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Atsushi Mahara

Showing results (61-70 of 69) with videos related to

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Journal of Biomedical Materials Research. Part A|January 29, 2019
Short-term evaluation of thromboresistance of a poly(ether ether ketone) (PEEK) mechanical heart valve with poly(2-methacryloyloxyethyl phosphorylcholine) (PMPC)-grafted surface in a porcine aortic valve replacement modelYusuke Kambe, Atsushi Mahara, Hiroshi Tanaka, et al.
Biomed Research International|October 18, 2016
The Alteration of the Epidermal Basement Membrane Complex of Human Nevus Tissue and Keratinocyte Attachment after High Hydrostatic PressurizationNaoki Morimoto, Chizuru Jinno, Atsushi Mahara, et al.
Biomed Research International|April 17, 2015
The rapid inactivation of porcine skin by applying high hydrostatic pressure without damaging the extracellular matrixNaoki Morimoto, Atsushi Mahara, Kouji Shima, et al.
Journal of Artificial Organs : the Official Journal of the Japanese Society for Artificial Organs|December 5, 2014
Micro-CT evaluation of high pressure-decellularized cardiovascular tissues transplanted in rat subcutaneous accelerated-calcification modelAtsushi Mahara, Mitsuru Sago, Haruka Yamaguchi, et al.
Biomaterials|December 25, 2007
Scaffolds from electrospun polyhydroxyalkanoate copolymers: fabrication, characterization, bioabsorption and tissue responseTang H Ying, Daisuke Ishii, Atsushi Mahara, et al.
Biomed Research International|March 29, 2020
High Hydrostatic Pressure Therapy Annihilates Squamous Cell Carcinoma in a Murine ModelToshihito Mitsui, Naoki Morimoto, Atsushi Mahara, et al.
Biomed Research International|February 21, 2020
Exploration of the Pressurization Condition for Killing Human Skin Cells and Skin Tumor Cells by High Hydrostatic PressureToshihito Mitsui, Naoki Morimoto, Atsushi Mahara, et al.
Tissue Engineering. Part C, Methods|June 30, 2015
Inactivation of Human Nevus Tissue Using High Hydrostatic Pressure for Autologous Skin Reconstruction: A Novel Treatment for Giant Congenital Melanocytic NeviChizuru Jinno, Naoki Morimoto, Atsushi Mahara, et al.
Plos One|July 31, 2015
Preparation of Inactivated Human Skin Using High Hydrostatic Pressurization for Full-Thickness Skin ReconstructionPham Hieu Liem, Naoki Morimoto, Atsushi Mahara, et al.
Pageof 7

Showing results (61-70 of 69) with videos related to

Sort By:
Pageof 7
You have reached the last page of results.This site can display upto 69 results.
Journal of Biomedical Materials Research. Part A|January 29, 2019
Short-term evaluation of thromboresistance of a poly(ether ether ketone) (PEEK) mechanical heart valve with poly(2-methacryloyloxyethyl phosphorylcholine) (PMPC)-grafted surface in a porcine aortic valve replacement modelYusuke Kambe, Atsushi Mahara, Hiroshi Tanaka, et al.
Biomed Research International|October 18, 2016
The Alteration of the Epidermal Basement Membrane Complex of Human Nevus Tissue and Keratinocyte Attachment after High Hydrostatic PressurizationNaoki Morimoto, Chizuru Jinno, Atsushi Mahara, et al.
Biomed Research International|April 17, 2015
The rapid inactivation of porcine skin by applying high hydrostatic pressure without damaging the extracellular matrixNaoki Morimoto, Atsushi Mahara, Kouji Shima, et al.
Journal of Artificial Organs : the Official Journal of the Japanese Society for Artificial Organs|December 5, 2014
Micro-CT evaluation of high pressure-decellularized cardiovascular tissues transplanted in rat subcutaneous accelerated-calcification modelAtsushi Mahara, Mitsuru Sago, Haruka Yamaguchi, et al.
Biomaterials|December 25, 2007
Scaffolds from electrospun polyhydroxyalkanoate copolymers: fabrication, characterization, bioabsorption and tissue responseTang H Ying, Daisuke Ishii, Atsushi Mahara, et al.
Biomed Research International|March 29, 2020
High Hydrostatic Pressure Therapy Annihilates Squamous Cell Carcinoma in a Murine ModelToshihito Mitsui, Naoki Morimoto, Atsushi Mahara, et al.
Biomed Research International|February 21, 2020
Exploration of the Pressurization Condition for Killing Human Skin Cells and Skin Tumor Cells by High Hydrostatic PressureToshihito Mitsui, Naoki Morimoto, Atsushi Mahara, et al.
Tissue Engineering. Part C, Methods|June 30, 2015
Inactivation of Human Nevus Tissue Using High Hydrostatic Pressure for Autologous Skin Reconstruction: A Novel Treatment for Giant Congenital Melanocytic NeviChizuru Jinno, Naoki Morimoto, Atsushi Mahara, et al.
Plos One|July 31, 2015
Preparation of Inactivated Human Skin Using High Hydrostatic Pressurization for Full-Thickness Skin ReconstructionPham Hieu Liem, Naoki Morimoto, Atsushi Mahara, et al.
Pageof 7