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Editorial: Celebrating the year of Ramon y Cajal: cellular biology of the retina. [PDF]
Cuenca N, Canto-Soler MV, Becerra SP.
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Exploring the Potential of Hop (<i>Humulus lupulus</i>) Cone Residue: Chemical Characterization and Evaluation of Bioactivities. [PDF]
Reyes GB +13 more
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On Prefabricated Stress Cone for HTS Cable Termination
IEEE Transactions on Applied Superconductivity, 2015The high-temperature superconducting (HTS) cable terminal has been rapidly improved in recent years. One of the hotspots in the HTS field is the prefabricated stress cone, which is widely recognized for its advanced processing technology that brings high insulation resistance and structure compactness.
K. K. Lu +7 more
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The study on stress-cone based on HTS cable terminal
Physica C: Superconductivity and Its Applications, 2013Abstract Our research aims at improving the performance of 35 kV class stress-cone for HTS cable terminal. Firstly, the equivalent circuit model of a stress-cone is constructed for simulation. The relation between the sag voltage of each layer can be characterized by structural and material parameters, such as the stress-cone’s plate length, plate ...
C.Y. Wu +5 more
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Protection against oxidative stress by vitamin D in cone cells
Cell Biochemistry and Function, 2016Photoreceptor degeneration (PD) refers to a group of heterogeneous outer retinal dystrophies characterized by the death of photoreceptors. Both oxidative stress and inflammation are involved in the pathogenesis of PD. We investigate whether vitamin D has a potential for the treatment of PD by evaluating the anti‐oxidative stress and anti‐inflammatory ...
Xinhua Shu
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IEEE Transactions on Dielectrics and Electrical Insulation, 2020
This paper presents a DC electric field calculation and optimization algorithm for a coaxial double-layer insulation. The stress cone curve of a 320 kV DC cable joint was optimized utilizing the algorithm under different conditions.
Jingzhe Yu, Xiangrong R Chen
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This paper presents a DC electric field calculation and optimization algorithm for a coaxial double-layer insulation. The stress cone curve of a 320 kV DC cable joint was optimized utilizing the algorithm under different conditions.
Jingzhe Yu, Xiangrong R Chen
exaly +2 more sources

