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- W2605200317 abstract "This chapter provides an introduction to the mechanical forces that exist in liver tissue and explores the significance of biomechanical cues for liver tissue engineering. It reviews liver structure and also provides an overview of liver biomechanics, emphasizing organ-, and tissue-scale characterizations of liver's mechanical properties and hemodynamics. The chapter then summarizes current knowledge of liver mechanobiology, highlighting cellular-scale mechanical forces in liver, cellular mechanotransduction mechanisms, and literature evidence of the mechanosensitivity of numerous liver cell types. It further discusses the dynamic biophysical stimuli that are present in current perfusion-based liver tissue engineering strategies. Looking to the future, it is likely that computational modeling will play an increasingly important role in optimizing the complex dynamic environment inside perfused 3D culture systems for liver tissue engineering. Advanced models can simulate cell-level conditions during the initial seeding process as well as throughout the process of tissue development and maturation." @default.
- W2605200317 created "2017-04-14" @default.
- W2605200317 creator A5057011309 @default.
- W2605200317 date "2017-04-07" @default.
- W2605200317 modified "2023-10-17" @default.
- W2605200317 title "Liver Tissue Engineering" @default.
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