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Multi-line fluorescence scanning microscope for multi-focal imaging with unlimited field of view

机译:多线荧光扫描显微镜,用于无焦点视野的多焦点成像

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Confocal scanning microscopy is the de facto standard modality for fluorescence imaging. Point scanning, however, leads to a limited throughput and makes the technique unsuitable for fast multi-focal scanning over large areas. We propose an architecture for multi-focal fluorescence imaging that is scalable to large area imaging. The design is based on the concept of line scanning with continuous ‘push broom’ scanning. Instead of a line sensor, we use an area sensor that is tilted with respect to the optical axis to acquire image data from multiple depths inside the sample simultaneously. A multi-line illumination where the lines span a plane conjugate to the tilted sensor is created by means of a diffractive optics design, implemented on a spatial light modulator. In particular, we describe a design that uses higher order astigmatism to generate focal lines of substantially constant peak intensity along the lines. The proposed method is suitable for fast 3D image acquisition with unlimited field of view, it requires no moving components except for the sample scanning stage, and provides intrinsic alignment of the simultaneously scanned focal slices. As proof of concept, we have scanned 9 focal slices simultaneously over an area of 36?mm2 at 0.29?μm pixel size in object space. The projected ultimate throughput that can be realized with the proposed architecture is in excess of 100?Mpixel/s.
机译:共聚焦扫描显微镜是荧光成像的事实上的标准形式。但是,点扫描导致吞吐量受限,并使该技术不适用于大面积的快速多焦点扫描。我们提出了可用于大面积成像的多焦点荧光成像架构。该设计基于连续“推扫”扫描的线扫描概念。代替线传感器,我们使用相对于光轴倾斜的区域传感器来同时从样本内部的多个深度获取图像数据。通过在空间光调制器上实现的衍射光学设计,创建了多条线照明,其中的线跨越了与倾斜传感器共轭的平面。特别地,我们描述了一种设计,该设计使用更高阶的像散来生成沿线基本恒定的峰值强度的聚焦线。所提出的方法适用于具有无限视场的快速3D图像采集,除了样品扫描阶段外,它不需要任何移动组件,并提供了同时扫描的焦点切片的固有对齐方式。作为概念验证,我们在对象空间中以0.29?μm像素大小在36?mm2的区域上同时扫描了9个焦点切片。所提出的架构可以实现的预计最终吞吐量超过100?Mpixel / s。

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