Showing 121 - 140 results of 35,966 for search '(( significant chip based ) OR ( significant ((teer decrease) OR (we decrease)) ))', query time: 1.25s Refine Results
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    Manhattan plot that shows the location of genes involved in folate, homocysteine, and transsulfuration pathways for which we observed, from hybrid analyses, a significantly decreased risk of obstructive heart defects when the risk variant was paternally-derived compared to maternally-derived, The National Birth Defects Prevention Study, USA, October 1997–August 2008 births. by Jenil Patel (10271373)

    Published 2021
    “…<p>Manhattan plot that shows the location of genes involved in folate, homocysteine, and transsulfuration pathways for which we observed, from hybrid analyses, a significantly decreased risk of obstructive heart defects when the risk variant was paternally-derived compared to maternally-derived, The National Birth Defects Prevention Study, USA, October 1997–August 2008 births.…”
  17. 137

    DataSheet1_Evaluation of nanoparticle albumin-bound paclitaxel loaded macrophages for glioblastoma treatment based on a microfluidic chip.PDF by Zuorun Xie (18173167)

    Published 2024
    “…Furthermore, the developed GBM-on-a-chip model provides a potential ex vivo platform for innovative cell-based therapies and tailored therapeutic strategies for GBM.…”
  18. 138

    3D-Printed Perfusable Lab-on-a-Chip-Based Engineering of MSC-Derived Exosome-Enriched Vascularized Grafts for Skin Regeneration by Shalini Dasgupta (11046687)

    Published 2025
    “…This formulation was used to fabricate perfusable three-dimensional (3D) vascular channel scaffolds via extrusion-based bioprinting, followed by the coculture of human adult dermal fibroblasts (HADF) and dental pulp stem cells (DPSC) within a dynamic lab-on-a-chip system. …”
  19. 139

    3D-Printed Perfusable Lab-on-a-Chip-Based Engineering of MSC-Derived Exosome-Enriched Vascularized Grafts for Skin Regeneration by Shalini Dasgupta (11046687)

    Published 2025
    “…This formulation was used to fabricate perfusable three-dimensional (3D) vascular channel scaffolds via extrusion-based bioprinting, followed by the coculture of human adult dermal fibroblasts (HADF) and dental pulp stem cells (DPSC) within a dynamic lab-on-a-chip system. …”
  20. 140

    3D-Printed Perfusable Lab-on-a-Chip-Based Engineering of MSC-Derived Exosome-Enriched Vascularized Grafts for Skin Regeneration by Shalini Dasgupta (11046687)

    Published 2025
    “…This formulation was used to fabricate perfusable three-dimensional (3D) vascular channel scaffolds via extrusion-based bioprinting, followed by the coculture of human adult dermal fibroblasts (HADF) and dental pulp stem cells (DPSC) within a dynamic lab-on-a-chip system. …”