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Optical Design of Dual-axis Fluorescent Confocal Scanning System for Biochip

机译:生物芯片双轴荧光共聚焦扫描系统的光学设计

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As a new research field, biochip has enjoyed its rapid development in the past 10 years. Today, most of the biochip scanning systems are fluorescent confocal scanning systems. The conventional fluorescent confocal scanning system has few limits in some kind of biochips, such as cell-chip, tissue-chip and so on, because these biochips need a long working distance to add medicament or reagent in it real-time. The longer the working distance is, the more convenient to add the medicament or reagent. However, the conventional fluorescent confocal scanning system can't have long working distance, especially when the system has high resolution and large aperture. In this paper, a dual-axis fluorescent confocal scanning system with a long working distance and high resolution has been presented. In the dual-axis fluorescent confocal scanning system, the incident light is tilt to the axis, which can decrease the bleaching of fluorescent induced by the laser. The working distance of the system is 15 mm and the numerical aperture is 0.35. The phase aberrations of objective lens, including the spherical aberrations and the chromatic aberrations corresponding to wavelength 532 nm, 570 nm, 635 nm, 670 nm, are corrected very well. The encircled energy diagram of the lens is good to the diffraction limit. The image spot diagram, the ray aberration fan diagram, the transverse ray fan plot and the modulation transfer function, are studied also. The image quality of the system designed in this paper is good enough to meet the practical requirements.
机译:作为新的研究领域,生物芯片在过去的十年中经历了飞速的发展。如今,大多数生物芯片扫描系统都是荧光共聚焦扫描系统。常规的荧光共聚焦扫描系统在某些生物芯片中几乎没有限制,例如细胞芯片,组织芯片等,因为这些生物芯片需要较长的工作距离才能实时添加药物或试剂。工作距离越长,添加药物或试剂越方便。但是,常规的荧光共焦扫描系统不能具有较长的工作距离,特别是当系统具有高分辨率和大孔径时。本文提出了一种具有长工作距离和高分辨率的双轴荧光共聚焦扫描系统。在双轴荧光共聚焦扫描系统中,入射光相对于轴倾斜,这可以减少激光诱导的荧光的漂白。系统的工作距离为15毫米,数值孔径为0.35。物镜的相位像差,包括与波长532 nm,570 nm,635 nm,670 nm相对应的球差和色差,都得到了很好的校正。透镜的环绕能量图很好地达到了衍射极限。还研究了像斑图,射线像差扇形图,横向射线扇形图和调制传递函数。本文设计的系统的图像质量足以满足实际需求。

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