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

Developmental but not adult cannabinoid treatments persistently alter axonal and dendritic morphology within brain regions important for zebra finch vocal learning.

发育期(而非成年期)大麻素治疗会持续改变斑胸草雀发声学习相关大脑区域的轴突和树突形态

Gilbert Marcoita T, Soderstrom Ken

Cannabinoid mitigation of neuronal morphological change important to development and learning: insight from a zebra finch model of psychopharmacology

大麻素缓解对发育和学习至关重要的神经元形态变化:来自斑胸草雀精神药理学模型的启示

Soderstrom, Ken; Gilbert, Marcoita T

Novel song-stimulated dendritic spine formation and Arc/Arg3.1 expression in zebra finch auditory telencephalon are disrupted by cannabinoid agonism.

大麻素激动剂会破坏斑胸草雀听觉端脑中由新歌刺激的树突棘形成和 Arc/Arg3.1 表达

Gilbert Marcoita T, Soderstrom Ken

Late-postnatal cannabinoid exposure persistently elevates dendritic spine densities in area X and HVC song regions of zebra finch telencephalon

出生后期接触大麻素会持续提高斑胸草雀端脑X区和HVC鸣唱区域的树突棘密度

Gilbert, Marcoita T; Soderstrom, Ken

Late-postnatal cannabinoid exposure persistently increases FoxP2 expression within zebra finch striatum

出生后期接触大麻素会持续增加斑胸草雀纹状体内的FoxP2表达。

Soderstrom, Ken; Luo, Bin

CB(1) cannabinoid receptor activation dose dependently modulates neuronal activity within caudal but not rostral song control regions of adult zebra finch telencephalon

CB(1)大麻素受体激活以剂量依赖的方式调节成年斑胸草雀端脑尾部而非头部鸣唱控制区域的神经元活动

Soderstrom, Ken; Tian, Qiyu

Quantifying song bout production during zebra finch sensory-motor learning suggests a sensitive period for vocal practice

对斑胸草雀感觉运动学习期间鸣唱次数的量化分析表明,存在一个发声练习的敏感期。

Johnson, Frank; Soderstrom, Ken; Whitney, Osceola