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基于倾斜传感器连续高度变化调制的高通量无透镜全玻片成像。

High-throughput lensless whole slide imaging via continuous height-varying modulation of a tilted sensor.

出版信息

Opt Lett. 2021 Oct 15;46(20):5212-5215. doi: 10.1364/OL.437832.

Abstract

We report a new, to the best of our knowledge, lensless microscopy configuration by integrating the concepts of transverse translational ptychography and defocus multi-height phase retrieval. In this approach, we place a tilted image sensor under the specimen for introducing linearly increasing phase modulation along one lateral direction. Similar to the operation of ptychography, we laterally translate the specimen and acquire the diffraction images for reconstruction. Since the axial distance between the specimen and the sensor varies at different lateral positions, laterally translating the specimen effectively introduces defocus multi-height measurements while eliminating axial scanning. Lateral translation further introduces sub-pixel shift for pixel super-resolution imaging and naturally expands the field of view for rapid whole slide imaging. We show that the equivalent height variation can be precisely estimated from the lateral shift of the specimen, thereby addressing the challenge of precise axial positioning in conventional multi-height phase retrieval. Using a sensor with 1.67 µm pixel size, our low-cost and field-portable prototype can resolve the 690 nm linewidth on the resolution target. We show that a whole slide image of a blood smear with a 120 field of view can be acquired in 18 s. We also demonstrate accurate automatic white blood cell counting from the recovered image. The reported approach may provide a turnkey solution for addressing point-of-care and telemedicine-related challenges.

摘要

我们报告了一种新的无透镜显微镜配置,该配置集成了横向平移叠层术和离焦多高度相位恢复的概念。在这种方法中,我们在样品下方放置一个倾斜的图像传感器,以在一个横向方向上引入线性增加的相位调制。类似于叠层术的操作,我们横向平移样品并获取衍射图像进行重建。由于样品和传感器之间的轴向距离在不同的横向位置上有所变化,因此横向平移样品有效地引入了离焦多高度测量,同时消除了轴向扫描。横向平移进一步引入了亚像素移位,用于像素超分辨率成像,并自然地扩展了视野,以实现快速的全幻灯片成像。我们表明,可以从样品的横向移动精确估计等效高度变化,从而解决了传统多高度相位恢复中精确轴向定位的挑战。使用具有 1.67 µm 像素尺寸的传感器,我们的低成本、便携原型可以分辨分辨率靶标上的 690nm 线宽。我们展示了可以在 18 秒内获取具有 120 视场的血涂片的全幻灯片图像。我们还从恢复的图像中展示了准确的自动白细胞计数。所报道的方法可能为解决即时护理和远程医疗相关挑战提供了一种即用型解决方案。

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