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中枢神经系统的新放射生物学原理源于太空辐射研究
Richard A Britten1, Charles L Limoli2
1EVMS Radiation Oncology, Eastern Virginia Medical School, Norfolk, VA 23507, USA.
Life (Basel, Switzerland)
|June 28, 2023
概括
深空辐射 (SR) 在低剂量下意外导致认知缺陷,挑战了对大脑的先前放射生物学的原则. 新的模型专注于功能损失而不是细胞杀死,以了解这些神经认知障碍.
科学领域:
- 神经科学是一个神经科学.
- 放射生物学的放射生物学
- 太空医学 太空医学
背景情况:
- 大脑被认为是抗辐射的,损伤通常在60 Gy以上.
- 星际任务需要评估深空辐射 (SR) 的风险,火星任务估计约为300mGy.
- 生物有效的SR剂量明显低于先前确定的神经损伤值.
研究的目的:
- 审查关于低剂量SR诱导的认知缺陷的研究结果.
- 讨论理解大脑放射生物学的范式转变.
- 探索宇航员和癌症患者神经认知障碍的影响.
主要方法:
- 审查NASA资助的关于太空辐射影响的研究.
- 对应低剂量SR的认知功能变化的分析.
- 对脑损伤的放射生物模型的检查.
主要成果:
- 低剂量的SR (<250mGy) 始终会诱导认知缺陷.
- 这与传统的观点相矛盾,认为大脑是一种反应迟缓,抗辐射的器官.
- 这些发现需要从细胞杀死模型转向功能丧失模型.
结论:
- 在与太空旅行相关的剂量下,SR对认知功能构成重大风险.
- 需要新的放射生物学原理来理解SR诱导的神经毒性.
- 了解SR对神经认知的影响可能有助于治疗癌症患者的辐射诱导认知障碍.
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