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| # | Type | Title | Author | Publisher | Pub. Year | Subjects | Call Number |
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| 1 | مقاله | A new non-dimensional parameter to obtain the minimum mixing length in tree-like concentration gradient generators | Rismanian, M. | Elsevier Ltd, | 2019 |
Concentration gradient generator.
Micromixer. Mixing length. Peclet number. Microchannels. Microfluidics. Mixers (machinery) Serpentine. Silicate minerals. Concentration gradient generators. Concentration gradients. Design considerations. Micro fluidic system. Micro mixers. Non-dimensional parameters. Straight microchannels. Mixing. |
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| 2 | مقاله | A microfluidic concentration gradient generator for simultaneous delivery of two reagents on a millimeter-sized sample | Rismanian, M. | Springer International Publishing, | 2020 |
Concentration gradient generator.
Microfluidics. Micromixer. Sensitivity analysis. |
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| 3 | مقاله | An interface–particle interaction approach for evaluation of the co-encapsulation efficiency of cells in a flow-focusing droplet generator | Yaghoobi, M. | MDPI AG, | 2020 |
Droplet generator.
Encapsulation efficiency. Finite element method. Flow focusing. Microfluidics. Particle interaction. Cells. Cytology. Diagnosis. Drop breakup. Efficiency. Microfluidics. Numerical methods. Biosensing applications. Cell encapsulations. Clinical diagnosis. Droplet generators. Droplet-based microfluidics. Efficiency predictions. Standard deviation. Surface tension force. Drop formation. Attention. Cell encapsulation. Finite element analysis. Prediction. Surface tension. |
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| 4 | مقاله | Three-dimensional modeling of avascular tumor growth in both static and dynamic culture platforms | Taghibakhshi, A. | MDPI AG, | 2019 |
Cell culture numerical simulation.
Microfluidic U-shaped. Tumor growth rate. Tumor kinetics. Tumor modeling. Cell culture. Cell death. Forecasting. Kinetics. Microchannels. Microfluidics. Numerical models. Nutrients. Tumors. Concentration distributions. Growth and development. Microfluidic cell culture. Three-dimensional model. Tumor growth. Tumor microenvironment. Tumor models. U-shaped. Growth kinetics. |
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| 5 | مقاله | Challenge in particle delivery to cells in a microfluidic device | Moghadas, H. | Springer Verlag, | 2018 |
Drug delivery.
Lung-on-a-chip. Numerical simulation. Particle deposition. Nanoparticle. Airflow. Article. Capillary blood. Drug delivery system. Flow rate. Gravity. Human. Human cell. Hydrodynamics. Liquid. Lung epithelium. Microtechnology. Nanotechnology. Particle size. Priority journal. Shear stress. Temperature. A-549 cell line. Cell culture technique. Devices. Lab on a chip. Microfluidic analysis. Shear strength. A549 Cells. Cell Culture Techniques. Humans. Lab-On-A-Chip Devices. Microfluidic Analytical Techniques. Particle Size. Shear Strength. |
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| 6 | مقاله | A high-performance polydimethylsiloxane electrospun membrane for cell culture in lab-on-a-chip | Moghadas, H. | American Institute of Physics Inc, | 2018 |
Anchorages (foundations)
Cell adhesion. Cell culture. Cost effectiveness. Filters (for fluids) Fluidic devices. Hydrophobicity. Membranes. Microchannels. Microfluidics. Polydimethylsiloxane. Scaffolds (biology) Shear flow. Silicones. Surface chemistry. Anchorage-dependent cells. Extracellular matrices. Integrated microfluidic devices. Microfluidic platforms. Plasma-activated bondings. Polydimethylsiloxane PDMS. Three-dimensional (3D) topography. Translational medicine. Continuous cell culture. |
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| 7 | مقاله | Prediction of necrotic core and hypoxic zone of multicellular spheroids in a microbioreactor with a U-shaped barrier | Barisam, M. | MDPI AG, | 2018 |
Glucose and oxygen concentrations.
