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

In vitro cellular reprogramming to model gonad development and its disorders

利用体外细胞重编程技术模拟性腺发育及其障碍

Gonen, Nitzan; Eozenou, Caroline; Mitter, Richard; Elzaiat, Maëva; Stévant, Isabelle; Aviram, Rona; Bernardo, Andreia Sofia; Chervova, Almira; Wankanit, Somboon; Frachon, Emmanuel; Commère, Pierre-Henri; Brailly-Tabard, Sylvie; Valon, Léo; Barrio Cano, Laura; Levayer, Romain; Mazen, Inas; Gobaa, Samy; Smith, James C; McElreavey, Kenneth; Lovell-Badge, Robin; Bashamboo, Anu

Wikipedia as a tool for contemporary history of science: A case study on CRISPR

维基百科作为当代科学史的工具:以CRISPR为例

Benjakob, Omer; Guley, Olha; Sevin, Jean-Marc; Blondel, Leo; Augustoni, Ariane; Collet, Matthieu; Jouveshomme, Louise; Amit, Roy; Linder, Ariel; Aviram, Rona

Citation needed? Wikipedia bibliometrics during the first wave of the COVID-19 pandemic

需要引用?维基百科在新冠疫情第一波期间的文献计量学

Benjakob, Omer; Aviram, Rona; Sobel, Jonathan Aryeh

Circa-SCOPE: high-throughput live single-cell imaging method for analysis of circadian clock resetting

Circa-SCOPE:用于分析生物钟重置的高通量活细胞单细胞成像方法

Manella, Gal; Aizik, Dan; Aviram, Rona; Golik, Marina; Asher, Gad

Circadian Organelles: Rhythms at All Scales

昼夜节律细胞器:各个尺度的节律

Aviram, Rona; Adamovich, Yaarit; Asher, Gad

Hypoxia induces a time- and tissue-specific response that elicits intertissue circadian clock misalignment

缺氧会诱发一种时间和组织特异性的反应,从而引起组织间生物钟紊乱。

Manella, Gal; Aviram, Rona; Bolshette, Nityanand; Muvkadi, Sapir; Golik, Marina; Smith, David F; Asher, Gad

The PXDLS linear motif regulates circadian rhythmicity through protein-protein interactions

PXDLS线性基序通过蛋白质-蛋白质相互作用调控昼夜节律。

Shalev, Moran; Aviram, Rona; Adamovich, Yaarit; Kraut-Cohen, Judith; Shamia, Tal; Ben-Dor, Shifra; Golik, Marina; Asher, Gad

Isometric Scaling in Developing Long Bones Is Achieved by an Optimal Epiphyseal Growth Balance.

长骨发育过程中的等距缩放是通过最佳的骨骺生长平衡实现的

Stern Tomer, Aviram Rona, Rot Chagai, Galili Tal, Sharir Amnon, Kalish Achrai Noga, Keller Yosi, Shahar Ron, Zelzer Elazar