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

Maternal lipids prime quiescent neural stem cells to reactivate in response to dietary nutrients

母体脂质可使静止的神经干细胞在膳食营养的刺激下重新激活。

Nahid, Md Ausrafuggaman; Doyle, Susan E; Dunham, Kelly E; Bland, Michelle L; Siegrist, Sarah E

Delta-dependent Notch activation closes the early neuroblast temporal program to promote lineage progression and neurogenesis termination in Drosophila

Delta依赖的Notch激活关闭了早期神经母细胞的时间程序,从而促进果蝇谱系进展和神经发生终止。

Sood, Chhavi; Nahid, Md Ausrafuggaman; Branham, Kendall R; Pahl, Matthew C; Doyle, Susan E; Siegrist, Sarah E

Neural Stem Cell Reactivation in Cultured Drosophila Brain Explants

果蝇脑组织培养物中神经干细胞的重新激活

Naomi Keliinui, Cami; Doyle, Susan E; Siegrist, Sarah E

Steroid hormones, dietary nutrients, and temporal progression of neurogenesis

类固醇激素、膳食营养素和神经发生的进程

Sood, Chhavi; Doyle, Susan E; Siegrist, Sarah E

E93 Integrates Neuroblast Intrinsic State with Developmental Time to Terminate MB Neurogenesis via Autophagy

E93整合神经母细胞的内在状态与发育时间,通过自噬终止髓母细胞的神经发生

Pahl, Matthew C; Doyle, Susan E; Siegrist, Sarah E

Neuroblast niche position is controlled by Phosphoinositide 3-kinase-dependent DE-Cadherin adhesion

神经母细胞微环境的位置受磷脂酰肌醇3-激酶依赖的DE-钙黏蛋白黏附调控。

Doyle, Susan E; Pahl, Matthew C; Siller, Karsten H; Ardiff, Lindsay; Siegrist, Sarah E

Diminished role of dopamine D1-receptor signaling with the development of an addicted phenotype in rats

大鼠成瘾表型发展过程中多巴胺D1受体信号传导作用减弱

Ramôa, Carolina P; Doyle, Susan E; Lycas, Matthew D; Chernau, Andrea K; Lynch, Wendy J

A shift in the role of glutamatergic signaling in the nucleus accumbens core with the development of an addicted phenotype

随着成瘾表型的出现,伏隔核核心谷氨酸能信号传导的作用发生了转变

Doyle, Susan E; Ramôa, Carolina; Garber, Garrett; Newman, Joshua; Toor, Zeeshan; Lynch, Wendy J

Ontogeny of circadian organization in the rat.

大鼠昼夜节律组织的发育

Yamazaki Shin, Yoshikawa Tomoko, Biscoe Elizabeth W, Numano Rika, Gallaspy Lauren M, Soulsby Stacy, Papadimas Evagelia, Pezuk Pinar, Doyle Susan E, Tei Hajime, Sakaki Yoshiyuki, Block Gene D, Menaker Michael

Retinal pathways influence temporal niche.

视网膜通路影响颞叶微环境

Doyle Susan E, Yoshikawa Tomoko, Hillson Holly, Menaker Michael