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

Developmental expression of human tau in Drosophila melanogaster glial cells induces motor deficits and disrupts maintenance of PNS axonal integrity, without affecting synapse formation.

人类 tau 蛋白在果蝇神经胶质细胞中的发育表达会导致运动缺陷,并破坏周围神经系统轴突完整性的维持,但不会影响突触的形成

Scarpelli Enrico M, Trinh Van Y, Tashnim Zarrin, Krans Jacob L, Keller Lani C, Colodner Kenneth J

A Simple Neuronal Mechanical Injury Methodology to Study Drosophila Motor Neuron Degeneration

一种用于研究果蝇运动神经元退化的简易神经元机械损伤方法

Danella, Erika B; Keller, Lani C

Drosophila Neuronal Injury Follows a Temporal Sequence of Cellular Events Leading to Degeneration at the Neuromuscular Junction

果蝇神经元损伤遵循一系列细胞事件的时间顺序,最终导致神经肌肉接头处的退化。

Lincoln, Barron L 2nd; Alabsi, Sahar H; Frendo, Nicholas; Freund, Robert; Keller, Lani C

Glial-derived prodegenerative signaling in the Drosophila neuromuscular system

果蝇神经肌肉系统中神经胶质细胞来源的促退行性信号传导

Keller, Lani C; Cheng, Ling; Locke, Cody J; Müller, Martin; Fetter, Richard D; Davis, Graeme W

Apparent diffusive motion of centrin foci in living cells: implications for diffusion-based motion in centriole duplication

活细胞中中心粒聚集体的表观扩散运动:对中心粒复制中基于扩散的运动的启示

Rafelski, Susanne M; Keller, Lani C; Alberts, Jonathan B; Marshall, Wallace F

Influence of centriole number on mitotic spindle length and symmetry.

中心粒数量对有丝分裂纺锤体长度和对称性的影响

Keller Lani C, Wemmer Kimberly A, Marshall Wallace F

Coordination of microtubule and microfilament dynamics by Drosophila Rho1, Spire and Cappuccino.

果蝇 Rho1、Spire 和 Cappuccino 对微管和微丝动力学的协调作用

Rosales-Nieves Alicia E, Johndrow James E, Keller Lani C, Magie Craig R, Pinto-Santini Delia M, Parkhurst Susan M