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Keyword [Ryanodine]
Result: 1 - 18 | Page: 1 of 1
1. Effects Of Zinc Ions And Divalent Cation's Chelators On Ryanodine Receptors Of Skeletal And Cardiac Muscle
2. Regulation Of Intracellular Calcium Homeostasis In Early Developing Cardiac Myocytes
3. Regulation Of Ca~(2+) Release Of Ryanodine Receptor In Situ In Rat Ventricular Myocytes
4. Effect And Mechanism Of Allopregnanolone On The Release Of Presynaptic Glutamate In Rat Medial Prefrontal Cortical Neurons
5. Cdc42 And RhoA Can Mediate Both Attractive And Repulsive Axon Guidance By Extracellular Factors
6. The Theoretical And Experimental Studies On The Intermolecular Coupling Between Membrane Receptors In Cellular Signaling
7. Roles Of I(f) And Intracellular Calcium Release In Pacemaking Of Murine Ventricular Cardiomyocytes During Embryonic Development
8. Non-nmda Receptor-dependent Ltp In Lead Damage Mechanisms And The Role Of Jnk1 In The Synaptic Plasticity In The Hippocampal Ca1 Region
9. Study On The Mechanisms Of Calcium's Effects On Spontaneous ACh Secretion From Isolated Myocytes
10. Study On The Modulation Of Naphthoquinon And Selenium Compounds To The Skeletal Type Ryanodine Receptor
11. The Electron Transfer Properties Effects Of Ryanodine Receptor Modulators On The Channel Proteins
12. The Effect Of Ca2+ Released From Ryanodine Receptor Typer 2 On SK2 Channel In MyoCardium Cells
13. The Structural-functional Research Of AhVTL-I And Four Kinds Of PLA2
14. Caffeine-induced Ca2+ Oscillations In Horizontal Cells Of Carp Retina And The Contribution Of The Store-operated Ca2+ Entry Pathway
15. Study On Effects Of RYR Channel With Its Regulators And Caveolin-1 In Skeletal Muscle Fibers Of Daurian Ground Squirrels (Spermophilus Dauricus) During Different Hibernation Periods
16. Study On The Expression Pattern Of RyR Protein And Its Regulatory Protein During Drosophila Development
17. Study On The Function Of Sarcoplasmic Reticulum Of Skeletal Muscle Fiber In Maintaining Intracellular Calcium Homeostasis In Hibernating Daurian Ground Squirrels
18. The effects of methionine oxidation on calmodulin structure, calcium binding, and ryanodine receptor binding mechanism
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