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首页> 外文期刊>Physiological Research >Pathological changes in the central nervous system following exposure to ionizing radiation.
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Pathological changes in the central nervous system following exposure to ionizing radiation.

机译:暴露于电离辐射后中枢神经系统的病理变化。

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Experimental studies in animals provide relevant knowledge about pathogenesis of radiation-induced injury to the central nervous system. Radiation-induced injury can alter neuronal, glial cell population, brain vasculature and may lead to molecular, cellular and functional consequences. Regarding to its fundamental role in the formation of new memories, spatial navigation and adult neurogenesis, the majority of studies have focused on the hippocampus. Most recent findings in cranial radiotherapy revealed that hippocampal avoidance prevents radiation-induced cognitive impairment of patients with brain primary tumors and metastases. However, numerous preclinical studies have shown that this problem is more complex. Regarding the fact, that the radiation-induced cognitive impairment reflects hippocampal and non-hippocampal compartments, it is highly important to investigate molecular, cellular and functional changes in different brain regions and their integration at clinically relevant doses and schedules. Here, we provide a literature review in order support the translation of preclinical findings to clinical practice and improve the physical and mental status of patients with brain tumors.
机译:动物的实验研究提供了关于辐射诱导损伤对中枢神经系统的损伤的相关知识。辐射诱导的损伤可以改变神经元,胶质细胞群,脑脉管系统,可能导致分子,细胞和功能后果。关于其在形成新的记忆,空间导航和成人神经发生的基本作用,大多数研究都集中在海马上。最近在颅放射治疗中发现显示海马避免阻止辐射诱导的脑原发性肿瘤和转移患者的认知障碍。然而,许多临床前研究表明这个问题更复杂。关于辐射诱导的认知障碍反映了海马和非海马隔室,对不同脑区的分子,细胞和功能变化以及在临床相关剂量和时间表中的整合非常重要。在这里,我们提供了一个文献综述,以支持临床实践翻译临床实践,提高脑肿瘤患者的身心状况。

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