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1)  ectopic spontaneous discharge
异位自发放电
1.
Effect of sodium valproate on ectopic spontaneous discharge of injured dorsal root ganglion neurons in rats;
丙戊酸钠对大鼠损伤背根节神经元异位自发放电的抑制作用
2)  spontaneous single unit discharge
自发放电单位
3)  spontaneous unit discharges
自发单位放电
4)  spontaneous action potentials
自发放动作电位
1.
The effects of four podophyllotoxin analogues on spontaneous action potentials of the ventral nerve cord of Periplaneta americana were observed by electrophysiology technique.
为了解鬼臼毒素对昆虫神经系统的影响,采用胞外记录电生理方法观察了4种鬼臼毒素类似物对美洲大蠊Periplaneta americana中枢神经自发放动作电位的影响。
5)  potential spike
电位发放
1.
In order to investigate the code and the mode of the potential spike in a neural system, a mode of the function bar code of the external stimulus and the spike response in a neural system is constructed by using the WinnerLess Competition model in olfactory processing networks.
为研究神经系统的电位发放模式和编码,利用嗅觉神经系统的WinnerLessCom petition模型,根据神经细胞电位发放全有全无的特点,构造了神经系统外界刺激、发放响 应的函数条形码模式。
6)  spontaneous activity
自发放电
1.
Excitatory effect of yohimbine on the spontaneous activity in chronically compressed dorsal root ganglion neurons in rats;
育亨宾对慢性压迫背根节神经元自发放电的兴奋作用
2.
Method In chronically compressed DRG model, the spontaneous activity of the single fiber from injured DRG neurons was recorded, and the responses of DRG neurons to chaotic and periodic electric stimulation of the lumbar sympathetic trunk compared.
方法采用单纤维记录神经元自发放电的方法,在DRG慢性压迫模型上,电刺激腰交感神经干,比较受损DRG神经元对周期和混沌的交感神经刺激的反应。
3.
With a model of chronically compressed dorsal root ganglion (CCD), the present study was undertaken to test how the plasticity of sympathetic sensory coupling is and whether the coupling is mediated by intracellular messenger PKA by analysing extracellularly recorded spontaneous activity of single A fibers originating from the CCD neurons in vitro.
本实验在背根节(DRG)慢性压迫模型上,采用离体灌流DRG和单纤维记录神经元自发放电的方法研究了初级感觉神经元的交感感觉耦联作用及其细胞内机制。
补充资料:异配位体配位化合物
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性质:又称异配位体配位化合物。中心离子同时与两种以上不同配体共存于配位内界所组成的单核或多核配位化合物。例如,三氯·氨合铂(II)酸钾和(2)铜(II)-吡啶(py)-水杨酸(sal)配位化合物。在溶液中混配配位化合物的形成是普遍现象。与单一型配位化合物比较,它加强了中心体的化学个性(如易满足高配位数、增强不稳价态稳定性、光学性质改变等),也加强了配体的反应活性和协同萃取效应。在湿法冶金、电化学、分析化学、药物化学、环境化学、生物无机化学和材料化学等方面有着重要作用。

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