目的:探讨缺血预处置及磷酸肌酸对·oh的影响。
AIM: To study the effect of ischemia preconditioning and phosphocreatine on the · OH formation.
认为磷酸肌酸作为肌肉收缩直接能源的观点,流行了不过数年。
The view that phosphocreatine was the direct source of energy for muscular contraction lasted only a few years.
目的观察外源性磷酸肌酸(CP)对缺血未成熟心肌的保护作用。
Objective To study the potential for enhancing ischemic immature myocardial protection by adding creatine phosphate (CP) to crystal cardioplegic solutions.
结论劳力型心绞痛患者PCI术后即刻给予外源性磷酸肌酸有助于减轻心肌损伤。
Conclusion The immediate exogenous phosphocreatinase given to the patients with effort angina can abate myocardial damage after PCI.
取骨骼肌测定三磷酸腺苷、二磷酸腺苷、一磷酸腺苷、磷酸肌酸含量和线粒体ATP酶活性。
The levels of ATP, ADP, AMP and activity of mitochondrial enzyme of skeletal muscles were measured respectively.
结论:FDP可增加急性冬眠心肌的磷酸肌酸含量,改善心肌舒张功能,对冬眠心肌起一定的保护作用。
Conclusions: the results suggest that FDP may be helpful to the acute hibernating myocardium by increasing the creatine phosphate content and improve the diastolic function.
磷酸肌酸一种有机化合物,C4H10N3O 5 P,常见于肌肉组织,可以为肌肉收缩存储和提供能量。
An organic compound, C4H10N3O5P, found in muscle tissue and capable of storing and providing energy for muscular contraction.
这本书对肌酸和磷酸肌酸是为对基本的科学背景感兴趣的那些设计的,以及内科医生治疗或者研究心脏和血管的疾病。
This book is designed for those interested in the basic scientific background to creatine and creatine phosphate, and also for physicians treating or studying heart and vascular disease.
结论常规纠正心衰治疗基础上加用磷酸肌酸,能有效促进风湿性心瓣膜病心表患者心功能恢复,缩短术前心功能调整时间。
Conclusion CP was shown to improve cardiac function in patients with congestive heart failure by rheumatic valvular disease, even in the presence of a conventional CHF pharmacologic therapy.
以上就是三种供能系统:磷酸肌酸系统、乳酸系统和有氧系统,它们工作的方式不同,却有着相同的目的—为工作的肌肉提供AT P。
So that's the three energy systems: ATP-PC, Lactic and Aerobic energy systems. All working in different ways, they all have the same purpose: to produce ATP for the working muscles.
以上就是三种供能系统:磷酸肌酸系统、乳酸系统和有氧系统,它们工作的方式不同,却有着相同的目的—为工作的肌肉提供AT P。
So that's the three energy systems: ATP-PC, Lactic and Aerobic energy systems. All working in different ways, they all have the same purpose: to produce ATP for the working muscles.
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