MR-guided focused ultrasound surgery, present and future.
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Chris Diederich | David Schlesinger | Stanley Benedict | C. Diederich | S. Benedict | D. Schlesinger | J. Larner | A. Klibanov | W. Gedroyc | James Larner | Wladyslaw Gedroyc | Alexander Klibanov
[1] K. Furie,et al. Heart disease and stroke statistics--2007 update: a report from the American Heart Association Statistics Committee and Stroke Statistics Subcommittee. , 2008, Circulation.
[2] J. Hossack,et al. Targeted gene transfection from microbubbles into vascular smooth muscle cells using focused, ultrasound-mediated delivery. , 2010, Ultrasound in medicine & biology.
[3] Yunbo Liu,et al. High intensity focused ultrasound-induced gene activation in sublethally injured tumor cells in vitro. , 2005, The Journal of the Acoustical Society of America.
[4] Jean-François Geschwind,et al. MRI guidance of focused ultrasound therapy of uterine fibroids: early results. , 2004, AJR. American journal of roentgenology.
[5] A. Alexandrov,et al. CLOTBUST: Design of a Randomized Trial of Ultrasound‐Enhanced Thrombolysis for Acute Ischemic Stroke , 2004, Journal of neuroimaging : official journal of the American Society of Neuroimaging.
[6] Kenneth I Marro,et al. Magnetic resonance imaging of boiling induced by high intensity focused ultrasound. , 2007, The Journal of the Acoustical Society of America.
[7] J. Chapelon,et al. Toric HIFU Transducer for Large Thermal Ablation , 2007, 2007 29th Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[8] Munther A. Dahleh,et al. Control system for an MRI compatible intracavitary ultrasound array for thermal treatment of prostate disease. , 2001, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[9] P. P. Lele,et al. Production of deep focal lesions by focused ultrasound--current status. , 1967, Ultrasonics.
[10] P. J. Hoopes,et al. Basic principles of thermal dosimetry and thermal thresholds for tissue damage from hyperthermia , 2003, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[11] Gregory T. Clement,et al. Investigation of a large-area phased array for focused ultrasound surgery through the skull. , 2000, Physics in medicine and biology.
[12] John Pearce,et al. Mathematical models of laser-induced tissue thermal damage , 2011, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[13] Gregory T. Clement,et al. Longitudinal and shear mode ultrasound propagation in human skull bone. , 2006, Ultrasound in medicine & biology.
[14] Chrit T W Moonen,et al. Spatio-Temporal Control of Gene Expression and Cancer Treatment Using Magnetic Resonance Imaging–Guided Focused Ultrasound , 2007, Clinical Cancer Research.
[15] G. M. Bydder,et al. MRI of the brain with ultra-short echo-time pulse sequences , 2003, Neuroradiology.
[16] Dhiraj Arora,et al. Direct thermal dose control of constrained focused ultrasound treatments: phantom and in vivo evaluation. , 2005, Physics in medicine and biology.
[17] J A de Zwart,et al. Local hyperthermia with MR‐guided focused ultrasound: Spiral trajectory of the focal point optimized for temperature uniformity in the target region , 2000, Journal of magnetic resonance imaging : JMRI.
[18] E. Dinjus,et al. Potential of gold-bound microtubules as a new ultrasound contrast agent. , 2002, Ultrasound in medicine & biology.
[19] D. Brenin. Focused Ultrasound Ablation for the Treatment of Breast Cancer , 2011, Annals of Surgical Oncology.
[20] Wen-Zhi Chen,et al. Feasibility of magnetic resonance imaging-guided high intensity focused ultrasound therapy for ablating uterine fibroids in patients with bowel lies anterior to uterus. , 2010, European journal of radiology.
[21] J A de Zwart,et al. Fast lipid‐suppressed MR temperature mapping with echo‐shifted gradient‐echo imaging and spectral‐spatial excitation , 1999, Magnetic resonance in medicine.
