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Advanced Healthcare Materials|November 28, 2012
Construction of 3D, layered skin, microsized tissues by using cell beads for cellular function analysisYuya Morimoto, Risa Tanaka, Shoji Takeuchi
Biomaterials Science|June 3, 2020
Three-dimensional cell culture based on microfluidic techniques to mimic living tissuesYuya Morimoto, Shoji Takeuchi
Clinical Calcium|February 25, 2017
[<i>In vitro</i> construction of skeletal muscle tissues.]Yuya Morimoto, Shoji Takeuchi
Advanced Healthcare Materials|May 24, 2022
3D-Printed Centrifugal Pump Driven by Magnetic Force in Applications for Microfluidics in Biological AnalysisByeongwook Jo, Yuya Morimoto, Shoji Takeuchi
Science Robotics|November 3, 2020
Biohybrid robot powered by an antagonistic pair of skeletal muscle tissuesYuya Morimoto, Hiroaki Onoe, Shoji Takeuchi
Journal of Bioscience and Bioengineering|June 22, 2016
Vessel-like channels supported by poly-l-lysine tubesNobuhito Mori, Yuya Morimoto, Shoji Takeuchi
Langmuir : the ACS Journal of Surfaces and Colloids|October 23, 2009
Monodisperse cell-encapsulating peptide microgel beads for 3D cell cultureYukiko Tsuda, Yuya Morimoto, Shoji Takeuchi
Biomaterials|December 4, 2016
Skin integrated with perfusable vascular channels on a chipNobuhito Mori, Yuya Morimoto, Shoji Takeuchi
APL Bioengineering|April 9, 2020
Biohybrid robot with skeletal muscle tissue covered with a collagen structure for moving in airYuya Morimoto, Hiroaki Onoe, Shoji Takeuchi
Biofabrication|November 16, 2018
Perfusable and stretchable 3D culture system for skin-equivalentNobuhito Mori, Yuya Morimoto, Shoji Takeuchi
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