Zugriffsnummer 55281
Dokumenttyp Zeitschriftenartikel Open Access Hybrid
Peer Review mit Peer Review
Sprache Englisch
Titel Read my leads: Subject-specific RF hazard assessment and mitigation for DBS implants in MRI                  
Autor(in); Institution
Silemek, Berk; 8.1, Biomedizinische Magnetresonanz, PTB-Berlin
Seifert, Frank; 8.1, Biomedizinische Magnetresonanz, PTB-Berlin
Yalaz, Mevlüt; Department of Electrical and Information Engineering, Christian-Albrechts-Universität zu Kiel, Kiel, GERMANY
Höft, Michael; Department of Electrical and Information Engineering, Christian-Albrechts-Universität zu Kiel, Kiel, GERMANY
Deuschl, Günther; Department of Neurology, Christian-Albrechts-Universität zu Kiel, Kiel, GERMANY
Has Silemek, Arzu; Department of Neurology, Cedars-Sinai Medical Center, Los Angeles, CA, USA
Brühl, Rüdiger; 8.1, Biomedizinische Magnetresonanz, PTB-Berlin
Ittermann, Bernd; 8.1, Biomedizinische Magnetresonanz, PTB-Berlin
Winter, Lukas; 8.1, Biomedizinische Magnetresonanz, PTB-Berlin
Quelle/Jahr Magnetic Resonance in Medicine: 95 (2026), 4, 2316 - 2330
Artikelnummer mrm.70186
ISSN 0740-3194 (print) ; 1522-2594 (online)
DOI
URL
Verlag New York, NY: Wiley
Freie Schlagworte MR safety ; RF heating ; deep brain stimulation ; impedance ; implants ; sensors
Zusammenfassung Purpose: To develop and validate a framework for personalized, implant-specific MRI safety assessments using feedback from commercial deep brain stimulation (DBS) systems. To further use this framework to suppress RF-induced heating with minimum compromise in imaging performance. Methods: Two off-the-shelf DBS implantable pulse generators and a commercial 8-electrode DBS lead were utilized for quantitative safety assessments. In controlled phantom experiments, RF-induced voltages on the DBS lead, and temperature-dependent admittance/impedance changes in the tissue surrounding the lead's electrodes were quantified. This information was used to suppress implant-related RF heating by calculating implant-friendly imaging modes. Experimental conditions included excitations with different RF transmit coils (8-channel 3 T and 7 T head coils, 2-channel 3 T body coil), over 1000 different exposure scenarios, different implant configurations, and the use of external reference probes ( E-field and temperature) for validation. Imaging performance of the applied implant-friendly mode was demonstrated in vivo on a 3 T scanner. Results: E-fields and temperature rises around the tip electrodes could be robustly detected directly from the DBS lead. Both signals quantify the momentary patient hazard. Utilizing these measurements-recorded and wirelessly transmitted by the DBS system-tissue heating was reduced up to 99% for the same transmission power with comparable imaging performance to a conventional imaging mode. Conclusion: All the information needed for full in situ control of implant heating in MRI can be read directly from the DBS device. This approach would improve both patient safety and image quality while simultaneously reducing workload and responsibilities of the clinical personnel.
Kostenfreier Zugang Open Access Hybrid
Rechteinformation CC BY 4.0 ; Creative Commons Attribution 4.0 License
Förderinformationen (1) Förderername: European Association of National Metrology Institutes (EURAMET)
Förderer ID: 0000 0004 6432 5234
Förderer ID Typ: ISNI
Förderprogramm: 1NRM05 STASIS
Förderinformationen (2) Förderername: Deutsche Forschungsgemeinschaft (DFG)
Förderer ID: 0000 0001 2096 9829
Förderer ID Typ: ISNI
Förderungsnummer: project T1 of the Collaborative research Centre CRC 1261

Zitierung

Silemek, B., Seifert, F., Yalaz, M., Höft, M., Deuschl, G., Has Silemek, A., Brühl, R., Ittermann, B., & Winter, L. (2026). Read my leads: Subject-specific RF hazard assessment and mitigation for DBS implants in MRI                  . Magnetic Resonance in Medicine, 95(4), 2316–2330. https://doi.org/10.1002/mrm.70186

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