[22] Treatment of rabbit liver cancer in vivo using miniaturized image-ablate ultrasound arrays. , 2011, Ultrasound in medicine & biology.
[23] Juan M. Santos,et al. Real‐time MR thermometry for monitoring HIFU ablations of the liver , 2010, Magnetic resonance in medicine.
[24] L. Leksell,et al. Gammathalamotomy in intractable pain , 2005, Acta Neurochirurgica.
[25] C. Lafon,et al. Design and preliminary results of an ultrasound applicator for interstitial thermal coagulation. , 1998, Ultrasound in medicine & biology.
[26] E. Ebbini,et al. Refocusing dual-mode ultrasound arrays in the presence of strongly scattering obstacles , 2004, IEEE Ultrasonics Symposium, 2004.
[27] T. Kumazaki,et al. Calcifications in mucinous and serous cystic ovarian tumors. , 2005, Journal of Nippon Medical School = Nippon Ika Daigaku zasshi.
[28] Vesna Zderic,et al. Attenuation of porcine tissues in vivo after high-intensity ultrasound treatment. , 2004, Ultrasound in medicine & biology.
[29] Daisuke Kokuryo,et al. Optimization of self‐reference thermometry using complex field estimation , 2006, Magnetic resonance in medicine.
[30] C. Tempany,et al. Magnetic resonance‐guided focused ultrasound (MRgFUS) compared with abdominal hysterectomy for treatment of uterine leiomyomas , 2009, Ultrasound in obstetrics & gynecology : the official journal of the International Society of Ultrasound in Obstetrics and Gynecology.
[31] G Montaldo,et al. Compensating for bone interfaces and respiratory motion in high-intensity focused ultrasound , 2007, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[32] Wen-zhi Chen,et al. [High intensity focused ultrasound in the treatment of primary malignant bone tumor]. , 2002, Zhonghua zhong liu za zhi [Chinese journal of oncology].
[33] D. Kopelman,et al. MR-guided focused ultrasound surgery (MRgFUS) for the palliation of pain in patients with bone metastases--preliminary clinical experience. , 2006, Annals of oncology : official journal of the European Society for Medical Oncology.
[34] Koichi Masuda,et al. Quantitative ultrashort echo time (UTE) MRI of human cortical bone: Correlation with porosity and biomechanical properties , 2012, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[35] Ronald A. Roy,et al. Measurements of bubble-enhanced heating from focused, MHz-frequency ultrasound in a tissue-mimicking material. , 2001, Ultrasound in medicine & biology.
[36] R B Roemer,et al. Pre-focal plane high-temperature regions induced by scanning focused ultrasound beams. , 1990, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[37] M. Hurwitz. Today's Thermal Therapy: Not Your Father's Hyperthermia: Challenges and Opportunities in Application of Hyperthermia for the 21st Century Cancer Patient , 2010, American journal of clinical oncology.
[38] Mythreyi Bhargavan,et al. Inpatient CT and MRI utilization: trends in the academic hospital setting. , 2010, Journal of the American College of Radiology : JACR.
[39] M Marberger,et al. Thermal ablation of BPH with transrectal high-intensity focused ultrasound. , 1994, Progress in clinical and biological research.
[40] Sai Chun Tang,et al. Standing-Wave Suppression for Transcranial Ultrasound by Random Modulation , 2010, IEEE Transactions on Biomedical Engineering.
[41] W. Luo,et al. Prevention of post-focal thermal damage by formation of bubbles at the focus during high intensity focused ultrasound therapy. , 2008, Medical physics.
[42] Yusuf Tufail,et al. Remote Excitation of Neuronal Circuits Using Low-Intensity, Low-Frequency Ultrasound , 2008, PloS one.
[43] G. ter Haar,et al. Temperature rise recorded during lesion formation by high-intensity focused ultrasound. , 1997, Ultrasound in medicine & biology.
[44] N. Solish,et al. Noninvasive Body Sculpting Technologies with an Emphasis on High-Intensity Focused Ultrasound , 2011, Aesthetic Plastic Surgery.
