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6篇 您的检索式:作者名="HongJiang Tao"
    题名 作者 年代 出处 被引量
1The Tunggurian Stage of the Continental Miocene in China显示文摘Tunggurian 年龄在 1984 被提名,并且中国的地层学上的第二个国家委员会正式建议了建立相应 chronostratigraphic 单位, Tunggurian 阶段,基于在 1999 的 Tunggurian 年龄。这个阶段的名字来自一个岩石层位学的单位, Tunggur 形成,和 stratotype 节在 Tunggur 台地被定位, Saihan Gobi 镇区的 15 km 东南, Sonid 左旗帜,内部蒙古。Tunggurian 年龄被相关到欧洲陆地哺乳动物年龄的 Astaracian,并且他们与 15.0 妈的年龄在 paleomagnetic Chron C5Bn.lr 的底分享更低的边界的一样的定义。在 Tunggur 台地的东南的边上的 Tairum 也不节,这条边界在红褐色的连续存款以内是位于的 Tunggur 形成的更低的部分的巨大的泥石头,与从在节的中间的部分的浅灰色白人的沙岩的底的 7.6 m 的距离。Tunggurian 近似在国际地层学的图表被相关到海洋的 Langhian 和海洋的 Serravallian 的上面的部分。Tunggurian 阶段包括二个晚第三纪哺乳动物动物区系的单位,即 NMU 6 (MN 6 ) 和 NMU 7 (MN 7/8 ) 。从 Tairum 也不节的 Tairum 也不动物志在 Tunggur 台地的西北的边上从地区对应于 NMU 6,和 Tunggur 动物志(senso stricto ) ,例如 Platybelodon 石场,狼营地和 Moergen,对应于 NMU 7。在在中国,从 Linxia 盆的 Laogou 动物志, Gansu,从 Lanzhou 盆的 Quantougou 动物志, Gansu,从北 Junggar 盆的 Halamagai 动物志, Xinjiang,和 Dingjiaergou 的中间的中新世的哺乳动物的动物志之中从 Tongxin 的动物志, Ningxia 对应于 NMU 6。DENG Tao HOU Sukuan WANG Hongjiang 2007Acta Geologica Sinica(English Edition)2007,81,5:10
2The Chinese Hα Solar Explorer(CHASE) mission: An overview显示文摘The Chinese Hα Solar Explorer(CHASE), dubbed “Xihe”—Goddess of the Sun, was launched on October 14, 2021 as the first solar space mission of China National Space Administration(CNSA). The CHASE mission is designed to test a newly developed satellite platform and to acquire the spectroscopic observations in the Hα waveband. The Hα Imaging Spectrograph(HIS)is the scientific payload of the CHASE satellite. It consists of two observational modes: raster scanning mode and continuum imaging mode. The raster scanning mode obtains full-Sun or region-of-interest spectral images from 6559.7 to 6565.9 ? and from 6567.8 to 6570.6 ? with 0.024 ? pixel spectral resolution and 1 min temporal resolution. The continuum imaging mode obtains photospheric images in continuum around 6689 ? with the full width at half maximum of 13.4 ?. The CHASE mission will advance our understanding of the dynamics of solar activity in the photosphere and chromosphere. In this paper, we present an overview of the CHASE mission including the scientific objectives, HIS instrument overview, data calibration flow, and first results of on-orbit observations.Chuan Li Cheng Fang Zhen Li MingDe Ding PengFei Chen Ye Qiu Wei You Yuan Yuan MinJie An HongJiang Tao XianSheng Li Zhe Chen Qiang Liu Gui Mei Liang Yang Wei Zhang WeiQiang Cheng JianXin Chen ChangYa Chen Qiang Gu QingLong Huang MingXing Liu ChengShan Han HongWei Xin ChangZheng Chen YiWei Ni WenBo Wang ShiHao Rao HaiTang Li Xi Lu Wei Wang Jun Lin YiXian Jiang LingJie Meng Jian Zhao 2022Science China(Physics,Mechanics & Astronomy)2022,65,8:7
3Calibration procedures for the CHASE/HIS science data显示文摘The Hα line is an important optical line in solar observations containing the information from the photosphere to the chromosphere. To study the mechanisms of solar eruptions and the plasma dynamics in the lower atmosphere, the Chinese Hα Solar Explorer(CHASE) was launched into a Sun-synchronous orbit on October 14, 2021. The scientific payload of the CHASE satellite is the Hα Imaging Spectrograph(HIS). The CHASE/HIS acquires, for the first time, seeing-free Hα spectroscopic observations with high spectral and temporal resolutions. It consists of two observational modes. The raster scanning mode provides full-Sun or region-of-interest spectra at Hα(6559.7-6565.9 ?) and Fe I(6567.8-6570.6 ?) wavebands. The continuum imaging mode obtains full-Sun photospheric images at around 6689 ?. In this paper, we present detailed calibration procedures for the CHASE/HIS science data, including the dark-field and flat-field correction, slit image curvature correction, wavelength and intensity calibration, and coordinate transformation. The higher-level data products can be directly used for scientific research.Ye Qiu ShiHao Rao Chuan Li Cheng Fang MingDe Ding Zhen Li YiWei Ni WenBo Wang Jie Hong Qi Hao Yu Dai PengFei Chen XiaoSheng Wan Zhi Xu Wei You Yuan Yuan HongJiang Tao XianSheng Li YuKun He Qiang Liu 2022Science China(Physics,Mechanics & Astronomy)2022,65,8:3
