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Unusual infrared emission toward Sgr B2: possible planar C24
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作者 Xiu-Hui Chen Fu-Yuan Xiang +1 位作者 Xue-Juan Yang Aigen Li 《Research in Astronomy and Astrophysics》 SCIE CAS CSCD 2019年第10期35-42,共8页
Interstellar graphene could be present in the interstellar medium(ISM), resulting from the photochemical processing of polycyclic aromatic hydrocarbon(PAH) molecules and/or collisional fragmentation of graphitic parti... Interstellar graphene could be present in the interstellar medium(ISM), resulting from the photochemical processing of polycyclic aromatic hydrocarbon(PAH) molecules and/or collisional fragmentation of graphitic particles. Indeed, by comparing the observed ultraviolet(UV) extinction and infrared(IR) emission of the diffuse ISM with that predicted for graphene, as much as ~ 2% of total interstellar carbon could be locked up in graphene without violating the observational constraints. While the possible detection of planar C24, a small piece of a graphene sheet, has been reported towards several Galactic and extragalactic planetary nebulae, graphene has not yet been detected in interstellar environments. In this work, we search for the characteristic IR features of C24 at ~ 6.6, 9.8 and 20 μm toward Sgr B2, a high-mass star formation region, and find a candidate target toward R.A.(J2000)= 267.05855?and Decl.(J2000)=-28.01479?in Sgr B2 whose Spitzer/IRS spectra exhibit three bands peaking at ~ 6.637, 9.853 and 20.050 μm which appear to be coincident with those of C24. Possible features of C60 are also seen in this region. The candidate region is a warm dust environment heated by massive stars or star clusters, associated with a WISE spot(a tracer of star formation activity), close to the HII region candidate IRAS 17450–2759, and is surrounded by seven young stellar object candidates within ~ 5′, suggesting that the creation and/or excitation of C24 could be related to star formation activities. 展开更多
关键词 line identification-ism lines and bands-ISM MOLECULES
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CGI-58基因条件敲除对小鼠中枢神经系统功能的影响
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作者 孙玉风 尚静 郑震林 《南通大学学报(医学版)》 2016年第6期513-517,共5页
目的:探讨comparative gene identification-58(CGI-58)基因失功能对小鼠中枢神经系统功能的影响。方法:选择中枢神经系统星形胶质细胞中特异性敲除CGI-58的小鼠(CGI-58KO)为研究对象,通过Morris水迷宫、Y-迷宫、转杆实验、尾部及足底... 目的:探讨comparative gene identification-58(CGI-58)基因失功能对小鼠中枢神经系统功能的影响。方法:选择中枢神经系统星形胶质细胞中特异性敲除CGI-58的小鼠(CGI-58KO)为研究对象,通过Morris水迷宫、Y-迷宫、转杆实验、尾部及足底的痛觉测试,比较其与野生型小鼠在运动协调性、空间学习记忆及感觉能力等方面的差别。建立小鼠脊髓损伤模型,在损伤后不同时间点,采用小鼠后肢运动功能评分(basso mouse scale for locomotion,BMS)和痛觉测试检测,比较CGI-58KO小鼠与CGI-58野生型小鼠在神经运动功能与感觉功能恢复情况的差别。结果:与野生型小鼠相比,CGI-58KO小鼠在Y-迷宫中找到安全区的用时较长,在转杆实验中停留在转杆上的时间较短,对痛觉的反应时间较长,在Morris水迷宫中找到安全平台用的时间和游泳的距离都较长;在脊髓损伤后,与野生型小鼠相比,CGI-58KO小鼠的后肢运动功能BMS评分较低,对痛觉的反应时间较长。结论:在小鼠神经系统胶质细胞中CGI-58基因的失功能显著影响了小鼠运动、学习记忆、空间认知和感觉能力,推测该基因在小鼠神经系统功能中具有重要的作用。 展开更多
关键词 脊髓损伤 COMPARATIVE GENE identification-58 小鼠后肢运动功能评分 小鼠
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