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Hao, Guang-Wei,Chen, Yu-Sheng,He, De-Ming,Wang, Hai-Yu,Wu, Guo-Hao,Zhang, Bo Asian Pacific Journal of Cancer Prevention 2015 Asian Pacific journal of cancer prevention Vol.16 No.5
Background: Tumors are largely unable to metabolize ketone bodies for energy due to various deficiencies in one or both of the key mitochondrial enzymes, which may provide a rationale for therapeutic strategies that inhibit tumor growth by administration of a ketogenic diet with average protein but low in carbohydrates and high in fat. Materials and Methods: Thirty-six male BALB/C nude mice were injected subcutaneously with tumor cells of the colon cancer cell line HCT116. The animals were then randomly split into three feeding groups and fed either a ketogenic diet rich in omega-3 fatty acids and MCT (MKD group; n=12) or lard only (LKD group; n=12) or a standard diet (SD group; n=12) ad libitum. Experiments were ended upon attainment of the target tumor volume of $600mm^3$ to $700mm^3$. The three diets were compared for tumor growth and survival time (interval between tumor cell injection and attainment of target tumor volume). Results: The tumor growth in the MKD and LKD groups was significantly delayed compared to that in the SD group. Conclusions: Application of an unrestricted ketogenic diet delayed tumor growth in a mouse xenograft model. Further studies are needed to address the mechanism of this diet intervention and the impact on other tumor-relevant parameters such as invasion and metastasis.
Minimization of Surface Roughness and Machining Deformation in Milling of Al Alloy Thin-Walled Parts
De-Jun Cheng,Feng Xu,Sheng-Hao Xu,Chun-Yan Zhang,Sheng-Wen Zhang,Su-Jin Kim 한국정밀공학회 2020 International Journal of Precision Engineering and Vol.21 No.9
This study focused on investigating the surface roughness in the feed direction (R a -Fd), surface roughness in the transversedirection (R a -Td), and thin-walled parts deformation (TWD) during milling of Al alloy 5083. The response surface method(RSM) was used to conduct experiments and establish the models of R a -Fd , R a -Td , and TWD under various cutting parameters. The significance of cutting parameters on R a -Fd , R a -Td , and TWD was analyzed by analysis of variance. It was observedthat the R a -Fd and R a -Td are mainly influenced by the spindle speed, depth of cut, transverse size and feed rate, while the TWD is mainly influenced by the depth of cut. A comparison of RSM-optimum function and artificial bee colony (ABC)algorithm optimum programming was conducted to obtain the best cutting conditions leading to minimum R a -Fd, R a -Td and TWD simultaneously. From the presented results, ABC algorithm was able to obtain the better cutting strategy. Finally, theperformance of the proposed cutting strategy was verified by confirmation experiments.
De-Jun Cheng,Jie Zhang,Zhong-Tai Hu,Sheng-Hao Xu,Xi-Feng Fang 한국정밀공학회 2020 International Journal of Precision Engineering and Vol.21 No.10
This paper aims to propose a digital twin-driven (DTD) approach that consists of the machining data (MD) in twin data (TD), design of MD acquisition methodology, construction of intelligent algorithm, real-virtual data interaction analysis and fusion technology, which improvs the predictability and management of on-line quality control of marine diesel engine (MDE) critical parts. Firstly, this paper introduces the theoretical framework of DTD on-line quality control in machining process. Secondly, we construct the process of DTD on-line quality control and introduce the digital twin model of on-line quality control based on TD-driven; the operation of data-driven quality on-line control based on digital twin including description and modeling of MD; acquisition of MD based on digital twin; TD-driven on-line tool life prediction and data fusion on-line machining parameters optimization methods. Finally, a case study is applied to validate the accuracy and availability of the DTD approach. The proposed approach provides a new way for the on-line quality control of MDE critical parts in machining process.
EFFECTS OF CARBON NANOTUBES ON RAT LIVER AND BRAIN
FU-DE WANG,CHAN JIN,LING-LING CAO,HAO LIANG,CHUN-WANG MA 성균관대학교(자연과학캠퍼스) 성균나노과학기술원 2014 NANO Vol.9 No.7
Carbon nanotubes (CNTs) have been widely applied in various ¯elds due to excellent physicaland chemical properties. As production and applications of nanotubes expand, public concernabout their potential risks to human health has also risen. In the present study, the e®ects ofCNTs on rat liver and brain by single intratracheal instillation were detected. CNTs [eithersingle-walled carbon nanotubes (SWCNTs) or multi-walled carbon nanotubes (MWCNTs)] couldbe seen in the lung and liver indicating the transfer of CNTs by blood stream. CNTs could induceoxidative stress in liver with elevated Malondialdehyde (MDA) level and degressive GSH level,superoxide dismutase (SOD) and CAT activity. To brain, maybe due to the blood brain barrierand the increased SOD and CAT activity, serious oxidative stress of brain did not occur.
