Cao Ben, Gu Huaguang, Wang Runxia
School of Aerospace Engineering and Applied Mechanics, Tongji University, Shanghai, 200092 China.
Cogn Neurodyn. 2022 Oct;16(5):1163-1188. doi: 10.1007/s11571-021-09745-3. Epub 2021 Nov 15.
The forced oscillations of hair bundle of inner hair cells of auditory nervous system evoked by external force from steady state are related to the fast adaption of hair cells, which are very important for auditory amplification. In the present paper, comprehensive and deep understandings to nonlinear dynamics of forced oscillations are acquired in four aspects. Firstly, the complex dynamics underlying the twitch (fast recoil of displacement which is fast variable) induced from Case-1 and Case-2 steady states by external pulse force are obtained. With help of vector fields and nullclines, the phase trajectory of forced oscillations is identified to be an evolution process between two equilibrium points corresponding to zero force and pulse force, respectively, and then the twitch is obtained as the behavior running along the nonlinear part of -nullcline. Especially, twitch observed in experiment are classified into 6 types, which are induced by negative change of force, negative and positive changes of force, and positive change of force, respectively, and further build relationships to three subcases of Case-2 steady state with N-shaped -nullcline (equilibrium point locates on the left, middle, and right branches of -nullcline, respectively). Secondly, the experimental observation of fatigue of twitch induced by continual two pulse forces, i.e. the reduced amplitude of the latter twitch when interval between two forces is short, is also explained as a nonlinear behavior beginning from an initial value different from that of the former one. Thirdly, the experimental observation of transition between sustained oscillations and steady state induced by pulse force can be simulated for Case-1 steady state with Z-shaped -nullcline instead of Case-2, due to that there exists bifurcations with respect to external force for Case-1 while no bifurcations for Case-2. Last, the threshold phenomenon induced by simple pulse stimulation exists for Case-1 steady state rather than Case-2, due to that the upper and lower branches of Z-shaped -nullcline close to the middle branch exhibit coexisting behaviors of variable while N-shaped -nullcline does not. The nonlinear dynamics of forced oscillations are helpful for explanations to the complex experimental observations, which presents potential measures to modulate the functions of twitch such as the fast adaption.
听觉神经系统内毛细胞毛束在外力作用下从稳态诱发的强迫振荡与毛细胞的快速适应有关,这对听觉放大非常重要。本文从四个方面对强迫振荡的非线性动力学有了全面而深入的理解。首先,获得了由外部脉冲力从情况1和情况2稳态诱发的抽搐(位移的快速回弹,是快速变量)背后的复杂动力学。借助向量场和零倾线,强迫振荡的相轨迹被确定为分别对应于零力和脉冲力的两个平衡点之间的演化过程,然后抽搐被视为沿零倾线非线性部分运行的行为。特别地,实验中观察到的抽搐分为6种类型,分别由力的负变化、力的正负变化以及力的正变化诱发,并进一步与具有N形零倾线的情况2稳态的三个子情况建立关系(平衡点分别位于零倾线的左、中、右分支上)。其次,对连续两个脉冲力诱发的抽搐疲劳的实验观察,即当两个力之间的间隔短时后一个抽搐的幅度减小,也被解释为从与前一个不同的初始值开始的非线性行为。第三,对于具有Z形零倾线的情况1稳态,可以模拟由脉冲力诱发的持续振荡和稳态之间的转变,而不是情况2,因为情况1存在关于外力的分岔而情况2不存在。最后,情况1稳态存在由简单脉冲刺激诱发的阈值现象而情况2不存在,因为靠近中间分支的Z形零倾线的上下分支表现出变量的共存行为而N形零倾线则没有。强迫振荡的非线性动力学有助于解释复杂的实验观察结果,这为调节抽搐功能如快速适应提供了潜在措施。