Microbioreactor. Multicellular spheroid with U-shaped barrier. Bioreactors. Finite element method. Flow of fluids. Glucose. Microchannels. Oxygen. Shear flow. Shear stress. Finite element simulations. Glucose concentration. Micro-bioreactor. Multicellular spheroid. Necrotic and hypoxic regions. Oxygen concentrations. Threedimensional (3-d) U-shaped. Uranium. |
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| 8 | مقاله | Simple, Cost-effective, and continuous 3D dielectrophoretic microchip for concentration and separation of bioparticles | Tajik, P. | American Chemical Society, | 2020 |
Dielectric devices.
Efficiency. Electric fields. Electrodes. Electrophoresis. Fluidic devices. Microbeads. Microfluidics. Microprocessor chips. Polystyrenes. Yeast. Dielectrophoresis force. Micro fluidic system. Micro-fluidic devices. Optimum working conditions. Polystyrene micro-beads. Polystyrene particle. Saccharomyces cerevisiae cells. Three-dimensional (3D) electrodes. Cost effectiveness. |
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| 9 | مقاله | High-throughput, label-free isolation of white blood cells from whole blood using parallel spiral microchannels with u-shaped cross-section | Mehran, A. | MDPI, | 2021 |
Blood analysis.
Blood sampling. Cell isolation. Cell manipulation. Cell separation. Centrifugation. Cytology. Erythrocyte. Hemolysis. High throughput analysis. Hydrodynamics. Leukocyte. Mathematical analysis. Non invasive measurement. Thrombocyte. |
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| 10 | مقاله | Numerical simulation of the behavior of toroidal and spheroidal multicellular aggregates in microfluidic devices with microwell and U-shaped barrier | Barisam, M. | 2017 |
Bioreactor.
Microwell. Numerical simulation. Oxygen/glucose distribution. U-shaped barrier. Aggregates. Bioreactors. Cell culture. Computer simulation. Fluidic devices. Glucose. Microchannels. Numerical models. Oxygen. Shear stress. Three dimensional computer graphics. Micro wells. Multicellular aggregates. Spheroid. Toroid. U-shaped. Microfluidics. |
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| 11 | مقاله | Fabrication and characterization of low-cost, bead-free, durable and hydrophobic electrospun membrane for 3D cell culture | Moghadas, H. | 2017 |
Beads-free scaffolds.
Electrospinning cell culture. Hydrophobic nanofibers. Spheroid formation. Cell culture. Cost effectiveness. Cost engineering. Diseases. Electrospinning. Hydrophobicity. Mammals. Membranes. Microchannels. Polydimethylsiloxane. Pore size. Scaffolds (biology) Silicones. Spinning (fibers) Stem cells. Surface treatment. Tensile strength. Tissue engineering. Fabrication and characterizations. High-tensile strength. Multicellular spheroid. PDMS membrane. Polydimethylsiloxane membrane. Spheroid formation. Three-dimensional (3d) cell culture. Threedimensional (3-d) Cell engineering. Baysilon. Dimeticone. Poly(methyl methacrylate) A-549 cell line. Artificial membrane. Cell culture technique. Chemical phenomena. Chemistry. Devices. Human. Procedures. A549 cells. Cell culture techniques. Dimethylpolysiloxanes. Humans. Hydrophobic and hydrophilic interactions. Membranes, artificial. Polymethyl methacrylate. |
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| 12 | مقاله | A tool for designing tree-like concentration gradient generators for lab-on-a-chip applications | Ebadi, M. | Elsevier Ltd, | 2020 |
CFD.
Fluorescence measurement. Microfluidics. Open-source CGG. Tree-like concentration gradient generator. Computational fluid dynamics. Fluorescence. Forestry. Microfluidics. Open source software. Open systems. Concentration gradient generators. Drug concentration. Fabrication method. Fluorescence measurements. High throughput experiments. Lab-on-a-chip applications. Open sources. Output concentrations. Design. |
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| 13 | مقاله | Organ-tumor-on-a-chip for chemosensitivity assay: A critical review | Kashaninejad, N. | MDPI AG, | 2016 |
Cancer in microfluidics.