[45] Alexander L. Klibanov,et al. Preparation of targeted microbubbles: ultrasound contrast agents for molecular imaging , 2009, Medical & Biological Engineering & Computing.
[46] Rares Salomir,et al. Intraluminal high intensity ultrasound treatment in the esophagus under fast MR temperature mapping: In vivo studies , 2005, Magnetic resonance in medicine.
[47] P. Hariharan,et al. Direct methods for characterizing high-intensity focused ultrasound transducers using acoustic streaming. , 2008, The Journal of the Acoustical Society of America.
[48] D. Gianfelice,et al. MR Imaging-guided Focused Ultrasound Surgery of Breast Cancer: Correlation of Dynamic Contrast-enhanced MRI with Histopathologic Findings , 2003, Breast Cancer Research and Treatment.
[49] Yufeng Zhou,et al. High intensity focused ultrasound in clinical tumor ablation. , 2011, World journal of clinical oncology.
[50] C. Moonen,et al. MR thermometry for monitoring tumor ablation , 2007, European Radiology.
[51] William H. Nau,et al. Referenceless MR Thermometry for Monitoring Thermal Ablation in the Prostate , 2007, IEEE Transactions on Medical Imaging.
[52] R. M. Arthur,et al. Non-invasive estimation of hyperthermia temperatures with ultrasound , 2005, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[53] M. Dewhirst,et al. The development and testing of a new temperature-sensitive drug delivery system for the treatment of solid tumors. , 2001, Advanced drug delivery reviews.
[54] I. Romero,et al. Transporting therapeutics across the blood-brain barrier. , 1996, Molecular medicine today.
[55] C.A. Cain,et al. Treatment planning for hyperthermia with ultrasound phased arrays , 1996, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[56] Susannah H Bloch,et al. Application of Ultrasound to Selectively Localize Nanodroplets for Targeted Imaging and Therapy , 2006, Molecular imaging.
[57] K. Hynynen,et al. Localized harmonic motion imaging: theory, simulations and experiments. , 2003, Ultrasound in medicine & biology.
[58] M. Robson,et al. Clinical ultrashort echo time imaging of bone and other connective tissues , 2006, NMR in biomedicine.
[59] Michael D Hill,et al. Ultrasound-enhanced systemic thrombolysis for acute ischemic stroke. , 2004, The New England journal of medicine.
[60] D. Kopelman,et al. Magnetic resonance-guided focused ultrasound surgery using an enhanced sonication technique in a pig muscle model. , 2006, European journal of radiology.
[61] Constantin Coussios,et al. High intensity focused ultrasound: Physical principles and devices , 2007, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[62] Toyoaki Uchida,et al. Five years experience of transrectal high‐intensity focused ultrasound using the Sonablate device in the treatment of localized prostate cancer , 2006, International journal of urology : official journal of the Japanese Urological Association.
[63] Kullervo Hynynen,et al. Evaluation of referenceless thermometry in MRI‐guided focused ultrasound surgery of uterine fibroids , 2008, Journal of magnetic resonance imaging : JMRI.
[64] Michael F McNitt-Gray,et al. AAPM/RSNA Physics Tutorial for Residents: Topics in CT. Radiation dose in CT. , 2002, Radiographics : a review publication of the Radiological Society of North America, Inc.
[65] Michael B Lawrence,et al. Ultrasound-based molecular imaging and specific gene delivery to mesenteric vasculature by endothelial adhesion molecule targeted microbubbles in a mouse model of Crohn's disease. , 2013, Journal of controlled release : official journal of the Controlled Release Society.
[66] S. Libutti,et al. Pulsed-High Intensity Focused Ultrasound and Low Temperature–Sensitive Liposomes for Enhanced Targeted Drug Delivery and Antitumor Effect , 2007, Clinical Cancer Research.
[67] Shahram Vaezy,et al. Image-guided HIFU neurolysis of peripheral nerves to treat spasticity and pain. , 2004, Ultrasound in medicine & biology.
