Literature DB >> 15000627

Transurethral ultrasound applicators with directional heating patterns for prostate thermal therapy: in vivo evaluation using magnetic resonance thermometry.

C J Diederich1, R J Stafford, W H Nau, E C Burdette, R E Price, J D Hazle.   

Abstract

A catheter-based transurethral ultrasound applicator with angularly directional heating patterns has been designed for prostate thermal therapy and evaluated in canine prostate in vivo using MRI to monitor and assess performance. The ultrasound transducer array (3.5 mm diameter tubular transducers, 180 degrees active sectors, approximately 7.5 MHz) was integrated to a flexible delivery catheter (4 mm OD), and encapsulated within an expandable balloon (35 mm x 10 mm OD, 80 ml min(-1) ambient water) for coupling and cooling of the prostatic urethra. These devices were used to thermally coagulate targeted portions of the canine prostate (n = 2) while using MR thermal imaging (MRTI) to monitor the therapy. MRI was also used for target definition, positioning of the applicator, and evaluation of target viability post-therapy. MRTI was based upon the complex phase-difference mapping technique using an interleaved gradient echo-planar imaging sequence with lipid suppression. MRTI derived temperature distributions, thermal dose exposures, T1-contrast enhanced MR images, and histology of sectioned prostates were used to define destroyed tissue zones and characterize the three-dimensional heating patterns. The ultrasound applicators produced approximately 180 degrees directed zones of thermal coagulation within targeted tissue which extended 15-20 mm radially to the outer boundary of the prostate within 15 min. Transducer activation lengths of 17 mm and 24 mm produced contiguous zones of coagulation extending axially approximately 18 mm and approximately 25 mm from base to apex, respectively. Peak temperatures around 90 degrees C were measured, with approximately 50 degrees C-52 degrees C corresponding to outer boundary t43 = 240 min at approximately 15 min treatment time. These devices are MRI compatible, and when coupled with multiplanar MRTI provide a means for selectively controlling the length and sector angle of therapeutic thermal treatment in the prostate.

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Year:  2004        PMID: 15000627     DOI: 10.1118/1.1639959

Source DB:  PubMed          Journal:  Med Phys        ISSN: 0094-2405            Impact factor:   4.071


  28 in total

1.  Miniaturized Intracavitary Forward-Looking Ultrasound Transducer for Tissue Ablation.

Authors:  Howuk Kim; Huaiyu Wu; Namwoo Cho; Pei Zhong; Kamran Mahmood; Herbert Kim Lyerly; Xiaoning Jiang
Journal:  IEEE Trans Biomed Eng       Date:  2019-11-22       Impact factor: 4.538

2.  MRI-compatible positioning device for guiding a focused ultrasound system for transrectal treatment of prostate cancer.

Authors:  Christos Yiallouras; Nicos Mylonas; Christakis Damianou
Journal:  Int J Comput Assist Radiol Surg       Date:  2013-12-13       Impact factor: 2.924

Review 3.  MR-guided focused ultrasound surgery, present and future.

Authors:  David Schlesinger; Stanley Benedict; Chris Diederich; Wladyslaw Gedroyc; Alexander Klibanov; James Larner
Journal:  Med Phys       Date:  2013-08       Impact factor: 4.071

4.  High-intensity focused ultrasound with large scale spherical phased array for the ablation of deep tumors.

Authors:  Xiang Ji; Jing-feng Bai; Guo-feng Shen; Ya-zhu Chen
Journal:  J Zhejiang Univ Sci B       Date:  2009-09       Impact factor: 3.066

5.  An Integrated Robotic System for MRI-Guided Neuroablation: Preclinical Evaluation.

Authors:  Niravkumar A Patel; Christopher J Nycz; Paulo A Carvalho; Katie Y Gandomi; Radian Gondokaryono; Gang Li; Tamas Heffter; Everette Clif Burdette; Julie G Pilitsis; Gregory S Fischer
Journal:  IEEE Trans Biomed Eng       Date:  2020-02-17       Impact factor: 4.538

6.  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

7.  Correlation of contrast-enhanced MR images with the histopathology of minimally invasive thermal and cryoablation cancer treatments in normal dog prostates.

Authors:  D M Bouley; B Daniel; K Butts Pauly; E Liu; A Kinsey; W Nau; C J Diederich; G Sommer
Journal:  Proc SPIE Int Soc Opt Eng       Date:  2007-02-08

Review 8.  Focal ablation of prostate cancer: four roles for magnetic resonance imaging guidance.

Authors:  Graham Sommer; Donna Bouley; Harcharan Gill; Bruce Daniel; Kim Butts Pauly; Chris Diederich
Journal:  Can J Urol       Date:  2013-04       Impact factor: 1.344

9.  Transurethral ultrasound applicators with dynamic multi-sector control for prostate thermal therapy: in vivo evaluation under MR guidance.

Authors:  Adam M Kinsey; Chris J Diederich; Viola Rieke; William H Nau; Kim Butts Pauly; Donna Bouley; Graham Sommer
Journal:  Med Phys       Date:  2008-05       Impact factor: 4.071

10.  MR imaging-guided interventions in the genitourinary tract: an evolving concept.

Authors:  Fiona M Fennessy; Kemal Tuncali; Paul R Morrison; Clare M Tempany
Journal:  Magn Reson Imaging Clin N Am       Date:  2010-02       Impact factor: 2.266

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