Drug efficacy testing. In vitro assays. Microchip cell culture. Spheroids. Tumor microenvironment. Tumor-on-a-chip. Assays. Biological organs. Cell culture. Diseases. Drug products. Fluidic devices. Integrated circuit design. Microfluidics. Microprocessor chips. Tumors. Concentration gradient generators. Drug efficacy. In-vitro assays. Diagnosis. |
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| 14 | مقاله | Some physical properties of Pistachio (Pistacia vera L.) nut and its kernel | Kashaninejad, M. | 2006 |
Fatty acids.
Food processing. Friction. Mathematical models. Moisture. Porosity. Velocity measurement. Kernel. Pistachio nut. Pistacia vera L. Static friction. Food products. Pistacia vera. |
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| 15 | مقاله | Thin-layer drying characteristics and modeling of pistachio nuts | Kashaninejad, M. | 2007 |
Activation energy.
Atmospheric humidity. Computer simulation. Drying. Mathematical models. Thermal effects. Velocity measurement. Drying air temperature. Drying kinetics. Pistachio nuts. Thin-layer drying behavior. Food products. Pistacia vera. |
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| 16 | پایان نامه | طراحی و ساخت تراشه ریزسیالاتی برای ایجاد محیط کشت سه بعدی از سلولهای سرطانی Design and Fabrication of a Microfluidic Chip for Three-dimensional Cancer Cell Culture | مشکسایان، خشایار Moshksayan, Khashayar | صنعتی شریف | 1396 | دینامیک سیالات محاسباتی Computational Fluid Dynamics (CFD) / سلول های سرطانی Cancer Cells / چاپ نوری PhotoLithography / کشت سلول Cell Culture / الگونگاری نرم Soft Lithographay / تراشه ریزسیال Microfluidic Chip / توپ یاخته Cell Spheroid / کشت سه بعدی Three Dimentional Cell Culture |
08-50598
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| 17 | پایان نامه | طراحی و ساخت سیستم میکروسیالی تست همزمان دو گونه شیمیایی بر روی بافت با ابعاد میلیمتر Design and Fabrication of a Microfluidic System for Simultaneous Delivery of Two Reagents on a Millimeter-Sized Tissue | ریسمانیان، میلاد Rismanian, Milad | صنعتی شریف | 1399 | سیستم ریزسیال Microfluidic System / تولید گرادیان غلظت دارویی Concentration Gradient Generator / آزمایش همزمان دو گونه شیمیایی Two Species Simultaneous Test / تولیدکننده گرادیان غلظت درختی Tree-Like Concentration Gradient Generator / سیستم نوری اندازه گیری غلظت Concentration Measurement Optical System / دینامیک مولکولی Molecular Dynamics |
08-53792
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| 18 | پایان نامه | شبیه سازی، طراحی و ساخت سیستم میکروفلوییدیکی به منظور غنی سازی و آزمایشات دارویی سلول های بنیادی سرطانی Simulation, Design and Fabrication of Microfluidic Systems for the Enrichment of Cancer Stem Cells and the Pharmacological Tests | بریسم حقیری، مریم Barisam Haghiri, Maryam | صنعتی شریف | 1400 | هایپوکسی Hypoxia / دارو رسانی Drug Delivery / سیستم ریزسیال Microfluidic System / غنی سازی سلولی Cell Enrichment / سلول های بنیادی سرطانی Cancer Stem Cells |
08-54817
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| 19 | مقاله | Probability of missed detection as a criterion for receiver placement in MIMO PCL | Majd, M. N. | IEEE, | 2012 |
Missed detections.
Multiple antenna. Multiple receivers. Passive radars. Radar performance. Receive antenna. Receiving antennas. MIMO radar. |
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| 20 | مقاله | An efficient method for the ring opening of epoxides with aromatic amines by Sb(III) chloride under microwave irradiation | Ghazanfari, D. | 2008 |
Epoxides.
β-amino alcohols. Aromatic amines. SbCl3. |
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