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Optimization of the Clinical Setting Using Numerical Simulations of the Electromagnetic Field in an Obese Patient Model for Deep Regional Hyperthermia of an 8 MHz Radiofrequency Capacitively Coupled Device in the Pelvis.
Ohguri T, Kuroda K, Yahara K, Nakahara S, Kakinouchi S, Itamura H, Morisaki T, Korogi Y. Ohguri T, et al. Among authors: yahara k. Cancers (Basel). 2021 Feb 26;13(5):979. doi: 10.3390/cancers13050979. Cancers (Basel). 2021. PMID: 33652744 Free PMC article.
Radiotherapy with 8-MHz radiofrequency-capacitive regional hyperthermia for stage III non-small-cell lung cancer: the radiofrequency-output power correlates with the intraesophageal temperature and clinical outcomes.
Ohguri T, Imada H, Yahara K, Morioka T, Nakano K, Terashima H, Korogi Y. Ohguri T, et al. Among authors: yahara k. Int J Radiat Oncol Biol Phys. 2009 Jan 1;73(1):128-35. doi: 10.1016/j.ijrobp.2008.03.059. Epub 2008 May 29. Int J Radiat Oncol Biol Phys. 2009. PMID: 18513887 Clinical Trial.
Deep regional hyperthermia for the whole thoracic region using 8 MHz radiofrequency-capacitive heating device: relationship between the radiofrequency-output power and the intra-oesophageal temperature and predictive factors for a good heating in 59 patients.
Ohguri T, Yahara K, Moon SD, Yamaguchi S, Imada H, Terashima H, Korogi Y. Ohguri T, et al. Among authors: yahara k. Int J Hyperthermia. 2011;27(1):20-6. doi: 10.3109/02656736.2010.500644. Epub 2010 Sep 21. Int J Hyperthermia. 2011. PMID: 20858084 Free article.
The usefulness of mobile insulator sheets for the optimisation of deep heating area for regional hyperthermia using a capacitively coupled heating method: phantom, simulation and clinical prospective studies.
Tomura K, Ohguri T, Mulder HT, Murakami M, Nakahara S, Yahara K, Korogi Y. Tomura K, et al. Among authors: yahara k. Int J Hyperthermia. 2018 Nov;34(7):1092-1103. doi: 10.1080/02656736.2017.1402130. Epub 2017 Nov 20. Int J Hyperthermia. 2018. PMID: 29108446 Free article.
166 results