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Computer-assisted sperm analysis (CASA): capabilities and potential developments. (40th anniversary special issue.)

机译:计算机辅助精子分析(CASA):功能和潜在的发展。 (40周年特刊。)

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Computer-assisted sperm analysis (CASA) systems have evolved over approximately 40 years, through advances in devices to capture the image from a microscope, huge increases in computational power concurrent with amazing reduction in size of computers, new computer languages, and updated/expanded software algorithms. Remarkably, basic concepts for identifying sperm and their motion patterns are little changed. Older and slower systems remain in use. Most major spermatology laboratories and semen processing facilities have a CASA system, but the extent of reliance thereon ranges widely. This review describes capabilities and limitations of present CASA technology used with boar, bull, and stallion sperm, followed by possible future developments. Each marketed system is different. Modern CASA systems can automatically view multiple fields in a shallow specimen chamber to capture strobe-like images of 500 to >2000 sperm, at 50 or 60 frames per second, in clear or complex extenders, and in <2 minutes, store information for >=30 frames and provide summary data for each spermatozoon and the population. A few systems evaluate sperm morphology concurrent with motion. CASA cannot accurately predict 'fertility' that will be obtained with a semen sample or subject. However, when carefully validated, current CASA systems provide information important for quality assurance of semen planned for marketing, and for the understanding of the diversity of sperm responses to changes in the microenvironment in research. The four take-home messages from this review are: (1) animal species, extender or medium, specimen chamber, intensity of illumination, imaging hardware and software, instrument settings, technician, etc., all affect accuracy and precision of output values; (2) semen production facilities probably do not need a substantially different CASA system whereas biology laboratories would benefit from systems capable of imaging and tracking sperm in deep chambers for a flexible period of time; (3) software should enable grouping of individual sperm based on one or more attributes so outputs reflect subpopulations or clusters of similar sperm with unique properties; means or medians for the total population are insufficient; and (4) a field-use, portable CASA system for measuring one motion and two or three morphology attributes of individual sperm is needed for field theriogenologists or andrologists working with human sperm outside urban centers; appropriate hardware to capture images and process data apparently are available.
机译:计算机辅助精子分析(CASA)系统已经发展了大约40年,这是通过先进的设备来从显微镜捕获图像,计算能力的巨大提高以及计算机尺寸的惊人减小,新的计算机语言以及更新/扩展的发展。软件算法。值得注意的是,用于识别精子及其运动方式的基本概念几乎不变。较旧和较慢的系统仍在使用。大多数主要的精子实验室和精液处理设施都具有CASA系统,但是对它的依赖程度范围很广。这篇综述描述了公猪,公牛和种马精子目前使用的CASA技术的功能和局限性,以及未来可能的发展。每个上市的系统都是不同的。现代CASA系统可以自动查看浅样品室中的多个视野,以每秒50或60帧的速度在清晰或复杂的扩展器中捕获500至> 2000精子的频闪状图像,并在<2分钟内存储>的信息。 = 30帧,并提供每个精子和种群的摘要数据。一些系统在运动的同时评估精子的形态。 CASA无法准确预测精液样本或受试者获得的“生育力”。但是,经过仔细验证,当前的CASA系统可提供重要信息,这些信息对于计划销售的精液质量保证以及理解精子对研究微环境变化的反应的多样性至关重要。此次审查得出的四项带回家的信息是:(1)动物种类,扩展剂或培养基,标本室,照明强度,成像硬件和软件,仪器设置,技术人员等,均会影响输出值的准确性和精确性; (2)精液生产设施可能不需要本质上不同的CASA系统,而生物学实验室将从能够在灵活的时间内对深舱中的精子进行成像和跟踪的系统中受益; (3)软件应能够基于一个或多个属性对单个精子进行分组,使输出反映具有独特属性的相似精子的亚群或簇。总人口的平均数或中位数不足; (4)对于在城市中心以外与人类精子一起工作的田野生物学家或男科医师,需要一种现场使用的便携式CASA系统,用于测量单个精子的一个运动和两个或三个形态特征。显然可以使用合适的硬件来捕获图像和处理数据。

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