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Numerical modeling of inkjet cell output under the interplay of cell-laden bioink consumption and sedimentation
Inkjet printing utilizes the bioink involving biological materials and living cells to generate
cell-laden droplets for precise construction of 3D tissue/organ models in a layer-by-layer …
cell-laden droplets for precise construction of 3D tissue/organ models in a layer-by-layer …
Spatial distribution of encapsulated cells dramatically alters biomechanical properties and microstructure of 3D printed cellular structures
Additive manufacturing to fabricate tissue/organ models finds various applications in tissue
engineering and regenerative medicine. The bioink containing extracellular matrix and living …
engineering and regenerative medicine. The bioink containing extracellular matrix and living …
Effect of micropillar density on morphology and migration of low and high metastatic potential breast cancer cells
Study of cell migration in cancer is crucial to the comprehension of the processes and factors
that govern tumor spread. Cancer cells migrate invading tissues, causing alterations in cell …
that govern tumor spread. Cancer cells migrate invading tissues, causing alterations in cell …
Tuning physio-mechanical properties of graded micropillar polydimethylsiloxane substrates for cellular attachment and guided migration
The study of cell–substrate interaction and cellular behavior is critical in tissue engineering
and microfluidic research. Since the substrate properties affect the cellular response, it is …
and microfluidic research. Since the substrate properties affect the cellular response, it is …
Improving uniformity of cell distribution in post-inkjet-based bioprinting
Advancements in additive manufacturing enable the fabrication of in vitro biomimetic grafts
leveraging biological materials and cells for various biomedical applications. The realization …
leveraging biological materials and cells for various biomedical applications. The realization …