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| 1 | The Molecular Basis of Vitamin D Receptor and β-Catenin Crossregulation显示文摘 | Salimuddin Shah Md Naimul Islam Sivanesan Dakshanamurthy Imran Rizvi Mahadev Rao Roger Herrell Glendon Zinser Meggan Valrance Ana Aranda Dino Moras Anthony Norman JoEllen Welsh Stephen W. Byers | 2006 | Molecular Cell2006,,6: | 1 |
| 2 | Covariance-guided one-class support vector machine显示文摘 | Naimul M K Riadh K Imran S A | 2014 | Pattern Recognition2014,47,6: | 1 |
| 3 | Association of serum TNF-α and IL-6 with insulin secretion and insulin resistance in IFG and IGT subjects in a Bangladeshi population显示文摘 | Mosaraf Hossain M Omar Faruque Golam Kabir Naimul Hassan Dwaipayan Sikdar Quamrun Nahar Liaquat Ali | 2010 | International Journal of Diabetes Mellitus2010,,: | 1 |
| 4 | 南亚国家留学生汉语口语学习策略调查研究显示文摘论文以在中国云南学习汉语的南亚留学生为研究对象,借鉴相关汉语学习理论及前人的研究经验,对南亚留学生的汉语口语学习进行调查、统计、分析,采用Oxford的SILL语言学习策略量表对南亚各国留学生进行问卷调查,分析其口语学习策略使用情况和个体差异因素对学习策略使用的影响. | 于文博 Naimul 杜贺 张明磊 孙文杰 | 2019 | 中小企业管理与科技2019,0,21: | 0 |
| 5 | Salicylic Acid Application Mitigates Oxidative Damage and Improves the Growth Performance of Barley under Drought Stress显示文摘Drought is a severe environmental constraint,causing a significant reduction in crop productivity across the world.Salicylic acid(SA)is an important plant growth regulator that helps plants cope with the adverse effects induced by various abiotic stresses.The current study investigated the potential effects of SA on drought tolerance efficacy in two barley(Hordeum vulgare)genotypes,namely BARI barley 5 and BARI barley 7.Ten-day-old barley seedlings were exposed to drought stress by maintaining 7.5%soil moisture content in the absence or presence of 0.5,1.0 and 1.5 mM SA.Drought exposure led to severe damage to both genotypes,as indicated by phenotypic aberrations and reduction of dry biomass.On the other hand,the application of SA to drought-stressed plants protected both barley genotypes from the adverse effects of drought,which was reflected in the improvement of phenotypes and biomass production.SA supplementation improved relative water content and proline levels in drought-stressed barley genotypes,indicating the osmotic adjustment functions of SA under water-deficit conditions.Drought stress induced the accumulation of reactive oxygen species(ROS),such as hydrogen peroxide(H2O2)and superoxide(O_(2)•^(−)),and the lipid peroxidation product malondialdehyde(MDA)in the leaves of barley plants.Exogenous supply of SA reduced oxidative damage by restricting the accumulation of ROS through the stimulation of the activities of key antioxidant enzymes,including superoxide dismutase(SOD),peroxidase(POD),catalase(CAT),ascorbate peroxidase(APX)and glutathione peroxidase(GPX).Among the three-applied concentrations of SA,0.5 mM SA exhibited better mitigating effects against drought stress considering the phenotypic performance and biochemical data.Furthermore,BARI barley 5 showed better performance under drought stress than BARI barley 7 in the presence of SA application.Collectively,our results suggest that SA played a crucial role in improving water status and antioxidant defense strategy to protect barley plants from the deleterious effects of water deficiency. | Shah Mohammad Naimul Islam Niloy Paul Md.Mezanur Rahman Md.Ashraful Haque Md.Motiar Rohman Mohammad Golam Mostofa | 2023 | Phyton-International Journal of Experimental Botany2023,92,5: | 0 |
| 6 | Mechanical, thermal and interfacial properties of Carbon-Kevlar reinforced epoxy composite显示文摘Twill woven Carbon-Kevlar (CK) fabric was reinforced in epoxy matrix by conventional hand lay-up process. The fabric weight fraction in the composites was kept around 58% and stacking sequence was varied from single to five plies. Tensile test was performed and the fracture surface after tensile test was evaluated by scanning electron microscope (SEM). The test result revealed that the tensile properties are strongly dependent on the number of plies. Three point flexural test of the composite was also carried and an increasing trend was observed. Maximum impact energy was recorded for CK3 sample by 202.7 KJ/m2. Thermal stability of the composite was studied via the thermo gravimetric analysis (TGA) and Fourier transform infrared spectroscopy (FT-IR) result show interaction between fiber and matrix material. Finally, CK fabric reinforced epoxy-based composites showed balanced and tailor-able mechanical properties by varying the number of plies, suitable for desired applications in many areas including building, construction, marine, automotive etc. | Milon Hossain Kamrun N. Keya Nasrin A. Kona Naimul Islam Farjana A. Koly Mubarak A. Khan Abu Bakar Siddiquee Jumana Mahmud Ruhul A. Khan | 2019 | Materials Engineering Research2019,1,2: | 0 |
| 7 | Natural fiber reinforced polymer composites: history, types, advantages and applications显示文摘Nowadays, the use of natural fiber reinforced polymer-based composites is gradually increasing day by day for their many advantages for civil engineering construction applications. Due to their many advantages for polymer-based composite materials are widely used in civil construction, automobiles, aerospace, and many others. Natural fibers such as jute, kenaf, pineapple, sugarcane, hemp, oil palm, flax, and leaf, etc. are cheap, environmentally friendly, renewable, completely and partially biodegradable which can be utilized to obtain new high-performance polymer materials. These composites are having satisfactory mechanical properties (i.e. tensile properties, flexural stress-strain behavior, fracture toughness, and fracture strength) which make them more attractive than other composites. Due to easy availability and renewability, natural fibers can be used as an alternative of synthetic fibers as a reinforcing agent. The aim of this paper is to review different natural fibers reinforced based polymer composites with mechanical characterization, applications, also shows the opportunities, challenges and future demand of natural composite material towards civil applications. | Kamrun N. Keya Nasrin A. Kona Farjana A. Koly Kazi Madina Maraz Md. Naimul Islam Ruhul A. Khan | 2019 | Materials Engineering Research2019,1,2: | 0 |