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finite element method (fem)-based two-dimensional (2d) model  (COMSOL Inc)

 
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    COMSOL Inc finite element method (fem)-based two-dimensional (2d) model
    Finite Element Method (Fem) Based Two Dimensional (2d) Model, supplied by COMSOL Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/two-dimensional+(2d)+model/comsol+multiphysics/pm38206310-162-19-26
    Average 90 stars, based on 1 article reviews
    finite element method (fem)-based two-dimensional (2d) model - by Bioz Stars, 2026-10
    90/100 stars

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    Related Articles

    Concentration Assay:

    Article Title: Modified Carbon Nanotubes Favor Fibroblast Growth by Tuning the Cell Membrane Potential.
    Article Snippet: To simulate numerically the electrostatic response of the system presented in Figure 6, a finite element method (FEM)-based two-dimensional (2D) model was developed using commercial software (COMSOL Multiphysics 6.0).

    Article Title: Supporting Information for Efficient and stable acidic CO2 electrolysis to formic acid by a reservoir structure design
    Article Snippet: A two-dimensional (2D) reaction-diffusion model was used to simulate local pH and the distribution of species concentration through COMSOL Multiphysics software 5.5.

    Article Title: Rational design of CMUTs with annular electrodes for high ultrasonic emission via ESSE enabled stiffness adjustment
    Article Snippet: Capacitive micromechanical ultrasonic transducers (CMUTs) with high transmitting acoustic pressure are in urgent demand in the rapidly growing field of air-coupled and therapeutic ultras ound.. However, most current CMUTs can rarely balance the performance improvement and batch fabrication capacity, which severely impedes their practical applications.. This paper proposes novel CMUTs with annular electrodes that can implement significant improvement in multiple performances while featuring a simple structure and batch fabrication feasibility.

    Article Title: Real-Time and Ultrasensitive Prostate-Specific Antigen Sensing Using Love-Mode Surface Acoustic Wave Immunosensor Based on MoS 2 @Cu 2 O-Au Nanocomposites.
    Article Snippet: A simplified two-dimensional (2D) FEA model of the L-SAW immunosensor chip was developed using COMSOL Multiphysics 6.0.

    Article Title: Real-Time and Ultrasensitive Prostate-Specific Antigen Sensing Using Love-Mode Surface Acoustic Wave Immunosensor Based on MoS 2 @Cu 2 O-Au Nanocomposites
    Article Snippet: A simplified two-dimensional (2D) FEA model of the L-SAW immunosensor chip was developed using COMSOL Multiphysics 6.0.

    Article Title: Design of a novel anti-reflective coating with ultra-low reflectance based on resin-anchored hollow silica strategy
    Article Snippet: The strategy of resin-anchored hollow silica particles (HSPs) offers a tempting option for large-scale fabrication of anti-reflective functional surfaces on flexible plastic substrates.. However, attempts to experimentally investigate the structure-performance relationship of such anti-reflective coatings and to further optimize the coating structure require long experimental cycles and significant labor costs.. In view of this, the effectiveness of using COMSOL two-dimensional (2D) simulation to solve the problem is validated in conjunction with experimental results.

    Software:

    Article Title: Modified Carbon Nanotubes Favor Fibroblast Growth by Tuning the Cell Membrane Potential.
    Article Snippet: To simulate numerically the electrostatic response of the system presented in Figure 6, a finite element method (FEM)-based two-dimensional (2D) model was developed using commercial software (COMSOL Multiphysics 6.0).

    Article Title: Supporting Information for Efficient and stable acidic CO2 electrolysis to formic acid by a reservoir structure design
    Article Snippet: A two-dimensional (2D) reaction-diffusion model was used to simulate local pH and the distribution of species concentration through COMSOL Multiphysics software 5.5.

    Article Title: Rational design of CMUTs with annular electrodes for high ultrasonic emission via ESSE enabled stiffness adjustment
    Article Snippet: Capacitive micromechanical ultrasonic transducers (CMUTs) with high transmitting acoustic pressure are in urgent demand in the rapidly growing field of air-coupled and therapeutic ultras ound.. However, most current CMUTs can rarely balance the performance improvement and batch fabrication capacity, which severely impedes their practical applications.. This paper proposes novel CMUTs with annular electrodes that can implement significant improvement in multiple performances while featuring a simple structure and batch fabrication feasibility.

    Article Title: Real-Time and Ultrasensitive Prostate-Specific Antigen Sensing Using Love-Mode Surface Acoustic Wave Immunosensor Based on MoS 2 @Cu 2 O-Au Nanocomposites.
    Article Snippet: A simplified two-dimensional (2D) FEA model of the L-SAW immunosensor chip was developed using COMSOL Multiphysics 6.0.

    Article Title: Real-Time and Ultrasensitive Prostate-Specific Antigen Sensing Using Love-Mode Surface Acoustic Wave Immunosensor Based on MoS 2 @Cu 2 O-Au Nanocomposites
    Article Snippet: A simplified two-dimensional (2D) FEA model of the L-SAW immunosensor chip was developed using COMSOL Multiphysics 6.0.

