Zugriffsnummer 25922
Dokumenttyp Zeitschriftenartikel Open Access Gold
Peer Review mit Peer Review
Sprache Englisch
Titel Ultra-wideband sensors for improved magnetic resonance imaging, cardiovascular disease and tumour diagnostics
Autor(in); Institution
Thiel, Florian; 8.5, Metrologische Informationstechnik, PTB-Berlin
Kosch, Olaf; 8.1, Medizinische Messtechnik, PTB-Berlin
Seifert, Frank; 8.1, Medizinische Messtechnik, PTB-Berlin
Quelle/Jahr Special issue on "Sensors in Biomechanics and Biomedicine". Sensors: 10 (2010), 12, 10778 - 10802
Availability [online only]
ISSN 1424-8220
DOI
Verlag Basel: MDPI
Freie Schlagworte Ultra-wideband (UWB) radar ; electrocardiography (ECG) ; myocardial surface ; high and ultra-high field magnetic resonance imaging (MRI) ; fMRI ; multimodal sensing ; Finite-difference time-domain method (FDTD)
Zusammenfassung The specific advantages of ultra-wideband electromagnetic remote sensing (UWB radar) make it a particularly attractive technique for biomedical applications. We partially review our activities in utilizing this novel approach for the benefit of high and ultra-high field magnetic resonance imaging (MRI) and other applications, e.g., for intensive care medicine and biomedical research. We could show that our approach is beneficial for applications like motion tracking for high resolution brain imaging due to the non-contact acquisition of involuntary head motions with high spatial resolution, navigation for cardiac MRI due to our interpretation of the detected physiological mechanical contraction of the heart muscle and for MR safety, since we have investigated the influence of high static magnetic fields on myocardial mechanics. From our findings we could conclude, that UWB radar can serve as a navigator technique for high and ultra-high field magnetic resonance imaging and can be beneficial preserving the high resolution capability of this imaging modality. Furthermore it can potentially be used to support standard ECG analysis by complementary information where sole ECG analysis fails. Further analytical investigations have proven the feasibility of this method for intracranial displacements detection and the rendition of a tumour’s contrast agent based perfusion dynamic. Beside these analytical approaches we have carried out FDTD simulations of a complex arrangement mimicking the illumination of a human torso model incorporating the geometry of the antennas applied.
Kostenfreier Zugang Open Access Gold
Rechteinformation CC BY 3.0 ; Creative Commons Attribution 3.0 License

Zitierung

Thiel, F., Kosch, O., & Seifert, F. (2010). Ultra-wideband sensors for improved magnetic resonance imaging, cardiovascular disease and tumour diagnostics. Sensors, 10(12), 10778–10802. https://doi.org/10.3390/s101210778

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