Label-free, high-throughput holographic imaging to evaluate mammalian gametes and embryos†.

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-06-12 DOI:10.1093/biolre/ioae057
Matthew B Wheeler, R A Chanaka Rabel, Marcello Rubessa, Gabriel Popescu
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Abstract

Assisted reproduction is one of the significant tools to treat human infertility. Morphological assessment is the primary method to determine sperm and embryo viability during in vitro fertilization cycles. It has the advantage of being a quick, convenient, and inexpensive means of assessment. However, visual observation is of limited predictive value for early embryo morphology. It has led many to search for other imaging tools to assess the reproductive potential of a given embryo. The limitations of visual assessment apply to both humans and animals. One recent innovation in assisted reproduction technology imaging is interferometric phase microscopy, also known as holographic microscopy. Interferometric phase microscopy/quantitative phase imaging is the next likely progression of analytical microscopes for the assisted reproduction laboratory. The interferometric phase microscopy system analyzes waves produced by the light as it passes through the specimen observed. The microscope collects the light waves produced and uses the algorithm to create a hologram of the specimen. Recently, interferometric phase microscopy has been combined with quantitative phase imaging, which joins phase contrast microscopy with holographic microscopy. These microscopes collect light waves produced and use the algorithm to create a hologram of the specimen. Unlike other systems, interferometric phase microscopy can provide a quantitative digital image, and it can make 2D and 3D images of the samples. This review summarizes some newer and more promising quantitative phase imaging microscopy systems for evaluating gametes and embryos. Studies clearly show that quantitative phase imaging is superior to bright field microscopy-based evaluation methods when evaluating sperm and oocytes prior to IVF and embryos prior to transfer. However, further assessment of these systems for efficacy, reproducibility, cost-effectiveness, and embryo/gamete safety must take place before they are widely adopted.

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评估哺乳动物配子和胚胎的无标记、高通量全息成像技术。
辅助生殖是治疗人类不孕症的重要手段之一。在试管婴儿周期中,形态学评估是确定精子和胚胎存活率的主要方法。这种方法的优点是快速、方便且成本低廉。然而,肉眼观察对早期胚胎形态的预测价值有限。因此,许多人开始寻找其他成像工具来评估特定胚胎的生殖潜力。视觉评估的局限性既适用于人类,也适用于动物。ART 成像的一项最新创新是干涉相位显微镜 (IPM),也称为全息显微镜。IPM/QPI 是辅助生殖实验室分析显微镜的下一个可能发展方向。IPM 系统分析光通过被观察样本时产生的波。显微镜收集产生的光波,并利用算法创建标本的全息图。最近,IPM 与定量相位成像(QPI)相结合,将相位对比显微技术与全息显微技术相结合。这些显微镜收集产生的光波,并利用算法创建标本的全息图。与其他系统不同的是,IPM 可以提供定量数字图像,并能制作样本的二维和三维图像。本综述总结了一些用于评估配子和胚胎的更新、更有前景的 QPI 显微系统。研究清楚地表明,在体外受精前评估精子和卵母细胞以及在胚胎移植前评估胚胎时,QPI 优于基于明视野显微镜的评估方法。然而,在广泛采用这些系统之前,必须对其功效、可重复性、成本效益和胚胎/配子安全性进行进一步评估。
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CiteScore
7.20
自引率
4.30%
发文量
567
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