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Amplitude and frequency feature extraction of neural activity in mouse ventrolateral striatum under different motivational states using fiber photometric system

机译:光纤光度法提取不同动机状态下小鼠腹侧纹状体神经活动的幅度和频率特征

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In this paper, we focused on the motivation of mice and aimed to extract neural activity features of D2 medium spiny neurons (D2-MSNs) in the ventrolateral striatum of mice under different motivational states. Motivated behavior is defined as the activation of goal-directed behavior, and this enables actions such as ingestion, sleeping and reproduction, which are essential for living. In human society, motivation allows us to participate in society, improving our quality of life. Loss of motivation has been causing problems such as withdrawal from society. If the symptom is heavy, it can even threaten our lives, and treatment is necessary. The mechanisms which lead to loss of motivation are yet to be understood, and an effective treatment does not exist. To solve these problems, we decided to find features in the neural activity which affect motivation, because understanding the mechanism may contribute to the establishment of treatment. In the experiment, the neural activity was recorded using gene-encoded ratio metric calcium ion (Ca2+) indicator and by constructing a fiber photometric system, which enabled recording of neural activity at specific brain region for specific type of neurons. While the recording took place, mice performed food-incentive leverpressing tasks, which were used to define motivational states. The experimental results show that both the amplitude and frequency components of Ca2+ fluctuation have features which are good predictors of motivational states.
机译:在本文中,我们集中在小鼠的动机上,旨在提取不同动机状态下小鼠腹侧纹状体中D2中等多刺神经元(D2-MSNs)的神经活动特征。动机行为被定义为目标导向行为的激活,这使诸如摄食,睡眠和生殖等对生活必不可少的行为成为可能。在人类社会中,动力使我们能够参与社会,改善我们的生活质量。失去动力已经引起了诸如退出社会之类的问题。如果症状严重,甚至可能威胁我们的生命,则必须进行治疗。导致动力丧失的机制尚待了解,并且不存在有效的治疗方法。为了解决这些问题,我们决定在神经活动中寻找影响动机的特征,因为了解这种机制可能有助于治疗的建立。在实验中,使用基因编码的比率度量钙离子(Ca 2 + )指标并通过构建纤维光度系统来记录神经活动,该系统可以记录特定大脑区域在特定神经区域的神经活动。神经元的类型。在进行记录的同时,小鼠执行了刺激食物的杠杆按压任务,这些任务被用来定义动机状态。实验结果表明,Ca 2 + 涨落的幅度和频率成分均具有良好的激励状态预测特征。

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