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排序方式: 共有118条查询结果,搜索用时 15 毫秒
1.
人体头部受撞击脑损伤界限的研究   总被引:2,自引:0,他引:2  
脑损伤的研究,是生物力学研究的重要问题之一,其研究涉及到医学、力学的很多方面。本文将承受撞击的颅脑看成一个整体,同时又考虑其结构和力学性质。采用粘弹性的Kelvin体进行计算分析,比较分析三种不同的判据对实际人脑的损伤的判断的影响。  相似文献   
2.
高校音乐教育的育人功能主要体现在对大学生的品德、智力、身心、审美等多方面的影响与熏陶,促进大学生德智体美全面发展。高校音乐教育要充分发挥其育人功能,必须坚持“以人为本”,树立音乐教育大教育观,强化“以学生为本”的教学理念,倡导“音乐生活”观。  相似文献   
3.
自从工业化时代以来,随着环境污染的日益加重,资源环境瓶颈约束加剧,人和自然和谐发展的问题日益提上了议程。建设节约型社会是人和自然和谐发展的有效途径,我们有必要从哲学角度出发来思考人和自然和谐发展,构建节约型社会的必要性,以及我们应该如何构建节约型社会。  相似文献   
4.
民用客机人机工效学适航认证及对策   总被引:1,自引:1,他引:1       下载免费PDF全文
分析民用客机人机工效学适航认证的特点和挑战,讨论国际适航当局、人机工效学学术界和航空工业界近些年来针对这些挑战所开展的一些研究和实践。结合参与国产民用客机研发的体会,对当前国产民用客机驾驶舱人机工效学型号适航认证的工作流程和方法提出建议,并对今后这方面工作的深入开展提出较为系统的框架性对策。  相似文献   
5.
随着飞机各系统可靠性的不断提高,人为失误逐渐成为系统失效或造成飞行事故的主要因素,已成为设计及适航审定部门关注的重难点问题.当前国内外对于如何验证人为因素是否满足相关适航条款的要求仍处于理论探索阶段.针对上述问题,基于CCAR-25部条款分析试飞阶段民用飞机人为因素适航审定过程,包括基于SHELL模型及T.E.S.T矩阵的人为因素审定条款筛选,基于MOC5&MOC6的试验机符合性验证方法,并基于模糊评判方法给出数据分析实例.本文提出的人为因素适航审定思路及验证方法具有一定创新性,已在试飞阶段ARJ21-700飞机上初步应用,可为后续C919等民用飞机人为因素设计和适航审定提供技术支持和方法保证.  相似文献   
6.
张翼  朱玉鹏  刘峥  黎湘 《宇航计测技术》2009,29(3):20-25,38
人体行走的雷达特征研究是近年发展起来的新的研究方向,基于雷达的人体目标探测在安全防护、灾害救援、生物力学和运动学研究等方面具有广阔的应用前景。人体走动时手和腿的摆动对回波信号产生调制,回波信号的微多普勒特征能精细地刻画体动规律,将有效地探测并估计人体的运动规律。主要研究人体上肢的雷达特征,首先以人体上肢的运动模型为基础,建立了其雷达回波模型,通过理论分析得到了参数估计的方法,通过广义Radon变换提取行人摆臂的微多普勒。最后通过仿真实验,验证了算法的有效性。  相似文献   
7.
本文主要对导致跑道侵入的人为因素进行研究分析,运用认知可靠性与失误分析法(CREAM)的认知模型建立跑道侵入风险评估模型,并以南苑机场为实例验证该模型的可靠性,计算出来的南苑机场发生跑道侵入事件的风险值较为合理,结果表明运用人的可靠性分析模型对跑道侵入的风险进行评估具有实用价值。  相似文献   
8.
针对复杂脑网络分析中网络结构变化阈值选择中没有公认的标准确定合适阈值这一问题,基于拓扑分析中的持续同调性理论,本文提出一种多尺度大脑网络建模分析方法,该方法在大脑全尺度距离范围之内,通过不断增加阈值,运用Rips过滤算法捕获网络的动态持续拓扑特征,并用条形码和持续图对拓扑特征可视化,最后通过计算持续图之间的Bottleneck距离和Wasserstein距离分析持续特征的稳定性。实验结果表明,该方法能更准确地提取大脑网络的拓扑结构特征并提高诊断分类的准确性。  相似文献   
9.
In accordance with the United Nations Outer Space Treaties [United Nations, Agreement Governing the Activities of States on the Moon and Other Celestial Bodies, UN doc A/RES/34/68, resolution 38/68 of December 1979], currently maintained and promulgated by the Committee on Space Research [COSPAR Planetary Protection Panel, Planetary Protection Policy accepted by the COSPAR Council and Bureau, 20 October 2002, amended 24 March 2005, http://www.cosparhq.org/scistr/PPPolicy.htm], missions exploring the Solar system must meet planetary protection requirements. Planetary protection aims to protect celestial bodies from terrestrial contamination and to protect the Earth environment from potential biological contamination carried by returned samples or space systems that have been in contact with an extraterrestrial environment. From an exobiology perspective, Mars is one of the major targets, and several missions are currently in operation, in transit, or scheduled for its exploration. Some of them include payloads dedicated to the detection of life or traces of life. The next step, over the coming years, will be to return samples from Mars to Earth, with a view to increasing our knowledge in preparation for the first manned mission that is likely to take place within the next few decades. Robotic missions to Mars shall meet planetary protection specifications, currently well documented, and planetary protection programs are implemented in a very reliable manner given that experience in the field spans some 40 years. With regards to sample return missions, a set of stringent requirements has been approved by COSPAR [COSPAR Planetary Protection Panel, Planetary Protection Policy accepted by the COSPAR Council and Bureau, 20 October 2002, amended 24 March 2005, http://www.cosparhq.org/scistr/PPPolicy.htm], and technical challenges must now be overcome in order to preserve the Earth’s biosphere from any eventual contamination risk. In addition to the human dimension of the mission, sending astronauts to Mars will entail meeting all these constraints. Astronauts present huge sources of contamination for Mars and are also potential carriers of biohazardous material on their return to Earth. If they were to have the misfortune of being contaminated, they themselves would become a biohazard, and, as a consequence, in addition to the technical constraints, human and ethical considerations must also be taken into account.  相似文献   
10.
The aim of this study was to estimate the acute effects of low dose 12C6+ ions or X-ray radiation on human immune function. The human peripheral blood lymphocytes (HPBL) of seven healthy donors were exposed to 0.05 Gy 12C6+ ions or X-ray radiation and cell responses were measured at 24 h after exposure. The cytotoxic activities of HPBL were determined by 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl tetrazolium bromide (MTT); the percentages of T and NK cells subsets were detected by flow cytometry; mRNA expression of interleukin (IL)-2, tumor necrosis factor (TNF)-α and interferon (IFN)-γ were examined by real time quantitative RT-PCR (qRT-PCR); and these cytokines protein levels in supernatant of cultured cells were assayed by enzyme-linked immunosorbent assays (ELISA). The results showed that the cytotoxic activity of HPBL, mRNA expression of IL-2, IFN-γ and TNF-α in HPBL and their protein levels in supernatant were significantly increased at 24 h after exposure to 0.05 Gy 12C6+ ions radiation and the effects were stronger than observed for X-ray exposure. However, there was no significant change in the percentage of T and NK cells subsets of HPBL. These results suggested that 0.05 Gy high linear energy transfer (LET) 12C6+ radiation was a more effective approach to host immune enhancement than that of low LET X-ray. We conclude that cytokines production might be used as sensitive indicators of acute response to LDI.  相似文献   
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