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

A lateralized sensory signaling pathway mediates context-dependent olfactory plasticity in Caenorhabditis elegans

侧向感觉信号通路介导秀丽隐杆线虫的嗅觉可塑性(依赖于环境)

Pandey, Anjali; Katz, Maya; Nurrish, Stephen; Philbrook, Alison; Sengupta, Piali

Experience-dependent reconfiguration of thermoreceptors regulates neuronal response plasticity

经验依赖性的热感受器重构调节神经元反应可塑性

Harris, Nathan; Dutta, Priya; Krishnan, Nikhila; Nurrish, Stephen; Wilder, Emily C; Sengupta, Piali

Activity induced GEM-4/Copine expression inhibits gap junctions and promotes thermosensory plasticity

活性诱导的GEM-4/Copine表达抑制间隙连接并促进温度感觉可塑性

Gao, Luna; Bates, Sam; Pym, Edward; Nurrish, Stephen; Sengupta, Piali; Kaplan, Joshua M

Stereotypical interciliary contacts in a C. elegans sense organ

秀丽隐杆线虫感觉器官中典型的纤毛间接触

Krishnan, Nikhila; Lawson, Hannah; Leslie, Samantha; Lu, Yu-Ming; Wexler, Leland; Heiman, Maxwell G; Sengupta, Piali

A stereotyped glial attachment determines the morphology and function of neuronal cilia

神经胶质细胞的固定附着模式决定了神经元纤毛的形态和功能。

Wexler, Leland R; Griffin, Brian; Dutta, Priya; Sengupta, Piali; Kolotuev, Irina; Ringstad, Niels; Heiman, Maxwell G

An unusual potassium conductance protects Caenorhabditis elegans pharyngeal muscle rhythms against environmental noise

一种不寻常的钾离子电导保护秀丽隐杆线虫的咽部肌肉节律免受环境噪声的影响

Kenngott, Max; Sengupta, Piali; Lockery, Shawn; Marder, Eve

C. elegans: An elegant experimental system for the study of cilia biology

秀丽隐杆线虫:研究纤毛生物学的优雅实验系统

Nechipurenko, Inna; Sengupta, Piali

A lateralized sensory signaling pathway mediates context-dependent olfactory plasticity in C. elegans

侧向化的感觉信号通路介导秀丽隐杆线虫中依赖于环境的嗅觉可塑性

Pandey, Anjali; Katz, Maya; Nurrish, Stephen; Philbrook, Alison; Sengupta, Piali

Experience-dependent reconfiguration of receptors at a sensory compartment regulates neuronal plasticity.

感觉器官中受体的经验依赖性重构调节神经元可塑性

Harris Nathan, Dutta Priya, Krishnan Nikhila, Nurrish Stephen, Sengupta Piali

An enteric neuron-expressed variant ionotropic receptor detects ingested salts to regulate salt stress resistance.

肠神经元表达的变异型离子型受体可检测摄入的盐分,从而调节盐胁迫抵抗力

Yeon Jihye, Chen Laurie, Krishnan Nikhila, Bates Sam, Porwal Charmi, Sengupta Piali