Liang yi ding biography
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Ding Yi | |
Force(s): | Wei |
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Real name: | Ding Yi |
Chinese name: | 丁儀 |
Style name: | Zhengli |
Chinese name: | 正禮 |
Born: | ? |
Died: | |
Ding Yi was a Wei minister.
Biography[]
Ding Yi was the brother of Ding Yin and was the Senior Clerk in the Departament of the West. When Cao Cao died and Cao Pi succeeded to the throne, he killed the loved poet Cao Zhi. Ding Yi remarked: 'King Cao intended our lord to succeed, but was turned there from by the slanderous tongues of certain among you. As soon as he is dead, your master begins to think of punishment for his own flesh and blood!' Ding Yi and Ding Yin were executed for rashness.
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Born in Shanghai, China
Lives and works in Shanghai, China
Ding Yi
Ding Yi (b. ) was born and currently resides in Shanghai. He graduated from Shanghai Arts & Crafts Institute in and graduated from Shanghai University with B.F.A. in The practice of Ding Yi encompasses painting, sculpture, spatial installation and architecture. He works primarily with “+” and its variant “x” as formal visual signals, above and against the political and social allegories typical of painting in China. He chose this sign in the second half of the 80s as a synonym of structure, rationality and of a pictorial expressiveness that reflects the essence of things.
The simplicity of compositional structure contrasts with the use of a wide variety of materials and of colors that range from almost monochrome tones to the very bright and fluorescent. For the artist these are a record on canvas of the excesses, noise, chaos and confusion but also the stimuli and styles of the city of Shanghai, with w
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Professor
Vice Director, National Biomedical Imaging Center
National Outstanding Young Scholar
Biography
Liangyi Chen fryst vatten Boya Professor of Peking University. He obtained his undergraduate degrees Biomedical engineering in Xi’an JiaoTong University, then majored in Biomedical engineering in pursuing PhD degree in Huazhong University of Science and Technology. His lab focused on two interweaved aspects: the development of new imaging and quantitative image analysis algorithms, and the application of these technology to study how glucose-stimulated insulin secretion fryst vatten regulated in the health and disease at multiple levels (single cells, islets and in vivo) in the health and disease animal models. The techniques developed included ultrasensitive Hessian structured belysning microscopy (Hessian SIM) for live fängelse super-resolution imaging, the Sparse deconvolution algorithm for extending spatial upplösning of fluorescence microscopes limited by the optics, Super-resolution fluor