Li Shengfu, Zhao Yu, Wen Weifeng, Xiong Chuanzhong, Meng Jianhua, Chen Guanghua, Zhou Pingwei, Zhu Yu, Gao Peng, Ye Yan
Institute of Fluid Physics, China Academy of Engineering Physics, Mianyang, China.
Microsc Res Tech. 2024 Nov;87(11):2720-2727. doi: 10.1002/jemt.24643. Epub 2024 Jul 4.
The quantification of 3D particle field is of interest for a vast range of fields. While in-line particle holography (PH) can provide high-resolution measurements of particles, it suffers from speckle noise. Plenoptic imaging (PI) is less susceptible to speckle noises, but it involves a trade-off between spatial and angular resolution, rendering images with low resolution. Here, we report a simple microscopy setup with the goals of getting the strengths of both techniques. It is built with off-the-shelf and cost-effective components including a photographic lens, a diaphragm, and a CCD camera. The cost of the microscopy setup is affordable to small labs and individual researchers. The pupil plane of the proposed setup can be mechanically accessible, allowing us to implement pupil plane modulation and increase the depth of field (DOF) without requiring any additional relay lenses. It also allows us to understand the working principle of pupil plane modulation clearly, benefiting microscopy education. It illuminates the sample (particles) using diffuse white light, and thus avoids the problem of speckle noise. It captures multiple perspective images via pupil plane modulation, without requiring trading off angular and spatial resolution. We validate the setup with 2D and 3D particle samples. RESEARCH HIGHLIGHTS: We report a simple and cost-effective microscopy setup with the goals of getting the strengths of plenoptic imaging and in-line particle holography. It is built with off-the-shelf and cost-effective components. The cost of the microscopy setup is affordable to small labs and individual researchers. The pupil plane of the proposed setup can be mechanically accessible, allowing us to implement pupil plane modulation and increase the DOF without requiring any additional relay lenses. It also allows us to understand the working principle of pupil plane modulation clearly, benefiting microscopy education. It illuminates the sample (particles) using diffuse white light, and thus avoids the problem of speckle noise. It captures multiple perspective images via pupil plane modulation, without requiring trading off angular and spatial resolution. We validate the setup with 2D and 3D particle samples.
三维粒子场的量化在众多领域都备受关注。虽然同轴粒子全息术(PH)能够提供粒子的高分辨率测量,但它会受到散斑噪声的影响。全光成像(PI)对散斑噪声的敏感度较低,但在空间分辨率和角分辨率之间存在权衡,导致图像分辨率较低。在此,我们报告一种简单的显微镜设置,旨在兼具这两种技术的优势。它由包括摄影镜头、光圈和电荷耦合器件(CCD)相机在内的现成且经济实惠的组件构建而成。该显微镜设置的成本对于小型实验室和个体研究人员来说是可以承受的。所提出设置的光瞳平面在机械上是可触及的,这使我们能够实现光瞳平面调制并增加景深(DOF),而无需任何额外的中继透镜。这也使我们能够清楚地理解光瞳平面调制的工作原理,对显微镜教学有益。它使用漫射白光照射样品(粒子),从而避免了散斑噪声问题。它通过光瞳平面调制捕获多个视角的图像,而无需在角分辨率和空间分辨率之间进行权衡。我们用二维和三维粒子样本对该设置进行了验证。研究亮点:我们报告了一种简单且经济高效的显微镜设置,旨在兼具全光成像和同轴粒子全息术的优势。它由现成且经济实惠的组件构建而成。该显微镜设置的成本对于小型实验室和个体研究人员来说是可以承受的。所提出设置的光瞳平面在机械上是可触及的,这使我们能够实现光瞳平面调制并增加景深,而无需任何额外的中继透镜。这也使我们能够清楚地理解光瞳平面调制的工作原理,对显微镜教学有益。它使用漫射白光照射样品(粒子),从而避免了散斑噪声问题。它通过光瞳平面调制捕获多个视角的图像,而无需在角分辨率和空间分辨率之间进行权衡。我们用二维和三维粒子样本对该设置进行了验证。