日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

A versatile cohesion manipulation system probes female reproductive age-related egg aneuploidy

一种多功能的内聚力操控系统用于探测与雌性生殖年龄相关的卵子非整倍体

Leem, Jiyeon; Lemonnier, Tom; Khutsaidze, Ani; Tian, Lei; Xing, Xiaojun; Bai, Suxia; Nottoli, Timothy; Mogessie, Binyam

The retrotransposon-derived capsid genes PNMA1 and PNMA4 maintain reproductive capacity.

逆转录转座子衍生的衣壳基因PNMA1和PNMA4维持繁殖能力

Wood Thomas W P, Henriques William S, Cullen Harrison B, Romero Mayra, Blengini Cecilia S, Sarathy Shreya, Sorkin Julia, Bekele Hilina, Jin Chen, Kim Seungsoo, Wang Xifan, Laureau Raphaelle, Chemiakine Alexei, Khondker Rishad C, Isola José V V, Stout Michael B, Gennarino Vincenzo A, Mogessie Binyam, Jain Devanshi, Schindler Karen, Suh Yousin, Wiedenheft Blake, Berchowitz Luke E

In preprints: rethinking the foundations of the ovarian reserve

预印本:重新思考卵巢储备的基础

Rix, Andrea; Mogessie, Binyam

Vaccination Politics in Southern Europe: The case of Italy

南欧的疫苗接种政治:以意大利为例

Li, Yujie; Zheng, Wei; Leem, Jiyeon; Wu, Chunxiang; Tang, Shaogeng; Mogessie, Binyam; Xiong, Yong; OGBUAGU, CHUKWUANUGO; Guicciardi, S

A versatile cohesion manipulation system reveals CENP-A dysfunction accelerates female reproductive age-related egg aneuploidy.

一种多功能的内聚力操控系统揭示了 CENP-A 功能障碍会加速女性生殖年龄相关的卵子非整倍体

Leem Jiyeon, Lemonnier Tom, Khutsaidze Ani, Tian Lei, Xing Xiaojun, Bai Suxia, Nottoli Timothy, Mogessie Binyam

On the origin of mitosis-derived human embryo aneuploidy

关于有丝分裂衍生的人类胚胎非整倍体的起源

Leem, Jiyeon; Gowett, Madison; Bolarinwa, Sarah; Mogessie, Binyam

Seeing is believing: Representation as a powerful tool in the fight against racism in science

眼见为实:代表性是科学领域反种族主义斗争中的有力工具

Mogessie, Binyam

Visualization and Functional Analysis of Spindle Actin and Chromosome Segregation in Mammalian Oocytes

哺乳动物卵母细胞纺锤体肌动蛋白和染色体分离的可视化和功能分析

Mogessie, Binyam

Correction to: Visualization and Functional Analysis of Spindle Actin and Chromosome Segregation in Mammalian Oocytes

更正:哺乳动物卵母细胞中纺锤体肌动蛋白和染色体分离的可视化和功能分析

Mogessie, Binyam

A novel isoform of MAP4 organises the paraxial microtubule array required for muscle cell differentiation.

MAP4 的一种新型亚型组织肌肉细胞分化所需的近轴微管阵列

Mogessie Binyam, Roth Daniel, Rahil Zainab, Straube Anne