endoderm layer
内胚层
endoderm origin
内胚层来源
endoderm cells
内胚层细胞
endoderm development
内胚层发育
endoderm derivatives
内胚层衍生物
endoderm tissue
内胚层组织
endoderm formation
内胚层形成
endoderm function
内胚层功能
endoderm signaling
内胚层信号传导
endoderm specification
内胚层特化
the endoderm is one of the three primary germ layers in embryonic development.
内胚层是胚胎发育中的三种主要胚层之一。
cells from the endoderm eventually form the lining of the digestive tract.
内胚层的细胞最终形成消化道的内衬。
research on endoderm differentiation is crucial for regenerative medicine.
内胚层分化的研究对再生医学至关重要。
the endoderm gives rise to vital organs such as the liver and lungs.
内胚层产生重要器官,如肝脏和肺部。
understanding the role of the endoderm can help in treating certain diseases.
了解内胚层的作用有助于治疗某些疾病。
during gastrulation, the endoderm is formed from the inner cell mass.
在原肠胚形成过程中,内胚层是由内细胞团形成的。
the endoderm is essential for the development of the respiratory system.
内胚层对呼吸系统的发育至关重要。
scientists study the endoderm to understand organogenesis better.
科学家研究内胚层以更好地理解器官发生。
endodermal cells can be manipulated for therapeutic purposes.
内胚层细胞可以被操控用于治疗目的。
disruptions in endoderm development can lead to congenital disorders.
内胚层发育的干扰可能导致先天性疾病。
endoderm layer
内胚层
endoderm origin
内胚层来源
endoderm cells
内胚层细胞
endoderm development
内胚层发育
endoderm derivatives
内胚层衍生物
endoderm tissue
内胚层组织
endoderm formation
内胚层形成
endoderm function
内胚层功能
endoderm signaling
内胚层信号传导
endoderm specification
内胚层特化
the endoderm is one of the three primary germ layers in embryonic development.
内胚层是胚胎发育中的三种主要胚层之一。
cells from the endoderm eventually form the lining of the digestive tract.
内胚层的细胞最终形成消化道的内衬。
research on endoderm differentiation is crucial for regenerative medicine.
内胚层分化的研究对再生医学至关重要。
the endoderm gives rise to vital organs such as the liver and lungs.
内胚层产生重要器官,如肝脏和肺部。
understanding the role of the endoderm can help in treating certain diseases.
了解内胚层的作用有助于治疗某些疾病。
during gastrulation, the endoderm is formed from the inner cell mass.
在原肠胚形成过程中,内胚层是由内细胞团形成的。
the endoderm is essential for the development of the respiratory system.
内胚层对呼吸系统的发育至关重要。
scientists study the endoderm to understand organogenesis better.
科学家研究内胚层以更好地理解器官发生。
endodermal cells can be manipulated for therapeutic purposes.
内胚层细胞可以被操控用于治疗目的。
disruptions in endoderm development can lead to congenital disorders.
内胚层发育的干扰可能导致先天性疾病。
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