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3d computer-aided design (cad) software autodesk fusion v. 2.0.18950  (Autodesk Inc)

 
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    Structured Review

    Autodesk Inc 3d computer-aided design (cad) software autodesk fusion v. 2.0.18950
    Schematic representation of the passively perfused bone-marrow-on-a-chip (BMoC) device. ( a ) Exploded 3D illustration of the chip, consisting of two PDMS layers, the upper cell culture <t>microchamber</t> and the lower medium reservoir, separated by a porous membrane. The device is sealed on the top with a glass slide for cell observation. In magnification, a cross-section of the chip is presented, showing the mesenchymal stem cell (MSC) and hematopoietic stem and progenitor cell (HSPC) co-culture in the microchamber as well as the inserted interconnections reaching the microchamber. ( b ) Three-dimensional representation of the chip immersed in a 35 mm culture dish filled with medium. Passive perfusion of the chip is ensured via diffusion from the dish to the cell microchamber through the porous membrane.
    3d Computer Aided Design (Cad) Software Autodesk Fusion V. 2.0.18950, supplied by Autodesk 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/fusion+3d+computer-aided+design+(cad)+software/3d+computer+aided+design++cad++software/pmc11352072-54-2-8
    Average 90 stars, based on 1 article reviews
    3d computer-aided design (cad) software autodesk fusion v. 2.0.18950 - by Bioz Stars, 2026-10
    90/100 stars

    Images

    1) Product Images from "Mesenchymal Stem Cell and Hematopoietic Stem and Progenitor Cell Co-Culture in a Bone-Marrow-on-a-Chip Device toward the Generation and Maintenance of the Hematopoietic Niche"

    Article Title: Mesenchymal Stem Cell and Hematopoietic Stem and Progenitor Cell Co-Culture in a Bone-Marrow-on-a-Chip Device toward the Generation and Maintenance of the Hematopoietic Niche

    Journal: Bioengineering

    doi: 10.3390/bioengineering11080748

    Schematic representation of the passively perfused bone-marrow-on-a-chip (BMoC) device. ( a ) Exploded 3D illustration of the chip, consisting of two PDMS layers, the upper cell culture microchamber and the lower medium reservoir, separated by a porous membrane. The device is sealed on the top with a glass slide for cell observation. In magnification, a cross-section of the chip is presented, showing the mesenchymal stem cell (MSC) and hematopoietic stem and progenitor cell (HSPC) co-culture in the microchamber as well as the inserted interconnections reaching the microchamber. ( b ) Three-dimensional representation of the chip immersed in a 35 mm culture dish filled with medium. Passive perfusion of the chip is ensured via diffusion from the dish to the cell microchamber through the porous membrane.
    Figure Legend Snippet: Schematic representation of the passively perfused bone-marrow-on-a-chip (BMoC) device. ( a ) Exploded 3D illustration of the chip, consisting of two PDMS layers, the upper cell culture microchamber and the lower medium reservoir, separated by a porous membrane. The device is sealed on the top with a glass slide for cell observation. In magnification, a cross-section of the chip is presented, showing the mesenchymal stem cell (MSC) and hematopoietic stem and progenitor cell (HSPC) co-culture in the microchamber as well as the inserted interconnections reaching the microchamber. ( b ) Three-dimensional representation of the chip immersed in a 35 mm culture dish filled with medium. Passive perfusion of the chip is ensured via diffusion from the dish to the cell microchamber through the porous membrane.

    Techniques Used: Cell Culture, Membrane, Co-Culture Assay, Diffusion-based Assay

    The passively perfused BMoC device. ( a ) Photo of the device submerged in a 35 mm culture dish during the experimental process. Diametrically opposed channels were opened to allow for the medium’s replenishment in the chip reservoir. ( b ) SEM image (50× magnification) of a cross-section of the constructed BMoC device demonstrating its PDMS constituents, the cell culture microchamber, the medium reservoir, and the intervening PDMS membrane.
    Figure Legend Snippet: The passively perfused BMoC device. ( a ) Photo of the device submerged in a 35 mm culture dish during the experimental process. Diametrically opposed channels were opened to allow for the medium’s replenishment in the chip reservoir. ( b ) SEM image (50× magnification) of a cross-section of the constructed BMoC device demonstrating its PDMS constituents, the cell culture microchamber, the medium reservoir, and the intervening PDMS membrane.

    Techniques Used: Construct, Cell Culture, Membrane

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    Article Snippet: .. Required: • Fused deposition modelling 3D Printer • Fusion 360 computer-aided design software (V.2.0) (Supplier: Autodesk, USA), or similar • 1.75 mm polylactic acid plastic filament (cat no.: 55318; supplier: Verbatim, Germany) • Perfection Plus Impress-E putty (Soft) (cat no.: 238-0084; supplier: Dental Sky Wholesaler Ltd., Kent (UK only)) Steps: 1. ..

