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Bifurcations and enhancement of neuronal firing induced by negative feedback

机译:负反馈引起的神经元分叉和增强

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摘要

Bifurcations and enhancement of neuronal firing induced by negative feedback from an inhibitory autapse are investigated. A slow inhibitory autapse model that can exhibit dynamics similar to the inhibitory autapse of a rat interneuron is considered. Compared with a Morris-Lecar (ML) model without an autapse, enlargement of the parameter region of firing activities in the ML model with a slow inhibitory autapse can be identified with 1-parameter and 2-parameter bifurcations and is induced by a shift of an inverse Hopf bifurcation point. The right shift of the inverse Hopf bifurcation point from firing to resting state with a high membrane potential level causes the resting state in the ML model without an autapse to change to firing in the ML model with an autapse. This shows that the autapse can enhance neuronal firing and can be well interpreted by the dynamic responses of the resting state to inhibitory impulse current. In addition, many complex dynamics such as coexisting behaviors and codimension-2 bifurcations are also induced, and the relationship between the inverse Hopf bifurcation point and a physiological concept, depolarization block, a phenomenon in which a neuron enters from firing to resting state when it receives excessive excitatory or depolarizing current, is discussed. The results provide a novel viewpoint that the inhibitory autapse enhances rather than suppresses neuronal firing near the inverse Hopf bifurcation point, which is an important example showing that negative feedback can play a positive role in nonlinear dynamics.
机译:研究了抑制性自足症的负反馈引起的神经元放电的分叉和增强。考虑可以表现出与大鼠中间神经元的抑制性自发相似的动力学的慢速抑制性自发模型。与没有自闭症的Morris-Lecar(ML)模型相比,具有缓慢抑制性自闭症的ML模型中射击活动的参数区域扩大可以通过1参数分叉和2参数分叉来识别,并且可以通过以下方式引起逆Hopf分叉点。 Hopf逆分叉点的右移从激发到具有高膜电位的静止状态会导致ML模型中没有固定的静止状态转变为ML模型中具有固定的发射。这表明,autapse可以增强神经元的放电,并且可以由静止状态对抑制性脉冲电流的动态响应很好地解释。此外,还诱发了许多复杂的动力学,例如共存行为和codimension-2分叉,并且逆Hopf分叉点与生理学概念,去极化阻滞之间的关系也是如此,在这种现象中,神经元从激发时进入放电状态就进入了静止状态。讨论了接收过大的励磁电流或去极化电流。结果提供了一个新的观点,即抑制性自发增强而不是抑制霍普夫逆分叉点附近的神经元放电,这是一个重要的例子,表明负反馈可以在非线性动力学中发挥积极作用。

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