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High-Precision Absolute Cell Counting with Curved Sample Chamber

机译:用弯曲样品室计数高精度绝对电池

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We propose a wide field-of-view fluorescence imaging system with a curved sample chamber that corrects the field curvature caused by a simple lens. We describe a simple optical imaging system for absolute counting of white blood cells (WBCs) in a large-field with our alternative approach to reduce field curvature effect in a flat image plane by replacing the conventional planar sample chamber with a curved one while using a single lens. We designed a curved substrate with a lens-dependent curvature and evaluated imaging performance through ray tracing analysis and image system simulation. The distortion of image taken with a conventional planar detector is greatly reduced by the curved sample substrate, which is also demonstrated by a proof-of-concept experiment. A field-of-view of 10.66 mm x 8 mm was analyzed to count the WBCs and the imaging system's magnification factor was 0.66. The absolute counts of WBCs, between commercially available conventional microscopy and proposed single-lens imaging system, were found to be matched reasonably.
机译:我们提出了一种宽视野,具有弯曲的样品室,校正由简单镜头引起的场曲率。我们描述了一种简单的光学成像系统,用于通过我们的替代方法在大场中的白色血细胞(WBC)的绝对计数,通过在使用弯曲一体的同时通过用弯曲的平面样本室来降低平面图像平面中的场曲率效应。单镜头。我们设计了一种具有镜头依赖性曲率的弯曲基板,并通过射线跟踪分析和图像系统仿真评估了成像性能。弯曲的样品衬底大大减少了用常规平面检测器拍摄的图像的失真,其也通过概念验证实验证明。分析了10.66mm×8mm的视野,以计算WBC,成像系统的放大因子为0.66。在市售的常规显微镜和所提出的单透镜成像系统之间,WBCs的绝对计数被发现合理地匹配。

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