flurazepam

flurazepam

1. Total NOS activity increased dramatically both in flurazepam tolerane and dependene rats.

两组NOS活性均显著高于各自的对照组。

2. Changes of nitric oxide synthase in hippocampus of rats tolerant to and dependent on the anticonvulsant action of flurazepam

大鼠对氟西泮抗痫耐受和依赖时海马中一氧化氮合酶的变化

3. Method Animal models of tolerance and dependence to flurazepam were established.

方法建立大鼠对氟西泮抗痫耐受性和依赖性的模型。

4. Poisoning by flurazepam

氟胺安定中毒

5. Flurazepam measurement

氟胺安定测量

6. Keywords flurazepam;tolerance;dependence;nitric oxide(NO);nitric oxide synthase(NOS);

氟西泮;耐受性;依赖性;一氧化氮(NO);一氧化氮合酶(NOS);

7. Modification of GABAA receptor subunit mRNA content in audiogenic seizure rat cortex and hippocampus following tolerance to flurazepam

氟西泮耐受听源性惊厥大鼠脑皮质运动区和海马区GABAA受体亚单位mRNA含量的变化

8. Molecular mechanism of the tolerance to flurazepam and reversal of tolerance with flumazenil in genetically epilepsy-prone rats

氟马西尼逆转惊厥易感大鼠氟西泮耐受性的分子机制

9. Flurazepam Dihydrochloride

盐酸氟胺安定

10. flurazepam hydrochloride

盐酸氟西泮, 盐酸氟安定, 盐酸氟胺安定

11. 5. Conclusion NO may play a role in rats tolerance and dependence to the anticonvulsant action of flurazepam.

结论NO可能是介导氟西泮抗痫耐受性和依赖性的因素之一。

12. In rats dependence to flurazepam, hippocampal nNOS increased but without statistical significance.

而对氟西泮抗痫依赖组则与对照组差别无统计学意义。

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