Guo‐Hao Zu,Cheng-De LI 한국곤충학회 2015 Entomological Research Vol.45 No.5
Rhopus antennalis sp. nov. and R. qingdaoensis sp. nov. are described as new to science and R. nigroclavatus (Ashmead, 1902) is first recorded from China. A key to all the known Chinese species of the genus also presented.
NANOTOXICITY OF MULTIWALL CARBON NANOTUBES TO A549 CELLS IN VITRO
FU-DE WANG,Ying Tang,Yong Ji Yang,CHAN JIN,HUA ZHANG,HAO LIANG 성균관대학교(자연과학캠퍼스) 성균나노과학기술원 2014 NANO Vol.9 No.2
Multiwall carbon nanotubes (MWCNTs) have been widely applied in many ¯elds due to theexcellent physical and chemical properties. As the production and applications of nanotubesexpand, public concern about their potential risks to human health has also raised. Cytotoxicityof MWCNTs was evaluated in this study using a cultured human epithelial cell line A549. Uptakeof MWCNTs by cultured A549 cells was observed by TEM imaging. Dose-dependent decrease ofcell viability showed the cytotoxicity of MWCNTs. Signi¯cant reactive oxygen species (ROS)generation and GSH depletion which reduced the cellular antioxidant level could be the majorfactor of cytotoxicity induced by MWCNTs. MWCNTs seemed to trigger the activation of cellautophagy with the intracellular ATG16L1 level increase as a defense mechanism.
Gong-De Yang,Xinghe Fu,Mingyao Lin,Nian Li,Hao Liu 전력전자학회 2019 JOURNAL OF POWER ELECTRONICS Vol.19 No.1
This research comparatively studies three kinds of flux regulation methods, namely, stored capacitor discharge pulse (SCDP),constant current source pulse (CCSP), and quantitative flux regulation pulse (QFRP), which are used for hybrid permanentmagnet (PM) axial field flux-switching memory machines (HPM-AFFSMMs). Through an analysis of the operation principleand the series hybrid PM flux regulation mechanism of the objective machine, the circuit topologies and flux regulation processof these flux regulation methods are addressed in detail. On the basis of a simulation, the flux regulation characteristics of theresearched machine during the magnetization and demagnetization processes are comparatively evaluated. Then, machineperformance, including back EMF, direct and quadrature axis inductances, and magnetization and demagnetizationcharacteristics, is quantitatively investigated. Results show that the QFRP enables the HPM-AFFSMM to achieve a lessharmonic component of back EMF by approximately 7.28% and 7.97% at the magnetization and demagnetization states,respectively, and a more complete magnetization process than the SCDP and CCSP.
Digitalization as an aggregate performance in the energy transition for nuclear industry
Florencia de los Angeles Renteria del Toro,Chen Hao,Akira Tokuhiro,Mario Gomez-Fernandez,Armando Gomez-Torres Korean Nuclear Society 2024 Nuclear Engineering and Technology Vol.56 No.4
The emerging technologies at the industrial level have deployed rapidly within the energy transition process innovations. The nuclear industry incorporates several technologies like Artificial Intelligence (AI), Machine Learning (ML), Digital Twins, High-Performance-Computing (HPC) and Quantum Computing (QC), among others. Factors identifications are explained to set up a regulatory framework in the digitalization era, providing new capabilities paths for nuclear technologies in the forthcoming years. The Analytical Network Process (ANP) integrates the quantitative-qualitative decision-making analysis to assess the implementation of different aspects in the digital transformation for the New-Energy Transition Era (NETE) with a Nuclear Power Infrastructure Development (NPID).
Guo‐Hao Zu,Cheng-De LI 한국곤충학회 2017 Entomological Research Vol.47 No.5
Cerapteroceroides acutiscapus sp. nov. is described as new and Cerapteroceroides manaliensis Hayat and Khan, 2015 is first recorded from China.
Gong-De Yang,Ming-Yao Lin,Nian Li,Li Hao 대한전기학회 2019 Journal of Electrical Engineering & Technology Vol.14 No.1
Owing to the estimated permanent magnet (PM) flux linkage fluctuation, the stator-PM memory machine employing the continuous magnetization state (MS) manipulation may suffer from frequent MS manipulations and the accidental inverter damage in its extended speed range. In order to deal with this issue, in this paper, a novel vector control based on three MS manipulations is proposed and implemented on the existing hybrid PM axial field flux-switching memory machine. After a brief analysis of the researched machine configuration, the principle of the three MS manipulations, the remedial sliding mode speed regulator and the current distribution strategy are discussed. The simulated results show that the proposed scheme reduces the speed and electromagnetic torque overshoot and improves the dynamic performance. Meanwhile, compared with the flux-weakening control, the wide speed range can be obtained. Finally, the experiment is carried out to verify the validity of the theory.