[68] G. Ehnholm,et al. Volumetric HIFU ablation under 3D guidance of rapid MRI thermometry. , 2009, Medical physics.
[69] F. Fry,et al. High-intensity focused ultrasound in the treatment of experimental liver cancer. , 1991, Archives of surgery.
[70] Marcus Radicke,et al. New image contrast method in magnetic resonance imaging via ultrasound , 2008 .
[71] Juan M Santos,et al. In vivo MR acoustic radiation force imaging in the porcine liver. , 2011, Medical physics.
[72] G. Kazemier,et al. Radiofrequency ablation in patients with primary and secondary hepatic malignancies , 2006, Journal of Gastrointestinal Surgery.
[73] Kullervo Hynynen,et al. Patterns of thermal deposition in the skull during transcranial focused ultrasound surgery , 2004, IEEE Transactions on Biomedical Engineering.
[74] F A Jolesz,et al. MR imaging-guided focused ultrasound surgery of fibroadenomas in the breast: a feasibility study. , 2001, Radiology.
[75] S. Sapareto. Thermal isoeffect dose: addressing the problem of thermotolerance. , 1987, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[76] M Tanter,et al. Experimental demonstration of noninvasive transskull adaptive focusing based on prior computed tomography scans. , 2003, The Journal of the Acoustical Society of America.
[77] K. Hynynen,et al. Targeted delivery of antibodies through the blood-brain barrier by MRI-guided focused ultrasound. , 2006, Biochemical and biophysical research communications.
[78] Chris J Diederich,et al. Highly directional transurethral ultrasound applicators with rotational control for MRI-guided prostatic thermal therapy. , 2004, Physics in medicine and biology.
[79] Kiyoshi Namba,et al. The evolving non-surgical ablation of breast cancer: Mr Guided focused ultrasound (MRgFUS) , 2007, Breast cancer.
[80] F. Fry,et al. Tumor irradiation with intense ultrasound. , 1978, Ultrasound in medicine & biology.
[81] J. Saunders,et al. Detection of acoustic emission from cavitation in tissue during clinical extracorporeal lithotripsy. , 1996, Ultrasound in medicine & biology.
[82] Junru Wu,et al. Ultrasound-induced cell lysis and sonoporation enhanced by contrast agents. , 1999, The Journal of the Acoustical Society of America.
[83] Wen-Zhi Chen,et al. Extracorporeal high intensity focused ultrasound ablation in the treatment of 1038 patients with solid carcinomas in China: an overview. , 2004, Ultrasonics sonochemistry.
[84] John M Pauly,et al. Referenceless PRF shift thermometry , 2004, Magnetic resonance in medicine.
[85] Mickael Tanter,et al. Simulation of intracranial acoustic fields in clinical trials of sonothrombolysis. , 2009, Ultrasound in medicine & biology.
[86] M. Schell,et al. Stereotactic body radiation therapy: the report of AAPM Task Group 101. , 2010, Medical physics.
[87] K Hynynen,et al. Thermal effects of focused ultrasound energy on bone tissue. , 2001, Ultrasound in medicine & biology.
[88] Chris J Diederich,et al. Curvilinear transurethral ultrasound applicator for selective prostate thermal therapy. , 2005, Medical physics.
[89] N. A. Tsochatzidis,et al. Characterisation of the acoustic cavitation cloud by two laser techniques. , 1999, Ultrasonics sonochemistry.
[90] Chris J. Diederich,et al. Treatment delivery platform for conformal catheter-based ultrasound hyperthermia , 2009, BiOS.
[91] K. Hynynen,et al. The role of nonlinear ultrasound propagation during hyperthermia treatments. , 1991, Medical physics.
[92] Miklós Gyöngy,et al. Passive Spatial Mapping of Inertial Cavitation During HIFU Exposure , 2010, IEEE Transactions on Biomedical Engineering.
[93] F A Jolesz,et al. Thermal effects of focused ultrasound on the brain: determination with MR imaging. , 1997, Radiology.
