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1)  Endocochlear direct-current potential
耳蜗内直流电位
2)  endocochlear potential
蜗内直流电位
1.
In the present experiment, changes in compound action potentials of auditory nerve (CAP),cochlear microphonics (CM) and endocochlear potentials were observed when the calcium concentration of Perilymph was reduced by means of perilymph perfusion, with the aim of analyzing how calcium was involved.
本实验在人工灌流条件下降低鼓阶外淋巴钙的浓度,观察其对听神经动作电位(CAP)、耳蜗微音器电位(CM)以及蜗内直流电位(EP)的影响,以分析钙离子的作用机制。
2.
The effect of various potassium-channel blockers, 4-aminopyridin (4--AP), tetraethylaminonium (TEA) and quinine, on the endocochlear potential(EP) was studiedin perfused guinea pig inner ears.
本实验采用耳蜗外淋巴灌流技术,观察了四氨基吡啶(4-AP)、四乙基铵(TEA)以及奎宁等不同钾通道阻断剂对豚鼠蜗内直流电位(EP)的影响。
3)  endocochlear DC potentia
蜗管内直流电位
4)  Cochlear potentials
耳蜗电位
1.
The harmonic complex tones and the study of the cochlear potentials;
谐波复合音与耳蜗电位研究
5)  electrical intracochlear stimulation
耳蜗内电刺激
1.
Objective:To explore the molecular mechanism of neural plasticity in the development and reconstitution following impairment of auditory system,we studied the changing levels of growth associated protein-43(GAP-43) expression in the auditory cortex of the developing rats and in ototoxicity deafened rats before and after electrical intracochlear stimulation.
目的:为了探索听觉系统发育和损伤后修复的神经可塑性的分子机制,本实验研究了生长相关蛋白-43(growthassociated protein-43,GAP-43)在正常幼鼠及耳毒性药物致聋鼠发育的不同阶段及耳蜗内电刺激后在听皮层的表达变化,探索GAP-43与幼鼠听皮层发育和可塑性的关系。
6)  Cochlear microphonics
耳蜗微音器电位
补充资料:耳蜗微音器电位
耳蜗微音器电位
耳蜗微音器电位

耳蜗微音器电位(cochlearmicrophonics,cm)

1930年,韦弗(e.g.wever)和布雷(c.w.bray)在猫身上做实验。当声音作用于耳时,可从圆窗引出一种与刺激的音波相似的电位变化。如将此电位引到扩音器上,即可复制出刺激的声音,因而认为耳蜗有如一微音器,故称此种电位为耳蜗微音器电位。这种引起微音器电位的效应,被称之wever-bray效应。在圆窗上先后可记录到两种电位,一种为微音器电位(cm),另一种为耳蜗神经上的动作电位(n1、n2、n3)。

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