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Number of items: 7.

German

Reimann, C. and Puentes, M. and Maune, H. and Jakoby, R. and Bazrafshan, B. and Hübner, F. and Vogl, T. J. (2017):
A Cylindrical Shaped Theranostic Applicator for Percutaneous Microwave Ablation.
In: IEEE MTT-S International Microwave Bio Conference, pp. 1-4, DOI: 10.1109/IMBIOC.2017.7965791,
[Conference or Workshop Item]

English

Reimann, C. and Schuessler, M. and Schmidt, S. and Hübner, F. and Bazrafshan, B. and Vogl, T. and Jakoby, R. (2018):
Microwave Ablation Applicator with Sensing Capabilities for Thermal Treatment of Malignant Tissue.
In: 2018 IEEE/MTT-S International Microwave Symposium - IMS, pp. 1278-1281, ISSN 2576-7216, DOI: 10.1109/MWSYM.2018.8439625,
[Conference or Workshop Item]

Reimann, C. and Schmidt, S. and Schuessler, M. and Vogl, T. and Jakoby, R. (2018):
Dual mode microwave ablation applicator.
Berlin, In: 32nd Annual Meeting of the European Society for Hyperthermic Oncology, [Conference or Workshop Item]

Reimann, C. and Schuessler, M. and Jakoby, R. and Bazrafshan, B. and Hübner, F. and Vogl, T. (2018):
A Dual-Mode Microwave Applicator for Liver Tumor Thermotherapy.
72, In: Frequenz, pp. 141-149, DOI: 10.1515/freq-2018-0007,
[Article]

Reimann, C. and Puentes, M. and Schuessler, M. and Hübner, F. and Bazrafshan, B. and Vogl, T. J. and Jakoby, R. (2016):
Theranostic microwave applicator suitable for minimal invasive therapy of malignant tissue.
In: 2016 38th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC), pp. 340-343, ISSN 1557-170X, [Online-Edition: https://doi.org/10.1109/EMBC.2016.7590709],
[Conference or Workshop Item]

Reimann, C. and Puentes, M. and Schuessler, M. and Jakoby, R. (2016):
Design and realization of a microwave applicator for diagnosis and thermal ablation treatment of cancerous tissue.
In: 2016 German Microwave Conference (GeMiC), pp. 177-180, [Online-Edition: https://doi.org/10.1109/GEMIC.2016.7461584],
[Conference or Workshop Item]

Baranov, I. and Jarmiychuk, S. and Kirillov, S. and Novikov, A. and Obnorskii, V. and Pchelintsev, A. and Wien, K. and Reimann, C. (1999):
Macrocluster desorption effect caused by single MCI: charges of gold clusters (2-20 nm) desorbed due to electronic processes induced by fission fragment bombardment in nanodispersed gold targets.
B 157, In: Nuclear instruments and methods in physics research, pp. 167-173, [Article]

This list was generated on Sat Dec 14 00:32:03 2019 CET.