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Development of computer-assisted sperm analysis plugin for analyzing sperm motion in microfluidic environments using Image-J

机译:计算机辅助精子分析插件分析微流体环境中的微流体环境中的精子运动的开发

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摘要

We modified a previously reported computer-assisted sperm analysis (CASA) plugin for Image-J to enable analyzing motion of sperm cells in microfluidic environments. Microfluidics is increasingly being used in sperm-related applications such as sperm selection, IVF, and sperm motion behavior. Current CASA systems are not capable of analyzing motion of sperm cells in microfluidic devices where both sperm cells and the liquid itself are constantly moving, contrary to the conventional situation of sperm cells moving in a stationary liquid. We resolved this deficiency in the modified plugin reported here and built an image processing pipeline to enhance object detection, which increased CASA accuracy considerably. More importantly, particle tracking was improved and modified to accommodate sperm cells going out of focus for short periods during swimming on the same track. This last feature is particularly important in microfluidics where height of the microchannel is larger than that of CASA custom chambers to avoid channel blockage; this increased height causes sperm cells to frequently come in and out of focus. New parameters were introduced to allow studying new aspects of sperm motion behavior such as rheotaxis and wall tracking. The new plugin was able to detect and analyze motion of human, bull, and chicken sperm. A preliminary study using this tool agreed well with previously reported studies on rheotaxis and wall tracking behavior of sperm. (C) 2015 Elsevier Inc. All rights reserved.
机译:我们修改了先前报告的计算机辅助精子分析(Casa)插件,用于图像-J,以实现微流体环境中的精子细胞的分析。微流体越来越多地用于精子相关的应用,例如精子选择,IVF和精子运动行为。目前的CASA系统不能在微流体装置中分析精子细胞的运动,其中精子细胞和液体本身恒定地移动,这与在固定液体中移动的精子细胞的传统情况相反。我们解决了此处报告的修改插件中的这种不足,并构建了图像处理管道以增强对象检测,这显着增加了CASA精度。更重要的是,改进并改善了粒子跟踪,以适应在相同轨道上游泳期间短时间内的精子电池。最后一个特征在微流体中尤为重要,其中微通道的高度大于Casa定制室的高度,以避免通道堵塞;这种增加的高度导致精子细胞经常进入和焦点。介绍了新参数,以允许研究精子运动行为的新方面,例如rheotaxis和墙壁跟踪。新插件能够检测和分析人类,公牛和鸡肉的运动。使用该工具的初步研究与先前报道的精子的rheotaxis和墙壁跟踪行为的研究吻合得很好。 (c)2015 Elsevier Inc.保留所有权利。

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