背根神经节神经元,dorsal root ganglion neurons
1)dorsal root ganglion neurons背根神经节神经元
1.Effects of desipramine on sodium current of rat dorsal root ganglion neurons;地昔帕明对大鼠背根神经节神经元钠电流的影响
2.Methods Dorsal root ganglion neurons from newly-born rats were(digested) with trypsin to produce single cell suspension,then cultured with olfactory ensheathing cells.目的研究嗅鞘细胞(OECs)对体外培养脊髓背根神经节神经元生长状态的影响。
英文短句/例句

1.Nerve Growth Factor Sensitizes the Release of Substance P Evoked by Capsaicin from Dorsal Root Ganglion Neurons;神经生长因子促进辣椒素诱导的背根神经节神经元P物质的释放
2.The Effects of Sodium Ferulate on the Neuropathic Pain Mediated by P2X_3 Receptor in Gorsal Root Ganglion Neurons;阿魏酸钠对背根神经节神经元P2X_3受体介导神经病理痛的作用研究
3.Modulation of Vesicles Cycle by Calcium and Protein Kinase A in Soma of Dorsal Root Ganglion Neurons;钙离子和蛋白激酶A对背根神经节神经元胞体囊泡转运过程的调控
4.Effect Orphanin FQ on the Membrane of Rat DRG Neurons and Its Ionic Basis;孤啡肽对大鼠背根神经节神经元膜电位的影响及离子机制
5.An Experimental Study of the Neurotoxicity of HIV gp120 and Didanosine on Dorsal Root Ganglion Neurons;HIVgp120和二脱氧肌苷对背根神经节神经元毒性作用的实验研究
6.Effects of Glial Cell Line-derived Neurotrophic Growth Factor on Substance P Release from Cultured Dorsal Root Ganglion Neurons and Its Related Mechanisms;GDNF对培养的背根神经节神经元P物质释放的影响及作用机制
7.Neuroprotective Effects of Insulin-like Growth Factor 1 on Cultured Dorsal Root Ganglion Neurons with Neurotoxicity Induced by Glutamate胰岛素样生长因子-1对背根神经节神经元谷氨酸损伤的保护作用
8.Nourishing Piyin Remedy on the Protective Effect of Dorsal Root Ganglion Neurons under Hypoxic滋补脾阴方药对背根神经节神经元缺氧损伤保护作用的研究
9.EFFECT OF NITRIC OXIDE ON THE SOMATIC MEMBRANE OF RAT DRG NEURONS一氧化氮对大鼠背根神经节神经元膜电位的作用
10.Isolation Method of Dorsal Root Ganglion Neurons of Rats and Their Electrophysiological Characteristics大鼠背根神经节神经元的分离方法及电生理特征探讨
11.Primary culture method to obtain high purified dorsal root ganglion neurons of rats in vitro体外获得高纯度大鼠背根神经节神经元的原代培养
12.Study on the Modulation of Kir Channel by EGF on DRG Neurons;表皮生长因子对背根神经节神经元内向整流型钾离子通道调节的研究
13.The Study of Thermosensitivity of Primary Sensory Neurons in Rat Dorsal Root Ganglion;背根节感觉神经元温度敏感性的研究
14.The Effect of Noise on the Excitability of Rat Injured Dorsal Root Ganglia Neurons;噪声对大鼠受损背根节神经元兴奋性的作用
15.Slow wave oscillation of interspike interval in injured dorsal root ganglion neurons;受损背根节神经元放电峰峰间期的慢波振荡
16.Effects of bradykinin on the sodium channel of dorsal root ganglion neurons;缓激肽对背根节神经元钠通道电流的作用
17.Effects of embryonic limb buds extract (ELBE) on cultured sensory neurons of dorsal root ganglia from embryonic rats胚胎肢芽提取物对体外培养的背根神经节感觉神经元的作用
18.Rhythmic Pattern and Rules of Dynamic Variations in Spontaneous Discharge of Injured Dorsal Root Ganglion Neurons;损伤背根节神经元自发放电的节律形式及其动力学变化规律
相关短句/例句

DRGn背根神经节神经元
1.Anti-NF200 and DAPI staining was to examine the purification rate of DRGn.目的:建立一种切实可行的胚胎大鼠背根神经节神经元培养及纯化方法,研究MEF2C在背根神经节神经元细胞内表达对P物质和低分子量神经丝微管蛋白基因表达的影响以及MEF2C与气道高反应性发生间可能的关系。
3)DRG neurons背根节神经元
1.①Primarily cultured DRG neurons were dissected from neonatal rat and cultured N1 serum-free medium.运用体外缺气损伤的细胞模型 ,研究GDNF对损伤的新生大鼠背根节神经元( DRG)是否有保护作用。
4)dorsal root ganglion背根节神经元
1.Excitatory effect of low dose of manganese on spontaneous discharges of dorsal root ganglion neurons;低剂量锰对背根节神经元自发放电的兴奋作用
2.Effects of bradykinin on the sodium channel of dorsal root ganglion neurons;缓激肽对背根节神经元钠通道电流的作用
3.Aim: To investigate the effects of bradykinin on voltage-dependent sodi um channel currents in rat dorsal root ganglion neurons(DRG).目的 :观察缓激肽 (bradykinin ,BK)对大鼠背根节神经元电压依赖性钠通道电流的作用。
5)Dorsal root ganglia neural cells背根神经节神经元细胞
6)dorsal root ganglion背根神经节
1.Morphological alterations induced by didanosine in cultured dorsal root ganglion nrurons;二脱氧肌苷引发培养的背根神经节神经元的形态学改变(英文)
2.Expression of three distinct families of calcium-activated chloride channel genes in the mouse dorsal root ganglion;小鼠背根神经节中三个不同的钙激活氯离子通道基因家族的表达(英文)
3.Effect of nucleus pulposus allografted into epidural space on the expressions of TNF-α and IL-1 in rat′s dorsal root ganglion neurons;硬膜外腔植入髓核对大鼠脊髓背根神经节TNF-α和IL-1表达的影响
延伸阅读

神经腱分子式:CAS号:性质:又称神经腱。在神经元之间或神经元与神经效应器之间功能性触点的部分。突触通常发生于轴索神经细胞的末端分支和下一个神经之树突之间。膜与膜之间没有自然触点,信息的转换是依靠化学神经介质(例如肾上腺素、乙酰胆碱)横跨神经突触的裂隙而进行的。