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Automated Quantification and Simulation of Hippocampal Images Treated with Kainic Acid from Rat Brain Slices

机译:大鼠脑切片酸性酸处理的海马图像自动化量化和仿真

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In the animal models, Kainic acid (KA) has been commonly used in inducing epilepsy especially Temporal lobe epilepsy (TLE) which is more common in adult human. Following administration of KA, there are several biochemical, mitochondrial and neuronal dysfunctional changes occurred in many brain regions including hippocampus and its sub region namely CA1, CA3 and in the dentate gyrus (DG). some dysfunctional changes can be studied and quantified by histopathological methods. This study aimed to quantify the microscopic images stained with hematoxylin and eosin (H&E) after treated with KA in different concentrations. Following analysis, the neurodegenerative changes induced by higher concentrations of KA showed significantly different in its Feret diameter, shape descriptors and integrated density compared to lower dose of KA. In order to optimize the KA induced neurodegeneration a model with simulation study is necessary to improve the KA doses and treatment duration, which might be helpful to save the time.
机译:在动物模型中,Kainic acid(Ka)常用于诱导癫痫尤其是颞叶癫痫(TLE),其在成年人中更常见。在KA施用后,许多脑区域发生了几种生物化学,线粒体和神经元功能障碍变化,包括海马及其亚区,即Ca1,Ca 3和牙齿转象(DG)。通过组织病理学方法可以研究和量化一些功能失调的变化。该研究旨在通过在不同浓度的Ka处理后量化用苏木精和曙红(H&E)染色的微观图像。在分析之后,与较低剂量的Ka相比,通过较高浓度的Ka诱导的浓度Ka诱导的神经变性变化显示出明显不同。为了优化KA诱导的神经变性,具有仿真研究的模型是为了改善KA剂量和治疗持续时间,这可能有助于节省时间。

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