[94] P Börnert,et al. On the performance and accuracy of 2D navigator pulses. , 1999, Magnetic resonance imaging.
[95] F A Jolesz,et al. Demonstration of potential noninvasive ultrasound brain therapy through an intact skull. , 1998, Ultrasound in medicine & biology.
[96] G. Haar,et al. High intensity focused ultrasound--a surgical technique for the treatment of discrete liver tumours. , 1989, Physics in medicine and biology.
[97] F. Lizzi,et al. Histologic changes in porcine eyes treated with high-intensity focused ultrasound. , 1987, Annals of ophthalmology.
[98] R. Leborgne. Diagnosis of tumors of the breast by simple roentgenography; calcifications in carcinomas. , 1951, The American journal of roentgenology and radium therapy.
[99] Achim Gass,et al. Transcranial Low-Frequency Ultrasound-Mediated Thrombolysis in Brain Ischemia: Increased Risk of Hemorrhage With Combined Ultrasound and Tissue Plasminogen Activator Results of a Phase II Clinical Trial , 2005, Stroke.
[100] M. Dewhirst,et al. Hyperthermia mediated liposomal drug delivery , 2006, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[101] K Hynynen,et al. The feasibility of using MRI to monitor and guide noninvasive ultrasound surgery. , 1993, Ultrasound in medicine & biology.
[102] G. Baltuch,et al. Revision of deep brain stimulator for tremor. Technical note. , 2001, Journal of neurosurgery.
[103] F A Jolesz,et al. Focused US system for MR imaging-guided tumor ablation. , 1995, Radiology.
[104] Sébastien Roujol,et al. Motion correction in MR thermometry of abdominal organs: A comparison of the referenceless vs. the multibaseline approach , 2010, Magnetic resonance in medicine.
[105] R. Rabenalt,et al. Treatment of patients after failed high intensity focused ultrasound and radiotherapy for localized prostate cancer: salvage laparoscopic extraperitoneal radical prostatectomy. , 2008, Journal of endourology.
[106] L A Crum,et al. A dual passive cavitation detector for localized detection of lithotripsy-induced cavitation in vitro. , 2000, The Journal of the Acoustical Society of America.
[107] K. Hynynen,et al. Feasibility and toxicity of transrectal ultrasound hyperthermia in the treatment of locally advanced adenocarcinoma of the prostate. , 1993, International journal of radiation oncology, biology, physics.
[108] A. Morel,et al. Transcranial MR‐guided High Intensity Focused Ultrasound for Non‐Invasive Functional Neurosurgery , 2010 .
[109] H. Ahmed,et al. The feasibility and safety of high‐intensity focused ultrasound as salvage therapy for recurrent prostate cancer following external beam radiotherapy , 2008, BJU international.
[110] G Gregory Raab,et al. From medical invention to clinical practice: the reimbursement challenge facing new device procedures and technology--part 2: coverage. , 2006, Journal of the American College of Radiology : JACR.
[111] S. Crouzet,et al. Multicentric oncologic outcomes of high-intensity focused ultrasound for localized prostate cancer in 803 patients. , 2010, European urology.
[112] G. Ferraro,et al. Histologic Effects of External Ultrasound-Assisted Lipectomy on Adipose Tissue , 2007, Aesthetic Plastic Surgery.
[113] D. Melodelima,et al. Interstitial devices for minimally invasive thermal ablation by high-intensity ultrasound , 2007, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[114] D L Parker,et al. Temperature distribution measurements in two-dimensional NMR imaging. , 1983, Medical physics.
[115] M. Bronskill,et al. Multifrequency ultrasound transducers for conformal interstitial thermal therapy , 2003, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[116] K Hynynen,et al. Noninvasive arterial occlusion using MRI-guided focused ultrasound. , 1996, Ultrasound in medicine & biology.
[117] Stanley H Benedict,et al. High intensity focused ultrasound may be superior to radiation therapy for the treatment of early stage prostate cancer. , 2011, Medical physics.
