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New Endoscopic Imaging Technology Based on MEMS Sensors and Actuators

机译:基于MEMS传感器和执行器的新型内窥镜成像技术

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摘要

Over the last decade, optical fiber-based forms of microscopy and endoscopy have extended the realm of applicability for many imaging modalities. Optical fiber-based imaging modalities permit the use of remote illumination sources and enable flexible forms supporting the creation of portable and hand-held imaging instrumentations to interrogate within hollow tissue cavities. A common challenge in the development of such devices is the design and integration of miniaturized optical and mechanical components. Until recently, microelectromechanical systems (MEMS) sensors and actuators have been playing a key role in shaping the miniaturization of these components. This is due to the precision mechanics of MEMS, microfabrication techniques, and optical functionality enabling a wide variety of movable and tunable mirrors, lenses, filters, and other optical structures. Many promising results from MEMS based optical fiber endoscopy have demonstrated great potentials for clinical translation. In this article, reviews of MEMS sensors and actuators for various fiber-optical endoscopy such as fluorescence, optical coherence tomography, confocal, photo-acoustic, and two-photon imaging modalities will be discussed. This advanced MEMS based optical fiber endoscopy can provide cellular and molecular features with deep tissue penetration enabling guided resections and early cancer assessment to better treatment outcomes.
机译:在过去的十年中,基于光纤的显微镜和内窥镜检查形式已经扩展了许多成像方式的适用范围。基于光纤的成像模态允许使用远程照明源,并允许灵活的形式支持便携式和手持式成像仪器的创建,以在中空组织腔内进行询问。在这种设备的开发中的共同挑战是小型光学和机械部件的设计和集成。直到最近,微机电系统(MEMS)传感器和执行器在塑造这些组件的小型化方面一直发挥着关键作用。这是由于MEMS的精密机械学,微细加工技术和光学功能所致,可实现各种可移动和可调节的反射镜,透镜,滤光片和其他光学结构。基于MEMS的光纤内窥镜检查的许多有希望的结果显示出了巨大的临床翻译潜力。在本文中,将讨论用于各种光纤内窥镜(例如荧光,光学相干断层扫描,共焦,光声和双光子成像模式)的MEMS传感器和致动器的评论。这种基于MEMS的先进的光纤内窥镜可以提供具有深层组织穿透力的细胞和分子功能,从而可以进行指导性切除和早期癌症评估,从而获得更好的治疗效果。

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