首页> 外文会议>International astronautical congress >THE STUDY ON EFFECT OF NEURONS IN SPACE FLIGHT AND CONDITIONS ON BRAIN/NEURONAL PLASTICITY AND CONNECTIVITY CELLS
【24h】

THE STUDY ON EFFECT OF NEURONS IN SPACE FLIGHT AND CONDITIONS ON BRAIN/NEURONAL PLASTICITY AND CONNECTIVITY CELLS

机译:空间飞行中的神经元和条件对脑/神经可塑性和连通性细胞的影响

获取原文

摘要

Notion Neuro Lab researches new concerns related to human health risks that occur during spaceflight arc studied and discussed. To develop appropriate countermeasures number of experiments has been performed to determine biological effect of space condition on human body. NASA and other space faring nations are into extensive investigations to still studying the physiological and psychological tests before considering long-term spaceflights for humans towards other mars moons and other planetary exploration. During the experimentation it has been learned from studies human movement and oriental control in weightless conditions. We stress that when astronauts and cosmonauts return from extended space flight they do so with both physical plan and neural controller structurally and functionally altered. It has been observed that in micro-gravity that in weightlessness conditions equilibrium sensory organs such as eyes, head, arms, legs and whole posture movements thus transmitting misleading inputs to the nervous system. The cosmic radiations are known to induce oxidative stress as well as genomic and brain damage. Our research paper studies a simultaneous microgravity and radiant exposures as neuron network model for space conditions and develops various experimental methods to analyze their combined and specific effect on vitro neuronal brain network model. Here primary neuronal network culture are established and exposed to computer generated/simulated space conditions to investigate neuronal remodeling as well as genomic repair/damage dynamics. This thesis studies and emphasizes on neuro plasticity and connectivity during the effect of space conditions. Notion labs deeply emphasizes on the work and analyses neural network modeling during spaceflight and thus bringing a strategies again these effects. This study would bring in new frontier in mankind for exploration thus a new science exploration and technology in the field of cognitive neurosciencc.
机译:概念神经实验室研究和讨论了与航天飞行过程中发生的与人类健康风险相关的新问题。为了制定适当的对策,已经进行了许多实验以确定空间条件对人体的生物学影响。美国宇航局和其他太空飞行国家正在进行广泛的调查,以继续研究生理和心理测试,然后再考虑对人类进行长期太空飞行以进行其他火星卫星和其他行星探索。在实验过程中,它是通过研究失重条件下的人体运动和东方控制来学习的。我们强调,当宇航员和宇航员从扩大的太空飞行中返回时,他们这样做的物理计划和神经控制器在结构和功能上都发生了变化。已经观察到,在微重力作用下,失重条件下会平衡感觉器官,例如眼睛,头部,手臂,腿部和整个姿势运动,从而将误导性的输入传递给神经系统。已知宇宙射线会引起氧化应激以及基因组和脑部损伤。我们的研究论文研究了同时存在的微重力和辐射暴露,作为空间条件下的神经元网络模型,并开发了各种实验方法来分析它们对体外神经元脑网络模型的综合和特异性影响。这里建立了主要的神经元网络文化,并将其暴露于计算机生成/模拟的空间条件下,以研究神经元重塑以及基因组修复/破坏动力学。本文研究并强调了空间条件影响下的神经可塑性和连通性。概念实验室深深地强调了这项工作,并分析了太空飞行过程中的神经网络建模,因此再次提出了应对这些影响的策略。这项研究将为人类探索提供新的领域,从而为认知神经科学领域提供一种新的科学探索和技术。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号