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        Research on prefabricated concrete beam-column joint with high strength bolt-end plate

        Li Shufeng,Zhao Di,Li Qingning,Zhao Huajing,Zhang Jiaolei,Yuan Dawei 국제구조공학회 2020 Structural Engineering and Mechanics, An Int'l Jou Vol.74 No.3

        Many prefabricated concrete frame joints have been proposed, and most of them showed good seismic performance. However, there are still some limitations in the proposed fabricated joints. For example, for prefabricated prestressed concrete joints, prefabricated beams and prefabricated columns are assembled as a whole by the pre-stressed steel bar and steel strand in the beams, which brings some troubles to the construction, and the reinforcement in the core area of the joints is complex, and the mechanical mechanism is not clear. Based on the current research results, a new type of fabricated joint of prestressed concrete beams and confined concrete columns is proposed. To study the seismic performance of the joint, the quasi-static test is carried out. The test results show that the nodes exhibit good ductility and energy dissipation. According to the experimental fitting method and the “fixed point pointing” law, the resilience model of this kind of nodes is established, and compared with the experimental results, the two agree well, which can provides a certain reference for elasto-plastic seismic response analysis of this type of structure. Besides, based on the analysis of the factors affecting the shear capacity of the node core area, the formula of shear capacity of the core area of the node is proposed, and the theoretical values of the formula are consistent with the experimental value.

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        Dynamic expression of early responsible genes to acute left-ventricular ischemia in a time-dependent pattern

        XiaoWei Song,Yong Ji Yang,Ya Feng Shen,Mi Cao,QingNing Yuan,Ying Tang,Changhai Lei 한국통합생물학회 2014 Animal cells and systems Vol.18 No.3

        Acute myocardial infarction remains one of the leading causes of death and disability worldwide. Themechanisms underlying myocardial infarction involve a complex of signaling molecules, such as tumornecrosis factor α (TNFα), interleukin-6 (IL6), C-Myc, atria natriuretic peptide (ANP), superoxide dismutase1 (SOD1), and so on. The aim of this study is to understand the time-dependent expressional pattern of theseearly responsible genes following acute myocardial ischemia established by left anterior descending (LAD)coronary artery ligation. After LAD ligation, a collection of genes was detected using real-time polymerasechain reaction (PCR). The expression of inflammation-related genes, such as TNFα and IL6, was immediatelyupregulated at 2 h, reached to the highest point at 12 h, and then decreased to nearly basis level at 24 h afterligation, suggesting inflammation appeared and disappeared rapidly after acute ischemia. C-Myc, an importanttranscription factor, was significantly upregulated at 2 h, and thereafter persisted at high level to 24 h. Thesecretary peptide, ANP, was consistently upregulated from 2 to 24 h, reached to 40-folds at 24 h. The calciumregulatedgene, FK506-binding protein 12.6, was not significantly altered after ischemia. SOD1 was not alteredat the first 4 h, and began to downregulate at 12 and 24 h. These results indicate that several genes weredynamically and transiently regulated after acute myocardial infarction (AMI) in a time-dependent pattern,suggesting that there is an immediate molecular response to acute myocardial ischemia, which might provideus a new insight to understand molecular mechanisms of AMI.

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