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基于激光散斑对比成像的微群跟踪与导航用于靶向投递。

Tracking and navigation of a microswarm under laser speckle contrast imaging for targeted delivery.

机构信息

Department of Mechanical and Automation Engineering, Chinese University of Hong Kong (CUHK), Shatin, N.T., Hong Kong, China.

Jiangsu Key Laboratory for Design and Manufacture of Micro-Nano Biomedical Instruments, School of Mechanical Engineering, Southeast University, Nanjing, China.

出版信息

Sci Robot. 2024 Feb 21;9(87):eadh1978. doi: 10.1126/scirobotics.adh1978.

Abstract

Micro/nanorobotic swarms consisting of numerous tiny building blocks show great potential in biomedical applications because of their collective active delivery ability, enhanced imaging contrast, and environment-adaptive capability. However, in vivo real-time imaging and tracking of micro/nanorobotic swarms remain a challenge, considering the limited imaging size and spatial-temporal resolution of current imaging modalities. Here, we propose a strategy that enables real-time tracking and navigation of a microswarm in stagnant and flowing blood environments by using laser speckle contrast imaging (LSCI), featuring full-field imaging, high temporal-spatial resolution, and noninvasiveness. The change in dynamic convection induced by the microswarm can be quantitatively investigated by analyzing the perfusion unit (PU) distribution, offering an alternative approach to investigate the swarm behavior and its interaction with various blood environments. Both the microswarm and surrounding environment were monitored and imaged by LSCI in real time, and the images were further analyzed for simultaneous swarm tracking and navigation in the complex vascular system. Moreover, our strategy realized real-time tracking and delivery of a microswarm in vivo, showing promising potential for LSCI-guided active delivery of microswarm in the vascular system.

摘要

由大量微小构建块组成的微型/纳米机器人群在生物医学应用中显示出巨大的潜力,因为它们具有集体主动输送能力、增强的成像对比度和环境适应能力。然而,考虑到当前成像方式的有限成像尺寸和时空分辨率,体内实时对微型/纳米机器人群进行成像和跟踪仍然是一个挑战。在这里,我们提出了一种策略,该策略通过使用激光散斑对比成像(LSCI)实现了在静止和流动血液环境中对微群的实时跟踪和导航,该策略具有全场成像、高时空分辨率和非侵入性的特点。通过分析灌注单元(PU)的分布,可以定量研究微群诱导的动态对流变化,为研究群集行为及其与各种血液环境的相互作用提供了一种替代方法。LSCI 实时监测和成像微群及其周围环境,并进一步分析图像以实现复杂血管系统中微群的实时跟踪和导航。此外,我们的策略实现了体内微群的实时跟踪和投递,为 LSCI 引导的微群在血管系统中的主动投递展示了有前景的潜力。

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