Mechanism of spindle pole organization and instability in human oocytes

C So, K Menelaou, J Uraji, K Harasimov, AM Steyer… - Science, 2022 - science.org
Human oocytes are prone to assembling meiotic spindles with unstable poles, which can
favor aneuploidy in human eggs. The underlying causes of spindle instability are unknown …

Mechanism of spindle pole organization and instability in human oocytes

C So, K Menelaou, J Uraji, K Harasimov, AM Steyer… - Science, 2022 - pure.mpg.de
Human oocytes are prone to assembling meiotic spindles with unstable poles, which can
favor aneuploidy in human eggs. The underlying causes of spindle instability are unknown …

Mechanism of spindle pole organization and instability in human oocytes

C So, K Menelaou, J Uraji, K Harasimov, AM Steyer… - paper.sciencenet.cn
Human oocytes are prone to assembling meiotic spindles with unstable poles, which can
favor aneuploidy in human eggs. The underlying causes of spindle instability are unknown …

Mechanism of spindle pole organization and instability in human oocytes

C So, K Menelaou, J Uraji… - … (New York, NY), 2022 - pubmed.ncbi.nlm.nih.gov
Human oocytes are prone to assembling meiotic spindles with unstable poles, which can
favor aneuploidy in human eggs. The underlying causes of spindle instability are unknown …

Mechanism of spindle pole organization and instability in human oocytes.

C So, K Menelaou, J Uraji, K Harasimov… - Science (New York …, 2022 - europepmc.org
Human oocytes are prone to assembling meiotic spindles with unstable poles, which can
favor aneuploidy in human eggs. The underlying causes of spindle instability are unknown …

Mechanism of Spindle Pole Organization and Instability in Human Oocytes

C So, K Menelaou, J Uraji, K Harasimov… - 2022 - publications.goettingen-research …
Mechanism of Spindle Pole Organization and Instability in Human Oocytes | GRO.publications
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Mechanism of spindle pole organization and instability in human oocytes

C So, K Menelaou, J Uraji, K Harasimov, AM Steyer… - Science, 2022 - cir.nii.ac.jp
抄録< jats: p> Human oocytes are prone to assembling meiotic spindles with unstable poles,
which can favor aneuploidy in human eggs. The underlying causes of spindle instability are …

Mechanism of Spindle Pole Organization and Instability in Human Oocytes

C So, K Menelaou, J Uraji, K Harasimov… - Obstetrical & …, 2022 - journals.lww.com
ABSTRACT Approximately 25% to 50% of human eggs are aneuploid, with even higher
rates among older women. Aneuploidy is a leading cause of abnormal embryonic …

Mechanism of spindle pole organization and instability in human oocytes

C So, K Menelaou, J Uraji, K Harasimov… - 2022 - publications.goettingen-research …
Human oocytes are prone to assembling meiotic spindles with unstable poles, which can
favor aneuploidy in human eggs. The underlying causes of spindle instability are unknown …

Mechanism of Spindle Pole Organization and Instability in Human Oocytes

C So, K Menelaou, J Uraji, K Harasimov… - Obstetrical & …, 2022 - journals.lww.com
ABSTRACT Approximately 25% to 50% of human eggs are aneuploid, with even higher
rates among older women. Aneuploidy is a leading cause of abnormal embryonic …