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

Rapid prey capture learning drives a slow resetting of network activity in rodent binocular visual cortex

快速的猎物捕获学习会驱动啮齿动物双眼视觉皮层网络活动的缓慢重置。

Leman, Daniel P; Cary, Brian A; Bissen, Diane; Lane, Brian J; Shanley, M Regis; Wong, Nicole F; Bhut, Krish B; Turrigiano, Gina G

Dopamine maintains network synchrony via direct modulation of gap junctions in the crustacean cardiac ganglion.

多巴胺通过直接调节甲壳类动物心脏神经节中的缝隙连接来维持网络同步性

Lane Brian J, Kick Daniel R, Wilson David K, Nair Satish S, Schulz David J

Homeostatic plasticity of excitability in crustacean central pattern generator networks

甲壳类动物中央模式发生器网络兴奋性的稳态可塑性

Schulz, David J; Lane, Brian J

Synergistic plasticity of intrinsic conductance and electrical coupling restores synchrony in an intact motor network

内在电导和电耦合的协同可塑性可恢复完整运动网络的同步性

Lane, Brian J; Samarth, Pranit; Ransdell, Joseph L; Nair, Satish S; Schulz, David J

Deep sequencing of transcriptomes from the nervous systems of two decapod crustaceans to characterize genes important for neural circuit function and modulation

对两种十足类甲壳动物的神经系统转录组进行深度测序,以鉴定对神经回路功能和调控至关重要的基因。

Northcutt, Adam J; Lett, Kawasi M; Garcia, Virginia B; Diester, Clare M; Lane, Brian J; Marder, Eve; Schulz, David J

A leech model for homeostatic plasticity and motor network recovery after loss of descending inputs

水蛭模型用于研究下行输入丧失后稳态可塑性和运动网络恢复。

Lane, Brian J