Search Results - "Tashman, Joshua W."
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FRESH 3D Bioprinting a Full-Size Model of the Human Heart
Published in ACS biomaterials science & engineering (09-11-2020)“…Recent advances in embedded three-dimensional (3D) bioprinting have expanded the design space for fabricating geometrically complex tissue scaffolds using…”
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Emergence of FRESH 3D printing as a platform for advanced tissue biofabrication
Published in APL bioengineering (01-03-2021)“…In tissue engineering, an unresolved challenge is how to build complex 3D scaffolds in order to recreate the structure and function of human tissues and…”
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Development of a high-performance open-source 3D bioprinter
Published in Scientific reports (31-12-2022)“…The application of 3D printing to biological research has provided the tissue engineering community with a method for organizing cells and biological materials…”
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Transport properties of ultra-thin VO2 films on (001) TiO2 grown by reactive molecular-beam epitaxy
Published in Applied physics letters (19-10-2015)“…We report the growth of (001)-oriented VO2 films as thin as 1.5 nm with abrupt and reproducible metal-insulator transitions (MIT) without a capping layer…”
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5
A high performance open-source syringe extruder optimized for extrusion and retraction during FRESH 3D bioprinting
Published in HardwareX (01-04-2021)“…[Display omitted] Recent advances in embedded 3D bioprinting have significantly improved the resolution of individual filaments to below 100 µm; however,…”
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Fibronectin-based nanomechanical biosensors to map 3D surface strains in live cells and tissue
Published in Nature communications (18-11-2020)“…Mechanical forces are integral to cellular migration, differentiation and tissue morphogenesis; however, it has proved challenging to directly measure strain…”
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3D printed biaxial stretcher compatible with live fluorescence microscopy
Published in HardwareX (01-04-2020)“…[Display omitted] Mechanical characterization and tensile testing of biological samples is important when determining the material properties of a tissue;…”
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3D Bioprinting using UNIversal Orthogonal Network (UNION) Bioinks
Published in Advanced functional materials (01-02-2021)“…Three‐dimensional (3D) bioprinting is a promising technology to produce tissue‐like structures, but a lack of diversity in bioinks is a major limitation…”
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3D Bioprinted Patient‐Specific Extracellular Matrix Scaffolds for Soft Tissue Defects
Published in Advanced healthcare materials (01-12-2022)“…Soft tissue injuries such as volumetric muscle loss (VML) are often too large to heal normally on their own, resulting in scar formation and functional…”
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In situ volumetric imaging and analysis of FRESH 3D bioprinted constructs using optical coherence tomography
Published in Biofabrication (01-01-2023)“…As 3D bioprinting has grown as a fabrication technology, so too has the need for improved analytical methods to characterize engineered constructs. This is…”
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Long-Fiber Embedded Hydrogel 3D Printing for Structural Reinforcement
Published in ACS biomaterials science & engineering (10-01-2022)“…Hydrogels are candidate building blocks in a wide range of biomaterial applications including soft and biohybrid robotics, microfluidics, and tissue…”
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Endothelial superoxide dismutase 2 is decreased in sickle cell disease and regulates fibronectin processing
Published in Function (Oxford, England) (2022)“…Sickle cell disease (SCD) is a genetic red blood cell disorder characterized by increased reactive oxygen species (ROS) and a concordant reduction in…”
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Nature of the Metal Insulator Transition in Ultrathin Epitaxial Vanadium Dioxide
Published in Nano letters (09-10-2013)“…We have combined hard X-ray photoelectron spectroscopy with angular dependent O K-edge and V L-edge X-ray absorption spectroscopy to study the electronic…”
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14
Transport properties of ultra-thin VO{sub 2} films on (001) TiO{sub 2} grown by reactive molecular-beam epitaxy
Published in Applied physics letters (19-10-2015)“…We report the growth of (001)-oriented VO{sub 2} films as thin as 1.5 nm with abrupt and reproducible metal-insulator transitions (MIT) without a capping…”
Get full text
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