• RAP can induce calcium overload in atrial myocyte.

    快速心房起搏可导致细胞内钙离子超载。

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  • It is often related with increasing oxygen free radical, calcium overload and cell apoptosis.

    缺血预适应现象与再灌注后氧自由基生成增多、细胞内钙超载、细胞凋亡等有关。

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  • AIM: Flunarizine is a blocker for calcium overload of cells, which could pass blood brain barrier.

    目的:氟桂利嗪是通过血脑屏障的细胞钙超载阻滞剂。

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  • "Calcium overload" is the key to electrical remodeling, atrial fibrillation and may also be an important basis for continuing.

    “钙超载”是心肌细胞电重构的关键,也可能是房颤发生并持续的重要基础。

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  • Conclusion: the calcium overload and free radical injury were correlated with brain ischemia reperfusion injury in the aged rats.

    结论:老龄大鼠脑缺血再灌注脑组织损伤与钙超载和自由基损伤有关。

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  • Calcium overload is the final pathway of myocardial ischemia reperfusion injury, but the concrete mechanism needs further research.

    钙超载是心肌缺血再灌注不可逆损伤的最后通路,但其具体作用途径有待于进一步研究。

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  • Objective to study whether the calcium channel blockers can alleviate calcium overload to protect liver function during cold storage.

    目的研究钙通道阻滞剂是否减轻低温保存下肝细胞的钙超载并起到保护肝脏的作用。

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  • AIM: To study the effect of extrogenous low concentration polyamine on cardiomyocyte calcium overload caused by anoxia and reoxygenation.

    目的:观察外源性低浓度多胺对大鼠缺氧-复氧心肌细胞钙超载的影响。

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  • Being used prophylactically, nimodipine can prevent or relieve calcium overload, and can also protect membrane pump activities of cell membrane.

    预防性应用尼莫地平可阻滞或减轻细胞内钙超载,同时还可保护细胞膜膜泵活性。

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  • Conclusion: Jianxin mixture has a protective effect on myocardial ischemia injury in the rats, which is due to its inhibition of calcium overload.

    结论:健心合剂对大鼠心肌缺血损伤具有保护作用,其机理可能与钙超载有关。

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  • Conclusion: Trigger activity or increased automaticity is one of mechanisms of reperfusion arrhythmia, and calcium overload plays an important role.

    结论:触发或自律性异常是再灌注心律失常的发生机制,钙离子超负荷发挥作用。

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  • Objectives: To study the inhibition and mechanisms of n-butanol fraction of Potentilla anserine L. against hypoxia -induced calcium overload in myocardial cells.

    目的:研究蕨麻正丁醇部位对大鼠心肌细胞缺氧所致钙超载的抑制作用,并探讨其可能的机制。

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  • The results have shown that structural changes of mitochondria are very mild. Main pathologic changes are the increase of membrane permeability and calcium overload.

    结果表明,线粒体结构变化极轻,主要病变是膜通透性增高和钙超载。

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  • Conclusions Fosinopril could not only prevent and treat myocardial hypertrophy, but also could maintain the functions of SERCA and prevent myocardial calcium overload.

    结论福辛普利不仅能防治心肌肥厚,而且能保护肌浆网钙泵功能,防止心肌钙超载损伤。

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  • Although the pathogenesis of HIRI has not been completely understood, most of scholars believe that HIRI is related to free oxygen radicals and calcium overload, et al.

    HIRI的确切机制目前尚不完全清楚,多数学者认为与氧自由基及钙离子超载等因素有关。

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  • Objective to investigate the potential of pancreatic acinar cell calcium overload in the conversion of acute edematous pancreatitis (AEP) to necrotizing pancreatitis (ANP).

    目的研究急性水肿性胰腺炎(AEP)向坏死性胰腺炎(ANP)转变中胰腺腺泡细胞钙超负荷情况。

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  • Results the mitochondrion plays an crucial role in the processes of energy burn-out, free radical formation, calcium overload and cells apoptosis during myocardial ischemia-reperfusion.

    结果心肌缺血-再灌注时能量耗竭、自由基形成、钙超载、细胞凋亡等过程中线粒体发挥重要的作用。

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  • Conclusion There is calcium overload in dog atrial muscle cell of chronic atrial remodeling hinting that calcium overload is involved in the molecular mechanism of chronic atrial remodeling.

    结论慢性心房重构犬心房肌细胞存在钙超载,提示钙超负荷是慢性心房重构分子机制。

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  • Multiple factors cause retinal ischemia-reperfusion injury, including the injury effect of oxygen-derived free radicals, intracellular calcium overload, the action of leucocyte and apoptosis.

    视网膜缺血再灌注损伤是多因素综合作用的结果,主要包括氧自由基的损伤作用,细胞内的钙超载现象,白细胞作用以及细胞凋亡等。

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  • Conclusion the mechanism of puerarin reducing the overload of calcium in HUVECs may be related with blocking both voltage-dependent calcium channels and the release of calcium pool in endoplasm.

    结论葛根素可以缓解培养人脐静脉内皮细胞内钙超载,其作用机制可能与拮抗膜上电压依赖型钙通道和抑制内质网钙库释放有关。

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  • Conclusion the mechanism of puerarin reducing the overload of calcium in HUVECs may be related with blocking both voltage-dependent calcium channels and the release of calcium pool in endoplasm.

    结论葛根素可以缓解培养人脐静脉内皮细胞内钙超载,其作用机制可能与拮抗膜上电压依赖型钙通道和抑制内质网钙库释放有关。

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