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首页> 外文期刊>Journal of Medical Imaging and Health Informatics >Study on the Neuroprotective Effect and Mechanism of RasGRP1 After Oxygen Deprivation and Reperfusion Based on Mutual Information and Artificial Neural Network
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Study on the Neuroprotective Effect and Mechanism of RasGRP1 After Oxygen Deprivation and Reperfusion Based on Mutual Information and Artificial Neural Network

机译:基于互信息和人工神经网络的氧剥夺和再灌注后RASGRP1神经保护作用及机制研究

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摘要

An artificial neural network (ANN) algorithm was developed and applied to predict ischemic tissue fate on three stroke groups: 30-, 60-minute, and permanent middle cerebral artery occlusion in rats. Cerebral blood flow (CBF), apparent diffusion coefficient (ADC), and spin-spin relaxation time constant (T2) were acquired during the acute phase up to 3 hours and again at 24 hours followed by histology. Our research mainly focused on the neuroprotective effect and mechanism of RasGRP1 after oxygen deprivation and reperfusion based on mutual information and ANN technique, and it is demonstrated that activation of phosphorylated nuclear transcription factor is caused by vasoconstriction aggravating ischemia and deficiency.
机译:开发了一种人工神经网络(ANN)算法,并应用于预测三次中风组的缺血组织命运:大鼠30-,60分钟和永久性中脑动脉闭塞。 在急性相期间,在急性相期间,在24小时后再次在急性期内获得脑血流(CBF),表观扩散系数(ADC)和旋转旋转弛豫时间常数(T2),然后再次进行组织学。 我们的研究主要集中在基于互信息和ANN技术的氧剥夺和再灌注后RASGRP1的神经保护作用和机制,并证明了磷酸化核转录因子的激活是由血管收缩加剧缺血和缺血引起的。

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