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儿科的临床科研伦理问题及其解决方案综述 被引量:4
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作者 郝婧如 臧云龙 +4 位作者 傅丽丽 弓晓皎 姚卜凡 张逸晨 吴一波 《中国医学伦理学》 2019年第1期132-138,共7页
临床科研中伦理问题受到广泛关注,尤其是患者数量多、医疗复杂性高的儿科。在知情同意中,做出同意的人在身份或能力上可能不适合而且知情不充分或者焦虑和压力等因素可能会影响其做出决定;在伦理审查中,儿科知情同意程序、儿童护理条件... 临床科研中伦理问题受到广泛关注,尤其是患者数量多、医疗复杂性高的儿科。在知情同意中,做出同意的人在身份或能力上可能不适合而且知情不充分或者焦虑和压力等因素可能会影响其做出决定;在伦理审查中,儿科知情同意程序、儿童护理条件、报销赔偿标准复杂而且部分伦理委员会对儿科的特殊性了解不深;在儿科伦理咨询中,有关信息少、利用不充分、地域差异大。知情同意中的问题可由使用双重同意程序或评估儿童是否具有同意能力、研究员与做出同意的人沟通并强调风险并在特殊情况下使用延期同意解决;伦理审查中的问题可由建立中央伦理委员会并与社会伦理委员会合作、建立规范并进行培训解决;伦理咨询中的问题可由使用电子咨询、制定伦理咨询程序解决。 展开更多
关键词 临床科研伦理 知情同意 伦理审查 伦理咨询 儿科
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Gravitational wave astronomy: the current status 被引量:4
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作者 BLAIR David JU Li +37 位作者 ZHAO ChunNong WEN LinQing CHU Qi FANG Qi CAI RongGen GAO JiangRui LIN XueChun LIU Dong WU Ling-An ZHU ZongHong REITZE David H. ARAI Koji ZHANG Fan FLAMINIO Raffaele ZHU XingJiang HOBBS George MANCHESTER Richard N. SHANNON Ryan M. BACCIGALUPI Carlo GAO Wei XU Peng BIAN Xing CAO ZhouJian CHANG ZiJing DONG Peng GONG XueFei HUANG ShuangLin JU Peng LUO ZiRen QIANG Li'E TANG WenLin WAN XiaoYun WANG Yue XU ShengNian zang yunlong ZHANG HaiPeng LAU Yun-Kau NI Wei-Tou 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2015年第12期3-43,共41页
In the centenary year of Einstein's General Theory of Relativity, this paper reviews the current status of gravitational wave astronomy across a spectrum which stretches from attohertz to kilohertz frequencies. Se... In the centenary year of Einstein's General Theory of Relativity, this paper reviews the current status of gravitational wave astronomy across a spectrum which stretches from attohertz to kilohertz frequencies. Sect. 1 of this paper reviews the historical development of gravitational wave astronomy from Einstein's first prediction to our current understanding the spectrum. It is shown that detection of signals in the audio frequency spectrum can be expected very soon, and that a north-south pair of next generation detectors would provide large scientific benefits. Sect. 2 reviews the theory of gravitational waves and the principles of detection using laser interferometry. The state of the art Advanced LIGO detectors are then described. These detectors have a high chance of detecting the first events in the near future. Sect. 3 reviews the KAGRA detector currently under development in Japan,which will be the first laser interferometer detector to use cryogenic test masses. Sect. 4 of this paper reviews gravitational wave detection in the nanohertz frequency band using the technique of pulsar timing. Sect. 5 reviews the status of gravitational wave detection in the attohertz frequency band, detectable in the polarisation of the cosmic microwave background, and discusses the prospects for detection of primordial waves from the big bang. The techniques described in sects. 1–5 have already placed significant limits on the strength of gravitational wave sources. Sects. 6 and 7 review ambitious plans for future space based gravitational wave detectors in the millihertz frequency band. Sect. 6 presents a roadmap for development of space based gravitational wave detectors by China while sect. 7 discusses a key enabling technology for space interferometry known as time delay interferometry. 展开更多
关键词 gravitational waves ground based detectors pulsar timing spaced based detectors CMB
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