blastomeres divide
卵裂球分裂
analyzing blastomeres
分析卵裂球
blastomeres forming
卵裂球形成
early blastomeres
早期卵裂球
blastomeres cleaving
卵裂球卵裂
identifying blastomeres
识别卵裂球
blastomeres present
存在卵裂球
blastomeres arranged
卵裂球排列
blastomeres migrating
卵裂球迁移
blastomeres isolated
分离卵裂球
the early-stage blastomeres divided rapidly during the first cleavage divisions.
早期卵裂球快速分裂于最初的卵裂分裂期间。
researchers tracked the movement of blastomeres within the developing embryo.
研究人员追踪着在发育胚胎中卵裂球的运动。
uneven blastomere size can indicate potential developmental problems.
卵裂球大小不均可能表明潜在的发育问题。
the blastomeres eventually differentiate into various cell types.
卵裂球最终分化成各种细胞类型。
microscopic analysis revealed the arrangement of blastomeres in the morula stage.
微观分析揭示了在卵球期卵裂球的排列。
blastomere compaction is crucial for establishing the trophectoderm.
卵裂球紧缩对于建立滋养层至关重要。
the blastomeres undergo significant morphological changes during cleavage.
卵裂球在卵裂过程中经历显著的形态变化。
genetic markers were used to identify and sort blastomeres.
遗传标记被用于识别和分类卵裂球。
the blastomere lineage traces the developmental fate of individual cells.
卵裂球谱系追踪单个细胞的发育命运。
following fertilization, the zygote divides into two blastomeres initially.
受精后,最初的卵子分裂成两个卵裂球。
the blastomeres contribute to the formation of the inner cell mass.
卵裂球有助于内细胞团的形成。
blastomeres divide
卵裂球分裂
analyzing blastomeres
分析卵裂球
blastomeres forming
卵裂球形成
early blastomeres
早期卵裂球
blastomeres cleaving
卵裂球卵裂
identifying blastomeres
识别卵裂球
blastomeres present
存在卵裂球
blastomeres arranged
卵裂球排列
blastomeres migrating
卵裂球迁移
blastomeres isolated
分离卵裂球
the early-stage blastomeres divided rapidly during the first cleavage divisions.
早期卵裂球快速分裂于最初的卵裂分裂期间。
researchers tracked the movement of blastomeres within the developing embryo.
研究人员追踪着在发育胚胎中卵裂球的运动。
uneven blastomere size can indicate potential developmental problems.
卵裂球大小不均可能表明潜在的发育问题。
the blastomeres eventually differentiate into various cell types.
卵裂球最终分化成各种细胞类型。
microscopic analysis revealed the arrangement of blastomeres in the morula stage.
微观分析揭示了在卵球期卵裂球的排列。
blastomere compaction is crucial for establishing the trophectoderm.
卵裂球紧缩对于建立滋养层至关重要。
the blastomeres undergo significant morphological changes during cleavage.
卵裂球在卵裂过程中经历显著的形态变化。
genetic markers were used to identify and sort blastomeres.
遗传标记被用于识别和分类卵裂球。
the blastomere lineage traces the developmental fate of individual cells.
卵裂球谱系追踪单个细胞的发育命运。
following fertilization, the zygote divides into two blastomeres initially.
受精后,最初的卵子分裂成两个卵裂球。
the blastomeres contribute to the formation of the inner cell mass.
卵裂球有助于内细胞团的形成。
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