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    Article Snippet: .. Anchor preparation Note – Sections 1.1-1.3 are prepared under non-sterile conditions 1.1 Anchor mould preparation Required: • Fused deposition modelling 3D Printer • Fusion 360 computer-aided design software (V.2.0) (Supplier: Autodesk, USA), or similar • 1.75 mm polylactic acid plastic filament (cat no.: 55318; supplier: Verbatim, Germany) • Perfection Plus Impress-E putty (Soft) (cat no.: 238-0084; supplier: Dental Sky Wholesaler Ltd., Kent (UK only)) Steps: 1. ..

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    Article Snippet: .. The 3D printed device was designed using the Autodesk Fusion 360 computer-aided design (CAD) software. ..


    Article Title: Evaluation of a novel percutaneous pinning guide for femoral head or neck fracture: an ex vivo study
    Article Snippet: .. The PPG was designed using 3D computer-aided design (CAD) software (Autodesk Fusion 360; Autodesk, USA) ( ). ..

    Chick Chorioallantoic Membrane Assay:




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    Image Search Results


    Schematic representation of the passively perfused bone-marrow-on-a-chip (BMoC) device. ( a ) Exploded 3D illustration of the chip, consisting of two PDMS layers, the upper cell culture microchamber and the lower medium reservoir, separated by a porous membrane. The device is sealed on the top with a glass slide for cell observation. In magnification, a cross-section of the chip is presented, showing the mesenchymal stem cell (MSC) and hematopoietic stem and progenitor cell (HSPC) co-culture in the microchamber as well as the inserted interconnections reaching the microchamber. ( b ) Three-dimensional representation of the chip immersed in a 35 mm culture dish filled with medium. Passive perfusion of the chip is ensured via diffusion from the dish to the cell microchamber through the porous membrane.

    Journal: Bioengineering

    Article Title: Mesenchymal Stem Cell and Hematopoietic Stem and Progenitor Cell Co-Culture in a Bone-Marrow-on-a-Chip Device toward the Generation and Maintenance of the Hematopoietic Niche

    doi: 10.3390/bioengineering11080748

    Figure Lengend Snippet: Schematic representation of the passively perfused bone-marrow-on-a-chip (BMoC) device. ( a ) Exploded 3D illustration of the chip, consisting of two PDMS layers, the upper cell culture microchamber and the lower medium reservoir, separated by a porous membrane. The device is sealed on the top with a glass slide for cell observation. In magnification, a cross-section of the chip is presented, showing the mesenchymal stem cell (MSC) and hematopoietic stem and progenitor cell (HSPC) co-culture in the microchamber as well as the inserted interconnections reaching the microchamber. ( b ) Three-dimensional representation of the chip immersed in a 35 mm culture dish filled with medium. Passive perfusion of the chip is ensured via diffusion from the dish to the cell microchamber through the porous membrane.

    Article Snippet: For the microchamber, 3D computer-aided design (CAD) software (Autodesk Fusion v. 2.0.18950) was used to design its mold, which was later realized in an aluminum substrate with Computer Numerical Control (CNC) micromachining.

    Techniques: Cell Culture, Membrane, Co-Culture Assay, Diffusion-based Assay

    The passively perfused BMoC device. ( a ) Photo of the device submerged in a 35 mm culture dish during the experimental process. Diametrically opposed channels were opened to allow for the medium’s replenishment in the chip reservoir. ( b ) SEM image (50× magnification) of a cross-section of the constructed BMoC device demonstrating its PDMS constituents, the cell culture microchamber, the medium reservoir, and the intervening PDMS membrane.

    Journal: Bioengineering

    Article Title: Mesenchymal Stem Cell and Hematopoietic Stem and Progenitor Cell Co-Culture in a Bone-Marrow-on-a-Chip Device toward the Generation and Maintenance of the Hematopoietic Niche

    doi: 10.3390/bioengineering11080748

    Figure Lengend Snippet: The passively perfused BMoC device. ( a ) Photo of the device submerged in a 35 mm culture dish during the experimental process. Diametrically opposed channels were opened to allow for the medium’s replenishment in the chip reservoir. ( b ) SEM image (50× magnification) of a cross-section of the constructed BMoC device demonstrating its PDMS constituents, the cell culture microchamber, the medium reservoir, and the intervening PDMS membrane.

    Article Snippet: For the microchamber, 3D computer-aided design (CAD) software (Autodesk Fusion v. 2.0.18950) was used to design its mold, which was later realized in an aluminum substrate with Computer Numerical Control (CNC) micromachining.

    Techniques: Construct, Cell Culture, Membrane