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1)  Dendritic spine pruning
树突棘修剪
2)  Dendrite pruning
树突修剪
3)  dendritic spine
树突棘
1.
Effects of general anesthetics on development of dendritic spines;
全身麻醉药对树突棘发育的影响
2.
It is highly expressed in axons, small dendrites and dendritic spines in the brain.
MARCKS是一种分子量为32ku的膜内蛋白,在组织中广泛表达,但主要高表达在脑内的轴突、小直径的树突和树突棘。
3.
This experimental training intensities included normal -load and over-load using a swimming pool with circular water flow in order to investigate the effects on the neuron size and the density of dendritic spine of the large pyramidal cells in layer Ⅴ in motor areas of cerebral cortex.
利用高倍显微镜测量大脑皮质躯体运动区Ⅴ层大锥体细胞的神经元大小及树突棘密度变化。
4)  dendritic spines
树突棘
1.
Mechanism of protective effect of spleen yin nourishing recipe on dendritic spines in rats;
滋补脾阴方药对大鼠树突棘保护作用的机制
2.
In this review, we summarize evidence that exposure to morphine, amphetamine, cocaine, or nicotine produces persistent changes in the structure of dendrites and dendritic spines on neurons in the brain regions involved in incentive mo.
本文将简要地回顾并综述吗啡、苯丙胺、可卡因、尼古丁等诱发的特定脑区(如伏核,与激励动机、奖赏效应等有关;前额叶皮层,与决策和行为控制力等相关)神经元树突和树突棘的结构改变,导致突触结构重塑、功能重整。
3.
In mature central nervous system, dendritic spines are often in motility and variations of spine morphology and structure can largely influence the function of synapses.
树突棘是神经元树突上的功能性突起结构,通常作为突触后成份与投射来的轴突共同构成完整的突触连接。
5)  Spinophilin
树突棘素
1.
Distinct Expression of δ-catenin and Spinophilin in Cerebellum of Rat of Different Age;
δ-连环素(δ-catenin)与树突棘素(Spinophilin)是近年来发现的分布于神经元树突的蛋白,在突触塑形中扮演重要角色。
6)  Spine [英][spaɪn]  [美][spaɪn]
树突棘
1.
Calcium Dynamics in Spine by FRET Based-on GFP;
基于GFP的FRET监测树突棘钙动力学
2.
In this paper, in a rat primary hippocampal culture model and the hippocampal DG area of Wistar rats,we explored the biocompatibility and biosafety of QDs and the underlying mechanisms using whole-cell patch clamp,calcium imaging,immunohistochemistry, western blotting,dendrite(spine) morphology and in vivo field potential recordings techniques.
本文以原代培养的海马神经元和Wistar大鼠的海马DG区作为模型,应用单细胞膜片钳,钙成像,免疫化学,免疫沉淀,树突(树突棘)形态学和在位场电位记录等技术,研究了离体和活体水平上量子点的神经毒性及作用机制。
补充资料:修剪
1.用剪子修(枝叶﹑指甲等)。 2.喻修改润饰。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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