首页> 外文会议>Conference on Imaging, Manipulation, and Analysis of Biomolecules, Cell, and Tissues; 20080121-23; San Jose,CA(US) >Three-dimensional image and spatial spectrum analysis of behavior of small animal erythrocytes in optical tweezers
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Three-dimensional image and spatial spectrum analysis of behavior of small animal erythrocytes in optical tweezers

机译:镊子中小动物红细胞行为的三维图像和空间光谱分析

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Because of the softness of membrane, erythrocytes (red blood cell, RBC) have different shapes while being immersed in buffer with different osmotic pressure. While affecting by different viruses and illnesses, RBC may change its shape, or its membrane may become rigid. Moreover, RBC will ford and stretch when it is trapped by optical tweezers. Therefore, the behaviors of RBC in optical tweezers raise more discussion. In this report, we set up an optical tweezers to trap RBC of small animals like feline and canine. By adding a long working distance objective to collect the side-viewing image, a 3-D image system was constructed to detect the motion of trapped RBC. To improve the image quality for side-view, an aperture and narrow glass plate were used. From the video of these images and their spatial spectrum, the shape of trapped RBC was studied.
机译:由于膜的柔软性,红细胞(红细胞,RBC)在浸入具有不同渗透压的缓冲液中时具有不同的形状。在受到不同病毒和疾病影响的同时,红细胞可能会改变其形状,或者其膜会变硬。此外,当RBC被光镊夹住时,它将沉没并伸展。因此,RBC在光镊中的行为引起了更多的讨论。在此报告中,我们设置了光镊来捕获小动物(如猫科动物和犬科动物)的红细胞。通过添加长工作距离物镜来收集侧视图像,构建了3-D图像系统以检测被困RBC的运动。为了提高侧视图的图像质量,使用了光圈和窄玻璃板。从这些图像的视频及其空间光谱,研究了被困红细胞的形状。

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