数据科学
基因组学
生物
认知科学
透视图(图形)
器官发生
计算机科学
计算生物学
地图集(解剖学)
领域(数学)
人类遗传学
人类疾病
进化生物学
人类基因组
系统生物学
神经科学
生物信息学
后生
破译
窗口(计算)
发育生物学
发育阶段
模式生物
人工智能
相关性(法律)
范式转换
鉴定(生物学)
显著性(神经科学)
大脑发育
生物学数据
作者
Pan Jiexue,Zhongliang Lin,Gaochen Zhang,H Huang,Guolian Ding
出处
期刊:GigaScience
[University of Oxford]
日期:2026-01-01
卷期号:15
标识
DOI:10.1093/gigascience/giag063
摘要
The Carnegie stages represent a critical window in human development, during which organ primordia emerge, tissue identities diversify, and many congenital disorders are thought to originate. However, this period has remained difficult to study at the whole-embryo scale. Recent advances in spatial and single-cell genomics are beginning to close this gap. This article discusses the significance of the spatiotemporal transcriptomic atlas of post-gastrulation human embryos spanning Carnegie stages 12-23, which provides one of the most comprehensive dynamic molecular maps of this developmental window to date. Beyond its value as a reference resource, this atlas offers biological insights into early cardiac patterning, brain regionalization, the timing of inhibitory and excitatory neurogenesis, tissue-specific susceptibility to prenatal infection, and spatially resolved allelic imbalance. Equally importantly, it illustrates a broader shift in the field from fragmented organ-specific datasets toward integrated developmental frameworks that can connect embryology, human genetics, and disease mechanisms. Future progress will depend not only on generating more data but also on harmonizing multimodal datasets across sources, stages, and platforms, an effort that will increasingly rely on advances in computational biology and artificial intelligence.
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