Detection of the change in characteristics of self-grooming by the neural network in the latent period of the Rat Kainate Epilepsy model

Hirofumi Arai, Masaya Shigemoto, K. Natsume
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引用次数: 1

Abstract

It is widely hypothesized that there is a seizure-free state, termed the “latent period,” between brain injury and the onset of symptomatic epilepsy. During the latent period, structural and functional alterations gradually mediate epileptogenesis. Kainate (KA) induces epilepsy in rats in a manner similar to that induced by human epilepsy. During the model's latent period, rats administered KA-exhibited innate behaviour such as self-grooming. We previously reported that self-grooming bouts are facilitated during the latent period in this model. Here, we investigated self-grooming changes during the latent period of the KA rat model. We analysed various parameters of self-grooming – including duration, number, and percentage of correct transitions (CT%). Self-grooming bouts included a syntactic chain consisting of CT. CT% was defined as the ratio of the number of CT scans to the total number of transitions. The results showed that CT%, number, and duration were significantly increased during the latent period in KA rats. We attempted to mine the features that detect the latent period using a neural network. Our results suggest that the CT% of self-grooming will detect changes in the latent period in the KA rat epilepsy model.
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神经网络检测大鼠癫痫模型潜伏期自我梳理特征的变化
人们普遍假设,在脑损伤和症状性癫痫发作之间存在一段无癫痫发作的状态,称为“潜伏期”。在潜伏期,结构和功能的改变逐渐介导癫痫发生。Kainate (KA)诱导大鼠癫痫的方式与人类癫痫相似。在模型潜伏期,给予ka的大鼠表现出自我梳理等先天行为。我们以前报道过,在这个模型中,自我梳理的发作在潜伏期更容易。在此,我们研究了KA大鼠模型潜伏期的自我梳理变化。我们分析了自我修饰的各种参数-包括持续时间,数量和正确转换的百分比(CT%)。自我梳理包括一个由CT组成的句法链。CT%定义为CT扫描次数与总转换次数之比。结果显示,KA大鼠潜伏期CT%、数量、持续时间均显著增加。我们尝试使用神经网络来挖掘检测潜伏期的特征。我们的结果表明,自我梳理的CT%可以检测KA大鼠癫痫模型潜伏期的变化。
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