Modern Perspectives on Numerical Modeling of Cardiac Pacemaker Cell
スポンサーリンク
概要
- 論文の詳細を見る
Cardiac pacemaking is a complex phenomenon that is still not completely understood. Together with experimental studies, numerical modeling has been traditionally used to acquire mechanistic insights in this research area. This review summarizes the present state of numerical modeling of the cardiac pacemaker, including approaches to resolve present paradoxes and controversies. Specifically we discuss the requirement for realistic modeling to consider symmetrical importance of both intracellular and cell membrane processes (within a recent "coupled-clock" theory). Promising future developments of the complex pacemaker system models include the introduction of local calcium control, mitochondria function, and biochemical regulation of protein phosphorylation and cAMP production. Modern numerical and theoretical methods such as multi-parameter sensitivity analyses within extended populations of models and bifurcation analyses are also important for the definition of the most realistic parameters that describe a robust, yet simultaneously flexible operation of the coupled-clock pacemaker cell system. The systems approach to exploring cardiac pacemaker function will guide development of new therapies such as biological pacemakers for treating insufficient cardiac pacemaker function that becomes especially prevalent with advancing age.
- 公益社団法人 日本薬理学会の論文
公益社団法人 日本薬理学会 | 論文
- Neurotoxin A2NTX Blocks Fast Inhibitory and Excitatory Transmitter Release From Presynaptic Terminals
- Loxiglumide, L - 364,718 and L - 365,260 Prevent the Inhibition of Spontaneous Acetylcholine Release from the Frontal Cerecral Cortex of Freely Moving Rat Peripherally Administered with Cholecystokinin - 8S
- A new device for the determination of microsomal cytochrome P-450 in renal tissue preparations from various species contaminated with mitochondria and hemoglobin.
- Leukocyte Recruitment to Peritoneal Cavity of Rats Following Formalin Injection : Role of Tachykinin Receptors
- Immunopharmacologic studies of D-penicillamine-L-cysteine disulfide.