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Follicular cells in vivo and developmental competence of oocytes in human
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The transcriptome of human oocytes is related to age and ovarian reserve.
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Transcriptome analysis of human cumulus cells reveals hypoxia as the main determinant of follicular senescence.
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Expression data of human cumulus cells treated with follicle stimulating hormone in the presence of absence of an insulin-like growth factor 1 inhibitor
Gene expression in bovine ovarian follicle granulosa
Granulosa cells of ovarian antral follicles exhibit distinct follicle size-related processes
Chronically elevated androgen and/or consumption of a Western-style diet impairs oocyte quality and granulosa cell function in the nonhuman primate periovulatory follicle.
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Development of Laser Capture Microdissection to study the gene expression of the sheep early ovarian folliculogenesis
Presence of aggregates of smooth endoplasmic reticulum in MII oocytes affects oocyte development competence: a molecular-based evidence
Granulosa cell differentiation in vivo and developmental competence of oocytes in the bovine model
Bovine granulosa cells of dominant follicles; comparison of plateau vs atretic
Bovine granulosa cells of dominant follicles; comparison of growing vs atretic
Bovine granulosa cells of dominant follicles; comparison of growing vs plateau
Single-cell transcriptome and cell-specific network analysis reveal the reparative effect of NT-4 supplementation in preantral follicles grown in vitro
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Single-cell transcriptome and cell-specific network analysis reveal the reparative effect of NT-4 supplementation in preantral follicles grown in vitro [gc_RNA-seq]
Single-cell transcriptome and cell-specific network analysis reveal the reparative effect of NT-4 supplementation in preantral follicles grown in vitro [oocyte_RNA-seq]
Interactions between different maturation states of oocytes and granulosa cells in human antral follicles identified by single-cell transcriptomics
Transcriptome profiles of porcine oocytes with different developmental competence
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Single-cell RNA-seq of the goat oocytes samples from high fertility group (>three babys per birth) and low fertility group (< two babys per birth)
Single-cell RNA-seq of the goat ovarian granulosa cells samples from high and low fertility groups
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