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Three-dimensional volumetric monitoring of settling particulate matters on a leaf using digital in-line holographic microscopy

机译:使用数字在线全息显微镜沉降颗粒物的三维体积监测

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摘要

Plants are considered as a possible modality to reduce particulate matter (PM) particles from ambient air in an ecofriendly manner. A new precise monitoring technique that can explore interactions between individual PM particles and a leaf surface is necessary to understand the underlying mechanisms of PM removal of plant leaves. In this study, a digital in-line holographic microscopy (DIHM) was employed to experimentally investigate the settling motions of PM particles over the leaf surface. The in-plane positions and sizes of opaque PMs with irregular shapes were obtained from the projection images of numerically reconstructed holographic images. The depth positions of PMs were determined by using proper selection of an autofocusing criterion with automatic segmentation method. The edge of a hairy Perilla frutescens leaf was detected by adopting several digital imaging processing techniques. The DIHM technique was applied in this study to accurately detect 3D settling trajectories of PMs with velocity information of PMs in the midair and near leaf surface, simultaneously.
机译:植物被认为是可以以ECOFriendly方式从环境空气中减少颗粒物质(PM)颗粒的可能模态。一种新的精确监测技术,可以探索单个PM颗粒和叶片表面之间的相互作用,以了解PM去除植物叶片的潜在机制。在该研究中,采用数字在线全息显微镜(DIHM)来通过实验研究叶片表面上PM颗粒的沉降运动。从数值重建全息图像的投影图像获得具有不规则形状的不透明PM的平面位置和尺寸。 The depth positions of PMs were determined by using proper selection of an autofocusing criterion with automatic segmentation method.通过采用几种数字成像处理技术来检测毛茸茸的紫苏Frutescens叶的边缘。在该研究中应用DIHM技术,以准确地检测PMS的3D沉降轨迹,同时沿着叶片表面的PMS速度信息。

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