Now showing items 1-4 of 4

    • 3D printable solid tissue-mimicking material for microwave phantoms 

      McDermott, Barry; Porter, Emily; O’Halloran, Martin; Poudel, Anup; Biggs, Manus; Karode, Nireeksha S.; Coffey, Austin B. (IEEE, 2018-09-10)
      Phantoms provide valuable platforms for testing of medical devices including microwave diagnostic systems. This work describes a 3D printable solid tissue-mimicking material (TMM) for the production of such phantoms. The ...
    • Bi-Frequency Symmetry Difference (BFSD) EIT in stroke diagnosis 

      McDermott, Barry; O'Halloran, Martin; Porter, Emily (EIT2019, 2019-07-01)
      BFSD-EIT can detect deviations in the inherent normal symmetry of the head due to, for example, the presence of a bleed or clot in stroke. We assess the potential of BFSD-EIT to robustly detect lesions under a series of ...
    • Detailed dielectric characterisation of the heart and great vessels 

      Istuk, Niko; McDermott, Barry; Porter, Emily; Santorelli, Adam; Abedi, Soroush; O’Halloran, Martin; Joachimowicz, Nadine; Roussel, Helene (IEEE, 2020-03-15)
      The dielectric properties of biological tissues play a significant role in the planning and development of electro- magnetic thermal therapies. In most cases in the literature, heart is considered as a homogeneous organ ...
    • Monitoring microwave thermal ablation using electrical impedance tomography: an experimental feasibility study 

      Bottiglieri, Anna; Dunne, Eoghan; McDermott, Barry; Cavagnaro, Marta; Porter, Emily; Farina, Laura (IEEE, 2020)
      Low-cost and reliable methods for monitoring the size of the ablation zone during microwave thermal ablation (MTA) are crucial in the oncological clinical practice. The aim of this work is to test the performance of ...