    Article Title: Design of a novel anti-reflective coating with ultra-low reflectance based on resin-anchored hollow silica strategy
    Article Snippet: The strategy of resin-anchored hollow silica particles (HSPs) offers a tempting option for large-scale fabrication of anti-reflective functional surfaces on flexible plastic substrates.. However, attempts to experimentally investigate the structure-performance relationship of such anti-reflective coatings and to further optimize the coating structure require long experimental cycles and significant labor costs.. In view of this, the effectiveness of using COMSOL two-dimensional (2D) simulation to solve the problem is validated in conjunction with experimental results.

    Construct:

    Article Title: Modified Carbon Nanotubes Favor Fibroblast Growth by Tuning the Cell Membrane Potential.
    Article Snippet: To simulate numerically the electrostatic response of the system presented in Figure 6, a finite element method (FEM)-based two-dimensional (2D) model was developed using commercial software (COMSOL Multiphysics 6.0).

    Article Title: Supporting Information for Efficient and stable acidic CO2 electrolysis to formic acid by a reservoir structure design
    Article Snippet: A two-dimensional (2D) reaction-diffusion model was used to simulate local pH and the distribution of species concentration through COMSOL Multiphysics software 5.5.

    Article Title: Rational design of CMUTs with annular electrodes for high ultrasonic emission via ESSE enabled stiffness adjustment
    Article Snippet: Capacitive micromechanical ultrasonic transducers (CMUTs) with high transmitting acoustic pressure are in urgent demand in the rapidly growing field of air-coupled and therapeutic ultras ound.. However, most current CMUTs can rarely balance the performance improvement and batch fabrication capacity, which severely impedes their practical applications.. This paper proposes novel CMUTs with annular electrodes that can implement significant improvement in multiple performances while featuring a simple structure and batch fabrication feasibility.

    Article Title: Real-Time and Ultrasensitive Prostate-Specific Antigen Sensing Using Love-Mode Surface Acoustic Wave Immunosensor Based on MoS 2 @Cu 2 O-Au Nanocomposites.
    Article Snippet: A simplified two-dimensional (2D) FEA model of the L-SAW immunosensor chip was developed using COMSOL Multiphysics 6.0.

    Article Title: Real-Time and Ultrasensitive Prostate-Specific Antigen Sensing Using Love-Mode Surface Acoustic Wave Immunosensor Based on MoS 2 @Cu 2 O-Au Nanocomposites
    Article Snippet: A simplified two-dimensional (2D) FEA model of the L-SAW immunosensor chip was developed using COMSOL Multiphysics 6.0.

    Article Title: Design of a novel anti-reflective coating with ultra-low reflectance based on resin-anchored hollow silica strategy
    Article Snippet: The strategy of resin-anchored hollow silica particles (HSPs) offers a tempting option for large-scale fabrication of anti-reflective functional surfaces on flexible plastic substrates.. However, attempts to experimentally investigate the structure-performance relationship of such anti-reflective coatings and to further optimize the coating structure require long experimental cycles and significant labor costs.. In view of this, the effectiveness of using COMSOL two-dimensional (2D) simulation to solve the problem is validated in conjunction with experimental results.



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    In experimental module, non-resistant and temozolomide (TMZ)-resistant human glioblastoma (hGB) cells were tumoroid-cultured using self-filling microwell arrays (SFMAs). After four days, allowing to form a compact solid tumor structure, tumoroids were co-cultured with NPC-differentiated neurons in a hydrogel matrix within a microfluidic chip. The growth and invasion of tumoroids were monitored over 7 days and were quantified via ImageJ. In the HDC framework, non-resistant and TMZ-resistant cells were two-dimensional (2D) cultured, their metabolic rates were extracted and input to the model, and predictions were validated by comparing with the experimental data. Created with BioRender.com.

    Journal: Communications Engineering

    Article Title: Insights from a multiscale framework on metabolic rate variation driving glioblastoma multiforme growth and invasion

    doi: 10.1038/s44172-024-00319-9

    Figure Lengend Snippet: In experimental module, non-resistant and temozolomide (TMZ)-resistant human glioblastoma (hGB) cells were tumoroid-cultured using self-filling microwell arrays (SFMAs). After four days, allowing to form a compact solid tumor structure, tumoroids were co-cultured with NPC-differentiated neurons in a hydrogel matrix within a microfluidic chip. The growth and invasion of tumoroids were monitored over 7 days and were quantified via ImageJ. In the HDC framework, non-resistant and TMZ-resistant cells were two-dimensional (2D) cultured, their metabolic rates were extracted and input to the model, and predictions were validated by comparing with the experimental data. Created with BioRender.com.

    Article Snippet: Here, we report on a hybrid discrete-continuum (HDC) mathematical framework that uses metabolic data from a biomimetic two-dimensional (2D) in-vitro cancer model to predict three-dimensional (3D) behaviour of in-vitro human glioblastoma (hGB).

    Techniques: Cell Culture