Phase resetting in a model of sinoatrial nodal membrane: ionic and topological aspects.
نویسندگان
چکیده
We describe the phase-resetting effect of injecting an isolated current pulse in an ionic model of a single cell of the sinoatrial node. Delivery of a depolarizing pulse early (late) in the cycle results in a prolongation (abbreviation) of the cycle length. With a hyperpolarizing pulse, the effect is reversed. We determine the topological type or degree of phase resetting in two ways: 1) by analyzing interbeat intervals extracted from the voltage waveform, and 2) by analyzing the waveform, not only of the voltage, but of all the activation and inactivation variables. The two methods give similar results. At low (high) pulse amplitudes, there is type 1 (0) phase resetting. When type 1 phase resetting occurs, the new phase is a monotonically increasing function of the old phase at sufficiently low stimulus amplitudes, whereas at higher stimulus amplitudes it is not. Leading roles in generating phase resetting are attributed to the slow inward current and to the leakage current. Comparison is made with experimental phase-resetting findings in the sinoatrial node and other cardiac oscillators. Implications for unidirectional and bidirectional synchronization are also sketched out.
منابع مشابه
Phase response characteristics of sinoatrial node cells
In this work, the dynamic response of the sinoatrial node (SAN), the natural pacemaker of the heart, to short external stimuli is investigated using the Zhang et al. model. The model equations are solved twice for the central cell and for the peripheral cell. A short current pulse is applied to reset the spontaneous rhythmic activity of the single sinoatrial node cell. Depending on the stimulus...
متن کاملSingle Sinus Nodal Cells
The phase-resetting and entrainment properties of single pacemaker cells were studied using computer simulations in a model of the rabbit sinus nodal cell, as well as using the whole-cell patch-clamp (current-clamp) technique in isolated rabbit sinus nodal cells. Spontaneous electrical activity in the cell model was reconstructed using Hodgkin-Huxley-type equations describing timeand voltage-de...
متن کاملPhase-locking behaviors in an ionic model of sinoatrial node cell and tissue.
Phase-locking behaviors in sinoatrial node (SAN) are closely related to cardiac arrhythmias. An ionic model considering structural heterogeneity of SAN is numerically investigated. The bifurcations between phase-locking zones are interpreted by the map derived from the phase resetting curve. Furthermore, the validity of the circle map in describing phase locking of the actual SAN system is eval...
متن کاملAbstract-Papers up to 4 pages should be submitted using this format
Phase resetting of cells in response to a brief current pulse has been observed in a variety of nervous tissues including cardiac cells. External stimulation of the sinoatrial node is due to largely positive currents, depolarising the cells, except for some ACh interactions. Factors influencing this include the timing of the current injection, its polarity, magnitude and duration. Both prolonga...
متن کاملAnionic/Non-ionic Surfactants in Aqueous Phase of Thin Film Composite Poly(Paraphenylene Terephthalamide) Nanofiltration Membranes
In this work, the Interfacial interfacial polymerization (IP) technique was employed using terephthaloyl chloride (TPC) and p-phenylenediamine (PPD), as reactant monomers, to prepare poly(paraphenylene terephthalamide) thin film composite (TFC) nanofiltration on polyethersulphone (PES) support layer. The effects of six different anionic and non-ionic surfactants, in the aqueous phase on the mor...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- The American journal of physiology
دوره 258 3 Pt 2 شماره
صفحات -
تاریخ انتشار 1990