TY - JOUR
T1 - The dynamical role of electromagnetic induction in epileptic seizures
T2 - a double-edged sword
AU - Zhao, Jinyi
AU - Wang, Qingyun
N1 - Publisher Copyright:
© 2021, The Author(s), under exclusive licence to Springer Nature B.V.
PY - 2021/9
Y1 - 2021/9
N2 - The important role of electromagnetic induction in neuronal activities has received considerable attention. However, its connection with epilepsy disease is rarely explored, especially the related dynamical mechanisms have not been fully investigated. In this paper, with the help of the magnetic flux variable, an improved Taylor model considering electromagnetic induction is proposed. Based on this model, we separately study the effect of the excitatory projection (c3) from the pyramidal neuronal population (PY) to the specific relay nucleus (SRN) and the inhibitory projection (c9) from the thalamic reticular nucleus (TRN) to the specific relay nucleus (SRN) on the epileptogenesis under electromagnetic induction. The results show that electromagnetic induction is a double-edged sword. On the one hand, 2-SWDs are triggered to help expand the seizure area caused by c3. On the other hand, it has a certain elimination effect on seizures induced by c9. More importantly, the internal bifurcation mechanism of dynamical transitions has been revealed, in which 2-SWDs is induced by fold of cycles or ‘ghost’ bifurcations, and the expansion of the oscillating (resting) monostable region leads to aggravation (partial elimination) of absence seizures. Our results might contribute to understanding the role of endogenous magnetic fields in epileptic seizures.
AB - The important role of electromagnetic induction in neuronal activities has received considerable attention. However, its connection with epilepsy disease is rarely explored, especially the related dynamical mechanisms have not been fully investigated. In this paper, with the help of the magnetic flux variable, an improved Taylor model considering electromagnetic induction is proposed. Based on this model, we separately study the effect of the excitatory projection (c3) from the pyramidal neuronal population (PY) to the specific relay nucleus (SRN) and the inhibitory projection (c9) from the thalamic reticular nucleus (TRN) to the specific relay nucleus (SRN) on the epileptogenesis under electromagnetic induction. The results show that electromagnetic induction is a double-edged sword. On the one hand, 2-SWDs are triggered to help expand the seizure area caused by c3. On the other hand, it has a certain elimination effect on seizures induced by c9. More importantly, the internal bifurcation mechanism of dynamical transitions has been revealed, in which 2-SWDs is induced by fold of cycles or ‘ghost’ bifurcations, and the expansion of the oscillating (resting) monostable region leads to aggravation (partial elimination) of absence seizures. Our results might contribute to understanding the role of endogenous magnetic fields in epileptic seizures.
KW - Absence epilepsy
KW - Bifurcation
KW - Dynamical transitions
KW - Electromagnetic induction
KW - Magnetic flow
UR - https://www.scopus.com/pages/publications/85114115681
U2 - 10.1007/s11071-021-06855-9
DO - 10.1007/s11071-021-06855-9
M3 - 文章
AN - SCOPUS:85114115681
SN - 0924-090X
VL - 106
SP - 975
EP - 988
JO - Nonlinear Dynamics
JF - Nonlinear Dynamics
IS - 1
ER -