首页> 外文会议>ASME International Conference on Micro/Nanoscale Heat and Mass Transfer >QUANTIFYING THE GROWTH RATE AND MORPHOLOGY OF ICE CRYSTALS GROWING IN CRYOPROTECTANTS VIA HIGH-SPEED CAMERA AND CRYO-MICROSCOPE
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QUANTIFYING THE GROWTH RATE AND MORPHOLOGY OF ICE CRYSTALS GROWING IN CRYOPROTECTANTS VIA HIGH-SPEED CAMERA AND CRYO-MICROSCOPE

机译:通过高速相机和冷冻显微镜量化在冷冻保护剂中生长的冰晶生长速率和形态

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Recently, several significant progresses have been made on the studies of extracellular and intracellular ice formation based on high-speed camera and cryo-microscope. This experimental methodology could accurately capture rapid formation process of ice crystals at micro-scale. In this paper, we are dedicated to quantify and comparatively investigate the growth rate and morphology of ice crystals growing in DMSO, sucrose and trehalose, respectively via high-speed camera and cryo-microscope. Several impact factors such as the concentration of cryoprotectants and the cooling rate have been investigated. The results indicate that the species and concentration of cryoprotectants and the cooling rate could significantly affect the growth rate and morphology of ice crystals. DMSO is better than trehalose and sucrose as cryoprotectant because of its molecular structure. This work may enhance current understanding of the factors for ice crystals formation and help optimize the cryopreservation process in the near future.
机译:最近,基于高速摄像头和冷冻显微镜的细胞外和细胞内冰的研究已经提出了几项重大进展。该实验方法可以在微尺度上准确地捕获冰晶的快速形成过程。在本文中,我们致力于通过高速相机和低温显微镜分别量化和比较探讨在DMSO,蔗糖和海藻糖中生长的冰晶的生长速率和形态。研究了几种影响因素,例如冷冻保护剂浓度和冷却速率。结果表明,冷冻保护剂的物种和浓度和冷却速度可能会显着影响冰晶的生长速率和形态。由于其分子结构,DMSO优于海藻糖和蔗糖作为冷冻保护剂。这项工作可以增强目前对冰晶形成因子的理解,并帮助在不久的将来优化冷冻保存过程。

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