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1. Inositol 1,4,5-Trisphosphate Receptor 1 Gain-of-Function Increases the Risk for Cardiac Arrhythmias in Mice and Humans

4. Foxp3-mediated blockage of ryanodine receptor 2 underlies contact-based suppression by regulatory T cells

9. Linking the heart and the brain: Neurodevelopmental disorders in patients with catecholaminergic polymorphic ventricular tachycardia

11. Pathogenic mechanism of a catecholaminergic polymorphic ventricular tachycardia causing-mutation in cardiac calcium release channel RyR2

16. RyR2 C-terminal Truncating Variants Identified in Patients with Arrhythmic Phenotypes Exert a Dominant Negative Effect through Formation of Wildtype-truncation Heteromers

17. Increased Ca 2+ Transient Underlies RyR2-Related Left Ventricular Noncompaction

18. RyR2 serine-2030 PKA site governs Ca2+release termination and Ca2+alternans

19. Beta-blocker treatment of patients with atrial fibrillation attenuates spontaneous calcium release-induced electrical activity

40. Provocation Testing and Therapeutic Response in a Newly Described Channelopathy: RyR2 Calcium Release Deficiency Syndrome

43. Human RyR2 (Ryanodine Receptor 2) Loss-of-Function Mutations

44. Carvedilol and its new analogs suppress arrhythmogenic store overload-induced [Ca.sup.2+] release

46. B-PO04-022 CLINICAL AND FUNCTIONAL CHARACTERIZATION OF RYR2 VARIANTS IMPLICATED IN CALCIUM RELEASE DEFICIENCY SYNDROME: AN INTERNATIONAL MULTICENTER STUDY

47. Study on Stability Improvement of Suspension Bridge with High-Sided Vehicles under Wind using Tuned-Liquid-Damper

50. Loss of luminal [Ca.sup.+] activation in the cardiac ryanodine receptor is associated with ventricular fibrillation and sudden death

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