Showing results (1-10 of 47) with videos related to
Sort By:
Pageof 5
Biomaterials Science|March 8, 2021
Structural crystallisation of crosslinked 3D PEDOT:PSS anisotropic porous biomaterials to generate highly conductive platforms for tissue engineering applicationsMatteo Solazzo, Michael G MonaghanACS Biomaterials Science & Engineering|August 2, 2023
A Workflow to Produce a Low-Cost In Vitro Platform for the Electric-Field Pacing of Cellularised 3D Porous ScaffoldsMatteo Solazzo, Michael G MonaghanAdvanced Drug Delivery Reviews|September 28, 2020
Electroactive material-based biosensors for detection and drug deliveryDinorath Olvera, Michael G MonaghanFrontiers in Cardiovascular Medicine|August 17, 2019
The Role of Macrophages in the Infarcted Myocardium: Orchestrators of ECM RemodelingSinead A O'Rourke, Aisling Dunne, Michael G MonaghanACS Applied Materials & Interfaces|April 22, 2022
Beyond Chemistry: Tailoring Stiffness and Microarchitecture to Engineer Highly Sensitive Biphasic Elastomeric Piezoresistive SensorsMatteo Solazzo, Linette Hartzell, Ciara O'Farrell, et al.Tissue Engineering. Part B, Reviews|June 5, 2021
Resident Macrophages and Their Potential in Cardiac Tissue EngineeringMeenakshi Suku, Lesley Forrester, Manus Biggs, et al.Advanced Drug Delivery Reviews|October 26, 2023
Thou shall not heal: Overcoming the non-healing behaviour of diabetic foot ulcers by engineering the inflammatory microenvironmentMichael G Monaghan, Rajiv Borah, Charlotte Thomsen, et al.Advanced Drug Delivery Reviews|August 30, 2023
Probing organoid metabolism using fluorescence lifetime imaging microscopy (FLIM): The next frontier of drug discovery and disease understandingMargarida Barroso, Michael G Monaghan, Raluca Niesner, et al.APL Bioengineering|October 26, 2019
The rationale and emergence of electroconductive biomaterial scaffolds in cardiac tissue engineeringMatteo Solazzo, Fergal J O'Brien, Valeria Nicolosi, et al.Materials Today. Bio|January 16, 2025
From innovation to clinic: Emerging strategies harnessing electrically conductive polymers to enhance electrically stimulated peripheral nerve repairRajiv Borah, Daniel Diez Clarke, Jnanendra Upadhyay, et al.Pageof 5