战,强调需要仔细设计以优化性能和兼容性。传统的微型机器人驱动系统依赖于体积庞大的电磁铁,由于功率要求高和操作空间有限,不适合临床使用。相比之下,小型化的电磁铁可以集成到手术器械中,在目标部位提供低功耗和高致动力。荧光成像模式已经在微型机器人中进行了探索,展示了时空分辨率和从生物实体提供信息的能力。然而,诸如浅穿透深度和失焦荧光等局限性促使双光子显微镜等先进技术的发展。本文强调了双光子显微镜克服这些限制的潜力,并从先前对大鼠组织样本的研究中获得了支持证据。本文还讨论了当前在光学穿透深度、时间分辨率和视场等方面面临的挑战。虽然将微型电磁铁与荧光成像模式相结合具有微型机器人引导程序的潜力,但正在进行的研究和技术进步对于将这种方法转化为临床实践至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of the Indian Institute of Science
Journal of the Indian Institute of Science MULTIDISCIPLINARY SCIENCES-
CiteScore
4.30
自引率
0.00%
发文量
75
期刊介绍: Started in 1914 as the second scientific journal to be published from India, the Journal of the Indian Institute of Science became a multidisciplinary reviews journal covering all disciplines of science, engineering and technology in 2007. Since then each issue is devoted to a specific topic of contemporary research interest and guest-edited by eminent researchers. Authors selected by the Guest Editor(s) and/or the Editorial Board are invited to submit their review articles; each issue is expected to serve as a state-of-the-art review of a topic from multiple viewpoints.
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