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| 1 | Improved root zone temperature buffer capacity enhancing sweet pepper yield via soil-ridged substrate-embedded cultivation in solar greenhouse显示文摘A novel soilless cultivation method,called as soil-ridged substrate-embedded cultivation(SSC)was invented,and an experiment was designed to investigate root zone temperature and production efficiency of sweet pepper cultivated by two SSC patterns,i.e.,SSC-P(polyethylene groove inserted)and SSC-W(wire-mesh groove inserted),and also other two cultivation methods,i.e.,soil ridge(SR)and naked polyethylene groove(PG).Results showed that PG,SSC-P and SSC-W increased the average minimal root zone temperature by 1.01℃,0.75℃,and 1.16℃ compared to SR(16.33℃)during March 16-20,2015.During June 1-5,SSC-P and SSC-W decreased the average maximal root zone temperature by 1.28℃ and 1.29℃ compared to SR(34.99℃),while PG increased it by 1.44℃.PG,SSC-P,and SSC-W decreased the differences of average daytime and night time temperatures by 1.34℃,2.13℃,and 2.88℃ compared to SR(4.56℃)during early stage.However,SSC-P and SSC-W decreased temperature differences of average daytime and night time by 0.9℃ and 1.07℃ compared to SR(0.95℃)during later stage,but PG improved by 2.85℃.Temperature difference of daytime and night time of SSC-W was minimal,and the temperature difference between the diurnal highest and the lowest temperature of SSC-W was also minimal.The buffer capacity of SSC-W was slightly better than that of SSC-P.SSC-W significantly improved the growth of sweet pepper compared to SR.Similarly,fruit yield per square meter of sweet pepper cultivated on SSC-P and SSC-W improved by 21.24%and 50.33%,respectively compared to SR(3.06 kg/m^(2)),while PG lowered the yield by 13.72%.SSC-W was a better SSC pattern compared with SSC-P in terms of production efficiency. | Guohai Fu Zonggeng Li Wenke Liu Qichang Yang | 2018 | International Journal of Agricultural and Biological Engineering2018,11,2: | 4 |
| 2 | 显示文摘 | GUOHai Fu(郭海福) LEIJia-Mei(雷佳眉) MADe Yun(马德运) | 2015 | 无机化学学报2015,31,: | 1 |
| 3 | HEATR1 promotes proliferation in gastric cancer in vitro and in vivo显示文摘HEAT repeat-containing protein 1(HEATR1)is related to the progression of several cancers.However,the role of HEATR1 in gastric cancer(GC)remains unknown.In the present study,we aimed to detect the expression of HEATR1 in GC and identify its role.The expressions of HEATR1 in GC tissues were analyzed using The Cancer Genome Atlas database and by western blot analysis and immunohistochemistry.Furthermore,the HEATR1 expressions in GC cell lines MGC-803 and AGS were knocked down by using lentivirus-mediated HEATR1 shRNA.Cell proliferation and apoptosis were detected by CCK-8 and Caspase-GioR 3/7 assays,respectively.PathScan'Signaling Antibody Array kit and Kyoto Encyclopedia of Genes and Genomes enrichment were used to study the pathways related to HEATR1.The influence of HEATR1 shRNA on the in vivo growth of GC cells was assessed by establishing a nude mouse xenograft model and con ducting bioluminescenee imaging.Our results showed that HEATR1 was highly expressed in GC tissues.Higher expression of HEATR1 is related to cancer progression and metastasis.Knocking down HEATR1 significantly suppressed the cell proliferation and colony formation and promoted cell apoptosis.The expression levels of phosphorylated p53,p38 MAPK,Chk2,and IKBa in shHEATRItransfected MGC-803 cells exceeded those in shCtrl-transfected cells.HEATR1 shRNA treatment also sigrdficantly inhibited tumor growth in the mouse model.This study suggested that HEATH 1 may be an oncogene and a target for GC therapy. | Jun Zhao Yiping Zhu Qingsheng Fu Yimei Zhu Guohai Zhao | 2020 | Acta Biochimica et Biophysica Sinica2020,52,9: | 0 |
| 4 | Passive imaging through dense scattering media显示文摘Imaging through non-static and optically thick scattering media such as dense fog,heavy smoke,and turbid water is crucial in various applications.However,most existing methods rely on either active and coherent light illumination,or image priors,preventing their application in situations where only passive illumination is possible.In this study we present a universal passive method for imaging through dense scattering media that does not depend on any prior information.Combining the selection of small-angle components out of the incoming information-carrying scattering light and image enhancement algorithm that incorporates timedomain minimum filtering and denoising,we show that the proposed method can dramatically improve the signal-to-interference ratio and contrast of the raw camera image in outfield experiments. | YAOMING BIAN FEI WANG YUANZHE WANG ZHENFENG FU HAISHAN LIU HAIMING YUAN GUOHAI SITU | 2024 | Photonics Research2024,12,1: | 0 |