Cutting Edge of Reproductive Medicine

B. Wiweko
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引用次数: 1

Abstract

Background: Louise Brown’s delivery in 1978 was the mark of a successful IVF program that has now been in practice for more than 40 years. The technology has delivered more than 8 million babies. Many breakthrough innovations were established to answer the problem in ART services. Optimizing ART biomarkers and cross border reproductive care have become a rising issue in ART services. Disruptive innovation disrupts the existing condition and takes the lead in the new market, including to change our patient behavior in health services. National health services addressed new issues about the impact of 4.0 industrial revolution on health workforce and our daily practices. Every disruptive innovation today is enhanced by a combination of physical, digital, and biological domain. The advancement in the area of the internet of things, artificial intelligence, virtual reality, nanotechnology, cloud computing, big data, deep learning, machine learning, robotics, and gene editing could potentially support us to innovate. And to improve the quality and outcome of ART, the introduction of the latest technology, such as robotics and artificial intelligence, has become an essential approach. A recent study discovered that the use of artificial intelligence would remove the embryologist’s subjectivity and improve the way we choose the best embryo for implantation. The next challenging issue in ART is improving the success rate through optimizing noninvasive biomarkers development. Many biological products such as blood, tissue, organ fluid can be assessed and considered to be used as IVF biomarkers. Proteomic tools were used and are needed to analyze a sample from subjects before it was created as a biomarker for improving the IVF services quality. Conclusion: The development of IVF over 40 years has brought about many distinct achievements in the laboratory and in clinic. Industrial revolution 4.0 has generated many innovations that have helped improve the quality of ART services, including AUGMENT social egg freezing, artificial intelligence, and genome editing. In this era, precision medicine looks very promising for bridging the gap and increasing the accuracy and efficacy of promotive, preventive, diagnostic, and treatment approaches in reproductive medicine.
生殖医学的前沿
背景:1978年路易丝·布朗的出生标志着试管婴儿计划的成功,该计划已经实践了40多年。这项技术已经接生了800多万名婴儿。为了解决抗逆转录病毒治疗服务中的问题,建立了许多突破性的创新。优化抗逆转录病毒治疗生物标志物和跨境生殖保健已成为抗逆转录病毒治疗服务中日益突出的问题。颠覆性创新颠覆了现有状况,并在新市场中占据主导地位,包括改变我们在医疗服务中的患者行为。国家卫生服务解决了4.0工业革命对卫生人力和日常实践影响的新问题。今天,每一项颠覆性创新都通过物理、数字和生物领域的结合而得到增强。物联网、人工智能、虚拟现实、纳米技术、云计算、大数据、深度学习、机器学习、机器人技术和基因编辑等领域的进步可能会支持我们进行创新。为了提高ART的质量和效果,引入最新技术,如机器人和人工智能,已成为必不可少的方法。最近的一项研究发现,人工智能的使用将消除胚胎学家的主观性,并改善我们选择最佳胚胎进行植入的方式。ART的下一个挑战是通过优化无创生物标志物的开发来提高成功率。许多生物制品,如血液、组织、脏器液,可以被评估并考虑用作体外受精生物标志物。蛋白质组学工具被用于分析受试者的样本,然后将其作为提高试管婴儿服务质量的生物标志物。结论:体外受精40多年来的发展在实验室和临床方面取得了许多显著的成就。工业革命4.0产生了许多有助于提高ART服务质量的创新,包括增强社交卵子冷冻、人工智能和基因组编辑。在这个时代,精准医学看起来非常有希望弥合差距,提高生殖医学促进、预防、诊断和治疗方法的准确性和有效性。
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