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1
Thermal therapy of pancreatic tumours using endoluminal ultrasound: Parametric and patient-specific modelling.
Int J Hyperthermia. 2016;32(2):97-111. doi: 10.3109/02656736.2015.1119892. Epub 2016 Jan 21.
3
Deployable ultrasound applicators for endoluminal delivery of volumetric hyperthermia.
Int J Hyperthermia. 2021 Aug 10;38(1):1188-1204. doi: 10.1080/02656736.2021.1936216.
4
Development of an endoluminal high-intensity ultrasound applicator for image-guided thermal therapy of pancreatic tumors.
Proc SPIE Int Soc Opt Eng. 2015 Feb 7;9326. doi: 10.1117/12.2078841. Epub 2015 Mar 11.
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Dual-sectored transurethral ultrasound for thermal treatment of stress urinary incontinence: in silico studies in 3D anatomical models.
Med Biol Eng Comput. 2020 Jun;58(6):1325-1340. doi: 10.1007/s11517-020-02152-6. Epub 2020 Apr 10.
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Interstitial ultrasound ablation of vertebral and paraspinal tumours: parametric and patient-specific simulations.
Int J Hyperthermia. 2014 Jun;30(4):228-44. doi: 10.3109/02656736.2014.915992.

引用本文的文献

1
Volumetric hyperthermia delivery using the ExAblate Body MR-guided focused ultrasound system.
Int J Hyperthermia. 2024;41(1):2349080. doi: 10.1080/02656736.2024.2349080. Epub 2024 May 5.
2
Image-based computer modeling assessment of microwave ablation for treatment of adrenal tumors.
Int J Hyperthermia. 2022;39(1):1264-1275. doi: 10.1080/02656736.2022.2125590.
4
Endoscopic ultrasound (EUS)-guided cylindrical interstitial laser ablation (CILA) on porcine pancreas.
Biomed Opt Express. 2021 Jun 24;12(7):4423-4437. doi: 10.1364/BOE.427379. eCollection 2021 Jul 1.
5
Deployable ultrasound applicators for endoluminal delivery of volumetric hyperthermia.
Int J Hyperthermia. 2021 Aug 10;38(1):1188-1204. doi: 10.1080/02656736.2021.1936216.
7
Transurethral high-intensity ultrasound for treatment of stress urinary incontinence (SUI): simulation studies with patient-specific models.
Int J Hyperthermia. 2018 Dec;34(8):1236-1247. doi: 10.1080/02656736.2018.1456679. Epub 2018 Apr 18.
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A Combined Intravascular MRI Endoscope and Intravascular Ultrasound (IVUS) Transducer for High-Resolution Image-Guided Ablation.
Proc Int Soc Magn Reson Med Sci Meet Exhib Int Soc Magn Reson Med Sci Meet Exhib. 2017 Apr;25:1178.
10
Theoretical investigation of transgastric and intraductal approaches for ultrasound-based thermal therapy of the pancreas.
J Ther Ultrasound. 2017 May 3;5:10. doi: 10.1186/s40349-017-0090-2. eCollection 2017.

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2
Catheter-based ultrasound technology for image-guided thermal therapy: current technology and applications.
Int J Hyperthermia. 2015 Mar;31(2):203-15. doi: 10.3109/02656736.2015.1006269. Epub 2015 Mar 23.
3
Endoscopic high-intensity focused US: technical aspects and studies in an in vivo porcine model (with video).
Gastrointest Endosc. 2015 May;81(5):1243-50. doi: 10.1016/j.gie.2014.12.019. Epub 2015 Mar 7.
4
Ultrasound-guided therapeutic focused ultrasound: current status and future directions.
Int J Hyperthermia. 2015 Mar;31(2):77-89. doi: 10.3109/02656736.2014.995238. Epub 2015 Jan 23.
5
High-intensity focused ultrasound treatment for advanced pancreatic cancer.
Gastroenterol Res Pract. 2014;2014:205325. doi: 10.1155/2014/205325. Epub 2014 Jun 26.
6
Interstitial ultrasound ablation of vertebral and paraspinal tumours: parametric and patient-specific simulations.
Int J Hyperthermia. 2014 Jun;30(4):228-44. doi: 10.3109/02656736.2014.915992.
9
Systematic review of novel ablative methods in locally advanced pancreatic cancer.
World J Gastroenterol. 2014 Mar 7;20(9):2267-78. doi: 10.3748/wjg.v20.i9.2267.

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