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

C4d, a high-affinity LilrB2 ligand, is elevated in Alzheimer's disease and mediates synapse pruning.

C4d 是一种高亲和力的 LilrB2 配体,在阿尔茨海默病中含量升高,并介导突触修剪

Brott Barbara K, Raissi Aram J, Micheva Kristina D, Vielmetter Jost, Mendes Monique S, Baccus Caroline J, Huang Jolie, Shatz Carla J

A saturation hypothesis to explain both enhanced and impaired learning with enhanced plasticity

饱和假说可以解释增强可塑性下学习能力的增强和受损现象

Nguyen-Vu, Td Barbara; Zhao, Grace Q; Lahiri, Subhaneil; Kimpo, Rhea R; Lee, Hanmi; Ganguli, Surya; Shatz, Carla J; Raymond, Jennifer L

Developmental Sculpting of Intracortical Circuits by MHC Class I H2-Db and H2-Kb

MHC I 类 H2-Db 和 H2-Kb 对皮层内回路发育的塑造作用

Adelson, Jaimie D; Sapp, Richard W; Brott, Barbara K; Lee, Hanmi; Miyamichi, Kazunari; Luo, Liqun; Cheng, Sarah; Djurisic, Maja; Shatz, Carla J

Blocking PirB up-regulates spines and functional synapses to unlock visual cortical plasticity and facilitate recovery from amblyopia

阻断 PirB 可上调树突棘和功能性突触,从而激活视觉皮层可塑性并促进弱视的恢复。

Bochner, David N; Sapp, Richard W; Adelson, Jaimie D; Zhang, Siyu; Lee, Hanmi; Djurisic, Maja; Syken, Josh; Dan, Yang; Shatz, Carla J

Human LilrB2 is a β-amyloid receptor and its murine homolog PirB regulates synaptic plasticity in an Alzheimer's model

人源LilrB2是一种β-淀粉样蛋白受体,其鼠源同源物PirB在阿尔茨海默病模型中调节突触可塑性。

Kim, Taeho; Vidal, George S; Djurisic, Maja; William, Christopher M; Birnbaum, Michael E; Garcia, K Christopher; Hyman, Bradley T; Shatz, Carla J

PirB regulates a structural substrate for cortical plasticity

PirB 调控皮层可塑性的结构基础

Djurisic, Maja; Vidal, George S; Mann, Miriam; Aharon, Adam; Kim, Taeho; Ferrao Santos, Alexandre; Zuo, Yi; Hübener, Mark; Shatz, Carla J

Neuroprotection from stroke in the absence of MHCI or PirB

在缺乏MHCI或PirB的情况下,对中风具有神经保护作用

Adelson, Jaimie D; Barreto, George E; Xu, Lijun; Kim, Taeho; Brott, Barbara K; Ouyang, Yi-Bing; Naserke, Thorsten; Djurisic, Maja; Xiong, Xiaoxing; Shatz, Carla J; Giffard, Rona G

Classical MHCI molecules regulate retinogeniculate refinement and limit ocular dominance plasticity

经典的MHCI分子调节视网膜-膝状体精细化并限制眼优势可塑性

Datwani, Akash; McConnell, Michael J; Kanold, Patrick O; Micheva, Kristina D; Busse, Brad; Shamloo, Mehrdad; Smith, Stephen J; Shatz, Carla J

Synaptogenesis in purified cortical subplate neurons

纯化皮层下板神经元的突触发生

McKellar, Claire E; Shatz, Carla J

A burst-based "Hebbian" learning rule at retinogeniculate synapses links retinal waves to activity-dependent refinement

视网膜膝状体突触处基于爆发的“赫布”学习规则将视网膜波与活动依赖性精细化联系起来

Butts, Daniel A; Kanold, Patrick O; Shatz, Carla J