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原文連結
論文資訊
- 類型:已發表論文
- 日期:2004
摘要
We report a noise-induced delay of 分岔 leading to persistent synaptically sustained firing in a simple 神經 circuit. Two 神經 saddle-node oscillators are coupled with reciprocal excitatory synapses. Increasing synaptic current moves the circuit through a 分岔 into a bistable anti-phase regime. Applying a small random current to both neurons delays the onset of bistability. We analyse the phase plane for the various activity regimes and find that this noise induced mechansim can be related to the structure of asynchronous and synchronous activity states. (C) 2004 Elsevier B.V. All rights reserved.
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