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ACQUISITION OF FEAR AND EXTINCTION IN THE LATERAL AMYGDALA - A Modeling Study

机译:在横向杏仁达拉中获取恐惧和灭绝 - 一种造型研究

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The lateral nucleus of amygdala (LA) is known to be a critical storage site for conditioned fear memory. Synaptic plasticity at auditory inputs to the dorsal LA (LAd) is critical for the formation and storage of auditory fear memories. Recent evidence suggests that two different cell populations (transient-and long-term plastic cells) are present in LAd and are responsible for fear learning. However, the mechanisms involved in the formation and storage of fear are not well understood. As an extension of previous work, a biologically realistic computational model of the LAd circuitry is developed to investigate these mechanisms. The network model consists of 52 LA pyramidal neurons and 13 interneurons. Auditory and somatosensory information reaches LA from both thalamic and cortical inputs. The model replicated the tone responses observed in the two LAd cell populations during conditioning and extinction. The model provides insights into the role of thalamic and cortical inputs in fear memory formation and storage.
机译:已知Amygdala(LA)的侧核是用于调节恐惧记忆的关键存储场所。对背部La(LAD)的听觉输入处的突触塑性对于接种和储存听觉恐惧记忆至关重要。最近的证据表明,LAD中存在两种不同的细胞群(瞬态和长期塑料细胞),并负责恐惧学习。然而,涉及形成和储存恐惧的机制也不太了解。作为先前工作的延伸,开发了LAD电路的生物学现实逼真的计算模型以研究这些机制。网络模型由52个La金字塔神经元和13个中间核组成。听觉和躯体感应信息来自丘脑和皮质输入的洛杉矶。该模型在调理和灭绝期间复制了两个小区小区群中观察到的音调响应。该模型为恐惧记忆形成和储存中的丘脑和皮质输入的角色提供了见解。

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