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طراحی و ساخت سیستم میکروسیالی تست همزمان دو گونه شیمیایی بر روی بافت با ابعاد میلیمتر
ریسمانیان، میلاد Rismanian, Milad

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طراحی و ساخت سیستم میکروسیالی تست همزمان دو گونه شیمیایی بر روی بافت با ابعاد میلیمتر
Author :   ریسمانیان، میلاد Rismanian, Milad
Publisher :   صنعتی شریف
Pub. Year  :   1399
Subjects :   سیستم ریزسیال Microfluidic System تولید گرادیان غلظت دارویی Concentration Gradient...
Call Number :   ‭08-53792

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  • publications.pdf
    • Introduction (213)
    • Organ-Tumor-on-a-Chip (215)
      • Lung-Tumor-on-a-Chip (215)
        • Conventional 2D Cell Culture (215)
        • 3D Hydrogel Encapsulation Cell Culture (217)
        • Tumor-Like Spheroid Cells (218)
      • Bone Marrow-Tumor-on-a-Chip (219)
      • Brain-Tumor-on-a-Chip (220)
      • Breast-Tumor-on-a-Chip (222)
      • Urinary System-Tumor-on-a-Chip (222)
      • Intestine-Tumor-on-a-Chip (224)
      • Liver-Tumor-on-a-Chip (224)
    • Multi-Organ Co-Culture in Tumor-on-a-Chip (226)
      • Cardiohepatic Interaction in Tumor-on-a-Chip (226)
      • Microvasculature (227)
    • Conclusions (227)
    • 1st paper- CES.pdf
      • A new non-dimensional parameter to obtain the minimum mixing length in tree-like concentration gradient generators (237)
        • 1 Introduction (237)
        • 2 Methodology (239)
          • 2.1 Analytical solution (239)
          • 2.2 Numerical simulation (239)
          • 2.3 Experimental method (239)
        • 3 Results and discussion (240)
          • 3.1 Maximum mixing length (240)
          • 3.2 Numerical results for a straight T-shaped micromixer (240)
          • 3.3 Serpentine T-shaped micromixer (240)
          • 3.4 Experimental validation (240)
          • 3.5 Effect of different parameters on ψ (241)
        • 4 Conclusion (243)
        • Conflicts of interest (243)
        • References (243)
    • 2nd paper- JFC.pdf
      • A microfluidic concentration gradient generator for simultaneous delivery of two reagents on a millimeter-sized sample (244)
        • Abstract (244)
        • Introduction (244)
        • Materials and methods (246)
          • Device operation (246)
          • Fabrication and experimental setup (247)
          • Numerical simulation (248)
            • Mathematical modelling (248)
            • Boundary conditions (248)
          • Sensitivity analysis (249)
        • Results and discussion (249)
          • Numerical results (249)
            • Velocity profiles (249)
            • Concentration distributions of the reagents at the middle cross-sectional plane of the main microfluidics (MM) (249)
          • Experimental results (250)
          • Relaxation time (250)
          • The effects of varying the sample thickness (250)
          • Sensitivity analysis (252)
        • Conclusion (252)
        • References (253)
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