{"id":"e702a8b81c12","type":"article","url":"https://hartvaat.nl/2026/02/23/elektrocardiografische-beeldvorming-technische-ontwikkelingen-en-toekomst/","title":"Elektrocardiografische beeldvorming: technische ontwikkelingen en toekomst","title_en":"Electrocardiographic imaging: technical developments and future applications for non-invasive electroanatomical study of the human heart","category":"algemeen","category_label":"Algemeen","professions":["cardioloog"],"tags":[],"journal":"Heart","doi":"http://heart.bmj.com/cgi/content/short/112/6/307?rss=1","source_url":"https://doi.org/http://heart.bmj.com/cgi/content/short/112/6/307?rss=1","authors":["Kadambadi","N.","Webber","M.","Captur","G."],"significance":6,"published":"2026-02-23","source_date":"2026-02-23","image":"https://hartvaat.nl/global/img/e8315535d29a.webp","kennis":[],"congress":"","summary_en":"This review described electrocardiographic imaging (ECGI) as a non-invasive technique combining patient-specific cardiac anatomy with body-surface potentials, discussing current technical developments and future clinical applications.","created":"2026-07-03T10:25:17Z","updated":"2026-07-03T13:24:44Z","licence":"Citeer vrij, met bronvermelding en een link naar hartvaat.nl (de url van het record). Samenvattingen zijn redactioneel werk van HartVaat; de oorspronkelijke publicaties blijven van hun uitgevers (doi). Geen medisch advies.","body_markdown":"Elektrocardiografische beeldvorming (ECGI) is een niet-invasieve techniek die patiëntspecifieke cardiale anatomie combineert met lichaamsoppervlakpotentialen om inzicht te krijgen in de epicardiale elektrische activiteit. Dit overzicht bespreekt technische ontwikkelingen en toekomstige toepassingen.","abstract_original":"<p>Electrocardiographic imaging (ECGI) is a non-invasive technique that combines patient-specific cardiac anatomy with numerous body-surface potentials to gain insight into the <I>in vivo</I> electrical epicardial activity across the whole heart. This review summarises some of the latest hardware developments for ECGI data acquisition as well as innovative software solutions to address the inverse problem of electrocardiography. It delves into some of the successful clinical applications of ECGI while highlighting the hurdles that still stand in the way of its more widespread roll-out to healthcare. As well as serving as a powerful tool for electrophysiological research, ECGI promises to play an increasingly valuable role in the personalised diagnosis and management of cardiac arrhythmias.</p>"}