An open electromagnetic tracking framework applied to targeted liver tumour ablation
Author(s) -
Stephen Hinds,
Herman Alexander Jaeger,
Richard Burke,
Brodie O’Sullivan,
Joseph Keane,
Fabian Trauzettel,
Bruno Marques,
Stéphane Cotin,
Brian Bird,
Håkon Olav Leira,
Erlend Fagertun Hofstad,
Ole Vegard Solberg,
Thomas Langø,
Pádraig CantillonMurphy
Publication year - 2019
Publication title -
international journal of computer assisted radiology and surgery
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.701
H-Index - 49
eISSN - 1861-6429
pISSN - 1861-6410
DOI - 10.1007/s11548-019-01983-5
Subject(s) - ablation , tracking (education) , computer science , medicine , radiology , medical physics , psychology , pedagogy
Electromagnetic tracking is a core platform technology in the navigation and visualisation of image-guided procedures. The technology provides high tracking accuracy in non-line-of-sight environments, allowing instrument navigation in locations where optical tracking is not feasible. EMT can be beneficial in applications such as percutaneous radiofrequency ablation for the treatment of hepatic lesions where the needle tip may be obscured due to difficult liver environments (e.g subcutaneous fat or ablation artefacts). Advances in the field of EMT include novel methods of improving tracking system accuracy, precision and error compensation capabilities, though such system-level improvements cannot be readily incorporated in current therapy applications due to the 'blackbox' nature of commercial tracking solving algorithms.
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