71
TÍTULO: Enhancing Distraction Osteogenesis With Carbon Fiber Reinforced Polyether Ether Ketone Bone Pins and a Three-Dimensional Printed Transfer Device to Permit Artifact-Free Three-Dimensional Magnetic Resonance Imaging
AUTORES: Karen A Eley; Mehran Moazen; Gaspar Delso; Maryam Javidan; Joshua Kaggie; Deepak M Kalaskar; Jonathan C Knowles; Nazanin Owji; Stephen R Watt-Smith;
PUBLICAÇÃO: 2020, FONTE: Journal of Craniofacial Surgery, VOLUME: 32, NÚMERO: 1
INDEXADO EM: CrossRef: 1
NO MEU: ORCID
72
TÍTULO: Comparative study of photoinitiators for the synthesis and 3D printing of a light-curable, degradable polymer for custom-fit hard tissue implants
AUTORES: Taleen Shakouri; Jae-Ryung Cha; Nazanin Owji; Peter Haddow; Thomas E Robinson; Kapil D Patel; Elena García-Gareta; Hae-Won Kim; Jonathan C Knowles;
PUBLICAÇÃO: 2020, FONTE: Biomedical Materials, VOLUME: 16, NÚMERO: 1
INDEXADO EM: CrossRef: 6
NO MEU: ORCID
73
TÍTULO: Biological impact of nanodiamond particles – label free, high-resolution methods for nanotoxicity assessment
AUTORES: Dipesh Khanal; Fan Zhang; Yang Song; Herman Hau; Archana Gautam; Seiji Yamaguchi; Jamie Uertz; Stewart Mills; Alexey Kondyurin; Jonathan C Knowles; George Georgiou; Iqbal Ramzan; Weidong Cai; Kee Woei Ng; Wojciech Chrzanowski;
PUBLICAÇÃO: 2019, FONTE: Nanotoxicology, VOLUME: 13, NÚMERO: 9
INDEXADO EM: CrossRef: 10
NO MEU: ORCID
74
TÍTULO: Synthesis, Characterization, and 3D Printing of an Isosorbide-Based, Light-Curable, Degradable Polymer for Potential Application in Maxillofacial Reconstruction
AUTORES: Nazanin Owji; Alaa Aldaadaa; Jae-Ryung Cha; Taleen Shakouri; Elena García-Gareta; Hae-Won Kim; Jonathan C Knowles;
PUBLICAÇÃO: 2019, FONTE: ACS Biomaterials Science & Engineering, VOLUME: 6, NÚMERO: 5
INDEXADO EM: CrossRef: 15
NO MEU: ORCID
75
TÍTULO: Antibacterial Copper-Doped Calcium Phosphate Glasses for Bone Tissue Regeneration
AUTORES: Farzad Foroutan; Jamie McGuire; Priyanka Gupta; Athanasios Nikolaou; Benjamin A Kyffin; Nicole L Kelly; John V Hanna; Jorge Gutierrez-Merino; Jonathan C Knowles; Song-Yi Baek; Eirini Velliou; Daniela Carta;
PUBLICAÇÃO: 2019, FONTE: ACS Biomaterials Science & Engineering, VOLUME: 5, NÚMERO: 11
INDEXADO EM: CrossRef: 33
NO MEU: ORCID
76
TÍTULO: Combined Effects of Nanoroughness and Ions Produced by Electrodeposition of Mesoporous Bioglass Nanoparticle for Bone Regeneration
AUTORES: Kapil D Patel; Jennifer O Buitrago; Prakash P Parthiban; Jung-Hwan Lee; Rajendra K Singh; Jonathan C Knowles; Hae-Won Kim;
PUBLICAÇÃO: 2019, FONTE: ACS Applied Bio Materials, VOLUME: 2, NÚMERO: 11
INDEXADO EM: CrossRef: 31
NO MEU: ORCID
77
TÍTULO: Differential chondro- and osteo-stimulation in three-dimensional porous scaffolds with different topological surfaces provides a design strategy for biphasic osteochondral engineering
AUTORES: Chinmaya Mahapatra; Jung-Ju Kim; Jung-Hwan Lee; Guang-Zhen Jin; Jonathan C Knowles; Hae-Won Kim;
PUBLICAÇÃO: 2019, FONTE: Journal of Tissue Engineering, VOLUME: 10
INDEXADO EM: CrossRef: 21
NO MEU: ORCID
78
TÍTULO: Dual-ion delivery for synergistic angiogenesis and bactericidal capacity with silica-based microsphere
AUTORES: Khaliun Boldbaatar; Khandmaa Dashnyam; Jonathan C Knowles; Hae-Hyoung Lee; Jung-Hwan Lee; Hae-Won Kim;
PUBLICAÇÃO: 2019, FONTE: Acta Biomaterialia, VOLUME: 83
INDEXADO EM: CrossRef: 40
NO MEU: ORCID
79
TÍTULO: Unidirectional neuronal cell growth and differentiation on aligned polyhydroxyalkanoate blend microfibres with varying diameters
AUTORES: Lorena R Lizarraga‐Valderrama; Caroline S Taylor; Frederik Claeyssens; John W Haycock; Jonathan C Knowles; Ipsita Roy;
PUBLICAÇÃO: 2019, FONTE: Journal of Tissue Engineering and Regenerative Medicine, VOLUME: 13, NÚMERO: 9
INDEXADO EM: CrossRef: 49
NO MEU: ORCID
80
TÍTULO: Assessing behaviour of osteoblastic cells in dynamic culture conditions using titanium-doped phosphate glass microcarriers
AUTORES: David De Silva Thompson; Carlotta Peticone; Iva Burova; Rebecca J Shipley; Jonathan C Knowles; Hae-Won Kim; Martina Micheletti; Ivan B Wall;
PUBLICAÇÃO: 2019, FONTE: Journal of Tissue Engineering, VOLUME: 10
INDEXADO EM: CrossRef: 11
NO MEU: ORCID
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