Literature DB >> 22929332

MR imaging-controlled transurethral ultrasound therapy for conformal treatment of prostate tissue: initial feasibility in humans.

Rajiv Chopra1, Alexandra Colquhoun, Mathieu Burtnyk, William A N'djin, Ilya Kobelevskiy, Aaron Boyes, Kashif Siddiqui, Harry Foster, Linda Sugar, Masoom A Haider, Michael Bronskill, Laurence Klotz.   

Abstract

PURPOSE: To evaluate the feasibility and safety of magnetic resonance (MR) imaging-controlled transurethral ultrasound therapy for prostate cancer in humans.
MATERIALS AND METHODS: This pilot study was approved by the institutional review board and was performed in eight men (mean age, 60 years; range, 49-70 years) with localized prostate cancer (Gleason score≤7, prostate-specific antigen level #15 μg/L) immediately before radical prostatectomy. All patients provided written informed consent. This phase 0 feasibility and safety study is the first evaluation in humans. Transurethral ultrasound therapy was performed with the patient under spinal anesthesia by using a clinical 1.5-T MR unit. Patients then underwent radical prostatectomy, and the resected gland was sliced in the plane of treatment to compare the MR imaging measurements with the pattern of thermal damage. The overall procedure time and coagulation rate were measured. In addition, the spatial targeting accuracy was evaluated, as was the thermal history along the thermal damage boundaries in the gland.
RESULTS: The average procedure time was 3 hours, with 2 or fewer hours spent in the MR unit. The treatment was well tolerated by all patients, and a temperature uncertainty of less than 2°C was observed in the treatments. The mean temperature and thermal dose measured along the boundary of thermal coagulation were 52.3°C±2.1 and 3457 (cumulative equivalent minutes at 43°C)±5580, respectively. The mean treatment rate was 0.5 mL/min, and a spatial targeting accuracy of -1.0 mm±2.6 was achieved.
CONCLUSION: MR imaging-controlled transurethral ultrasound therapy is feasible, safe, and well tolerated. This technology could be an attractive approach for whole-gland or focal therapy. © RSNA, 2012.

Entities:  

Mesh:

Year:  2012        PMID: 22929332     DOI: 10.1148/radiol.12112263

Source DB:  PubMed          Journal:  Radiology        ISSN: 0033-8419            Impact factor:   11.105


  30 in total

1.  Spatiotemporal filtering of MR-temperature artifacts arising from bowel motion during transurethral MR-HIFU.

Authors:  Alain Schmitt; Charles Mougenot; Rajiv Chopra
Journal:  Med Phys       Date:  2014-11       Impact factor: 4.071

2.  Twelve-month prostate volume reduction after MRI-guided transurethral ultrasound ablation of the prostate.

Authors:  David Bonekamp; M B Wolf; M C Roethke; S Pahernik; B A Hadaschik; G Hatiboglu; T H Kuru; I V Popeneciu; J L Chin; M Billia; J Relle; J Hafron; K R Nandalur; R M Staruch; M Burtnyk; M Hohenfellner; H-P Schlemmer
Journal:  Eur Radiol       Date:  2018-06-25       Impact factor: 5.315

3.  Cavernosal nerve functionality evaluation after magnetic resonance imaging-guided transurethral ultrasound treatment of the prostate.

Authors:  Steffen Sammet; Ari Partanen; Ambereen Yousuf; Christina L Sammet; Emily V Ward; Craig Wardrip; Marek Niekrasz; Tatjana Antic; Aria Razmaria; Keyvan Farahani; Shunmugavelu Sokka; Gregory Karczmar; Aytekin Oto
Journal:  World J Radiol       Date:  2015-12-28

4.  Temperature-dependent MR signals in cortical bone: potential for monitoring temperature changes during high-intensity focused ultrasound treatment in bone.

Authors:  Elizabeth Ramsay; Charles Mougenot; Mohammad Kazem; Theodore W Laetsch; Rajiv Chopra
Journal:  Magn Reson Med       Date:  2014-10-13       Impact factor: 4.668

5.  Volumetric MRI thermometry using a three-dimensional stack-of-stars echo-planar imaging pulse sequence.

Authors:  Sumeeth V Jonathan; William A Grissom
Journal:  Magn Reson Med       Date:  2017-08-07       Impact factor: 4.668

Review 6.  Heating technology for malignant tumors: a review.

Authors:  H Petra Kok; Erik N K Cressman; Wim Ceelen; Christopher L Brace; Robert Ivkov; Holger Grüll; Gail Ter Haar; Peter Wust; Johannes Crezee
Journal:  Int J Hyperthermia       Date:  2020       Impact factor: 3.914

Review 7.  Update on Clinical Magnetic Resonance-Guided Focused Ultrasound Applications.

Authors:  Thiele Kobus; Nathan McDannold
Journal:  Magn Reson Imaging Clin N Am       Date:  2015-07-07       Impact factor: 2.266

Review 8.  Magnetic Resonance-Guided Drug Delivery.

Authors:  Andrew S Mikhail; Ari Partanen; Pavel Yarmolenko; Aradhana M Venkatesan; Bradford J Wood
Journal:  Magn Reson Imaging Clin N Am       Date:  2015-07-09       Impact factor: 2.266

9.  MR thermometry in the human prostate gland at 3.0T for transurethral ultrasound therapy.

Authors:  Elizabeth Ramsay; Charles Mougenot; Max Köhler; Michael Bronskill; Laurence Klotz; Masoom A Haider; Rajiv Chopra
Journal:  J Magn Reson Imaging       Date:  2013-02-25       Impact factor: 4.813

Review 10.  An update on focal therapy for prostate cancer.

Authors:  Marlon Perera; Nishanth Krishnananthan; Uri Lindner; Nathan Lawrentschuk
Journal:  Nat Rev Urol       Date:  2016-09-27       Impact factor: 14.432

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