4On the technologies of Hα imaging spectrograph for the CHASE mission显示文摘The Hα imaging spectrograph(HIS) is the scientific payload of the first solar space mission, the Chinese Hα solar explorer(CHASE), supported by the China National Space Administration(CNSA). The CHASE/HIS achieves, for the first time in space, Hα spectroscopic observations with high spectral and temporal resolutions. Separate channels for the raster scanning mode(RSM) and continuum imaging mode(CIM) are integrated into one, and a highly integrated design is achieved through multiple folding of the optical path and ultra-light miniaturized components. The design of HIS implements a number of key technologies such as high-precision scanning of the optical field of view(FOV), high-precision integrated manufacturing inspection, a large-tolerance pre-filter window, and full-link solar radiation calibration. The HIS instrument has a pixel spectral resolution of 0.024 ? and can complete a full-Sun scanning within 46 s.Qiang Liu Hongjiang Tao Changzheng Chen Chengshan Han Zhe Chen Gui Mei Liang Yang Qinglong Hu Hongwei Xin Xiansheng Li Hongyu Guan Donglin Xue Mingchao Zhu Changhong Hu Qinghua Ha Yukun He Cheng Fang Chuan Li Zhen Li 2022Science China(Physics,Mechanics & Astronomy)2022,65,8:2
5Efficacy of oral nicotinic acid and choline in the treatment and preventionoffattyliverindairycow显示文摘Efficacy of oral nicotinic acid and choline in the treatment and preventionoffattyliverindairycowEfficacyoforalnicotinicacida...Tian Wenru Zheng Changle Li Shoujun Zhou Jnanping Yang Hongjiang(Northeast Agricultural University,Harbin 150030,P.R.China)Wang Tao(Dairy Farm of Harbin City)Hu Qingde,Bai Yinmin,Ma Chengchang(Dairy Farm of Songhuajiang)Yang Dianjun (Dairy Farm of Sandao, 1994Journal of Northeast Agricultural University(English Edition)1994,1,1:0
6Oscillation-specific nodal alterations in early to middle stages Parkinson’s disease显示文摘Background:Different oscillations of brain networks could carry different dimensions of brain integration.We aimed to investigate oscillation-specific nodal alterations in patients with Parkinson’s disease(PD)across early stage to middle stage by using graph theory-based analysis.Methods:Eighty-eight PD patients including 39 PD patients in the early stage(EPD)and 49 patients in the middle stage(MPD)and 36 controls were recruited in the present study.Graph theory-based network analyses from three oscillation frequencies(slow-5:0.01–0.027 Hz;slow-4:0.027–0.073 Hz;slow-3:0.073–0.198 Hz)were analyzed.Nodal metrics(e.g.nodal degree centrality,betweenness centrality and nodal efficiency)were calculated.Results:Our results showed that(1)a divergent effect of oscillation frequencies on nodal metrics,especially on nodal degree centrality and nodal efficiency,that the anteroventral neocortex and subcortex had high nodal metrics within low oscillation frequencies while the posterolateral neocortex had high values within the relative high oscillation frequency was observed,which visually showed that network was perturbed in PD;(2)PD patients in early stage relatively preserved nodal properties while MPD patients showed widespread abnormalities,which was consistently detected within all three oscillation frequencies;(3)the involvement of basal ganglia could be specifically observed within slow-5 oscillation frequency in MPD patients;(4)logistic regression and receiver operating characteristic curve analyses demonstrated that some of those oscillation-specific nodal alterations had the ability to well discriminate PD patients from controls or MPD from EPD patients at the individual level;(5)occipital disruption within high frequency(slow-3)made a significant influence on motor impairment which was dominated by akinesia and rigidity.Conclusions:Coupling various oscillations could provide potentially useful information for large-scale network and progressive oscillation-specific nodal alterations were observed in PD patients across early to middle stages.Xiaojun Guan Tao Guo Qiaoling Zeng Jiaqiu Wang Cheng Zhou Chunlei Liu Hongjiang Wei Yuyao Zhang Min Xuan Quanquan Gu Xiaojun Xu Peiyu Huang Jiali Pu Baorong Zhang Min-Ming Zhang 2019Translational Neurodegeneration2019,8,1:0
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