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

Hunchback functions in the postmitotic larval MDN to restrict axon outgrowth, synapse formation, and backward locomotion.

Hunchback 在有丝分裂后的幼虫 MDN 中发挥作用,限制轴突生长、突触形成和后退运动。

Lee Kristen, Rico Carvajal Natalie, Graciani Josmarie, Doe Chris Q

The Fd4 transcription factor translates transient spatial cues in progenitors into long-term lineage identity

Fd4转录因子将祖细胞中瞬时的空间信号转化为长期的谱系特征。

Lai, Sen-Lin; Doe, Chris Q

Vnd and En are expressed in orthogonal stripes and act in a brief competence window to combinatorially specify NB7-1 and its early lineage

Vnd 和 En 以正交条纹的形式表达,并在短暂的感受态窗口期内组合地决定 NB7-1 及其早期谱系。

Anderson, Nathan L Q; Lai, Sen-Lin; Doe, Chris Q

Castor specifies NB5-2 late-born interneuron molecular identity and premotor connectivity.

Castor 决定了 NB5-2 晚期出生的中间神经元的分子特性和运动前连接。

Pollington Heather Q, Radler Megan R, Lee Kristen M, Hirono Keiko, Doe Chris Q

Cell body clustering drives gap junction-mediated synchronous activity in command neurons

细胞体聚集驱动指令神经元中缝隙连接介导的同步活动

Lee, Kristen; Graciani, Josmarie; Carvajal, Natalie Rico; Zhu, Zhehao; Clark, Matt Q; Doe, Chris Q

The Hunchback transcription factor determines interneuron molecular identity, morphology, and presynapse targeting in the Drosophila NB5-2 lineage.

Hunchback 转录因子决定果蝇 NB5-2 谱系中中间神经元的分子特性、形态和突触前靶向

Pollington Heather Q, Doe Chris Q

Single nuclei RNA-sequencing of adult brain neurons derived from type 2 neuroblasts reveals transcriptional complexity in the insect central complex

对源自 II 型神经母细胞的成年脑神经元进行单核 RNA 测序,揭示了昆虫中央复合体的转录复杂性。

Epiney, Derek G; Chaya, Gonzalo Morales; Dillon, Noah R; Lai, Sen-Lin; Doe, Chris Q

Fer3 is uniquely expressed in NotchOFF hemilineages, where it promotes interneuron identity

Fer3 在 NotchOFF 半谱系中特异性表达,并在其中促进中间神经元的特性形成。

Drake, Kasey C; Lai, Sen-Lin; Doe, Chris Q

Imp and Chinmo are required for embryonic motor neuron axon and dendrite targeting

Imp 和 Chinmo 是胚胎运动神经元轴突和树突靶向所必需的。

Katherine H Fisher ,Sen-Lin Lai ,Chris Q Doe

Transcriptional complexity in the insect central complex: single nuclei RNA-sequencing of adult brain neurons derived from type 2 neuroblasts

昆虫中央复合体的转录复杂性:源自 2 型神经母细胞的成体脑神经元的单核 RNA 测序

Epiney, Derek; Morales Chaya, Gonzalo N; Dillon, Noah R; Lai, Sen-Lin; Doe, Chris Q