[118] W. Gedroyc,et al. Patient suitability for magnetic resonance guided focused ultrasound surgery of uterine fibroids. , 2009, European journal of obstetrics, gynecology, and reproductive biology.
[119] Wen-zhi Chen,et al. Pathological changes in human malignant carcinoma treated with high-intensity focused ultrasound. , 2001, Ultrasound in medicine & biology.
[120] Mark Bydder,et al. Ultrashort echo time spectroscopic imaging (UTESI) of cortical bone , 2007, Magnetic resonance in medicine.
[121] S. Ernst,et al. Long-term clinical outcome following pulmonary vein isolation with high-intensity focused ultrasound balloon catheters in patients with paroxysmal atrial fibrillation. , 2010, Europace : European pacing, arrhythmias, and cardiac electrophysiology : journal of the working groups on cardiac pacing, arrhythmias, and cardiac cellular electrophysiology of the European Society of Cardiology.
[122] Kullervo Hynynen,et al. MR temperature mapping of focused ultrasound surgery , 1994, Magnetic resonance in medicine.
[123] Y. Nishimura,et al. Increased heating efficiency of hyperthermia using an ultrasound contrast agent: a phantom study. , 1998, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[124] F. Lizzi,et al. Treatment of experimental lens capsular tears with intense focused ultrasound. , 1985, The British journal of ophthalmology.
[125] K. Hynynen,et al. Thermal dose optimization via temporal switching in ultrasound surgery , 1998, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[126] Wen-Zhi Chen,et al. Preliminary experience using high intensity focused ultrasound for the treatment of patients with advanced stage renal malignancy. , 2003, The Journal of urology.
[127] W. Kucharczyk,et al. Palliative treatment of painful bone metastases with MR imaging--guided focused ultrasound. , 2008, Radiology.
[128] Manabu Kinoshita,et al. Noninvasive localized delivery of Herceptin to the mouse brain by MRI-guided focused ultrasound-induced blood-brain barrier disruption. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[129] C. Lafon,et al. Optimizing the shape of ultrasound transducers for interstitial thermal ablation. , 2002, Medical physics.
[130] Rajiv Chopra,et al. MRI-compatible transurethral ultrasound system for the treatment of localized prostate cancer using rotational control. , 2008, Medical physics.
[131] D B Plewes,et al. Visualizing tissue compliance with MR imaging , 1995, Journal of magnetic resonance imaging : JMRI.
[132] J. Barger,et al. Acoustical properties of the human skull. , 1978, The Journal of the Acoustical Society of America.
[133] Chris J. Diederich,et al. Magnetic Resonance-Guided High-Intensity Ultrasound Ablation of the Prostate , 2006, Topics in magnetic resonance imaging : TMRI.
[134] Patricia C. Rinaldi,et al. Modification by focused ultrasound pulses of electrically evoked responses from an in vitro hippocampal preparation , 1991, Brain Research.
[135] Dominique Cathignol,et al. Treatment of esophageal tumors using high intensity intraluminal ultrasound: first clinical results , 2008, Journal of Translational Medicine.
[136] M. Harpen. Basic nonlinear acoustics: an introduction for radiological physicists. , 2006, Medical physics.
[137] Bradford J. Wood,et al. Pulsed high-intensity focused ultrasound enhances thrombolysis in an in vitro model. , 2006 .
[138] Shahram Vaezy,et al. Image-Guided High-Intensity Focused Ultrasound for Conduction Block of Peripheral Nerves , 2006, Annals of Biomedical Engineering.
[139] K Hynynen,et al. Temperature elevation at muscle-bone interface during scanned, focused ultrasound hyperthermia. , 1988, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[140] W F Walker,et al. A method of imaging viscoelastic parameters with acoustic radiation force. , 2000, Physics in medicine and biology.
[141] Raffi Bekeredjian,et al. Use of ultrasound contrast agents for gene or drug delivery in cardiovascular medicine. , 2005, Journal of the American College of Cardiology.
[142] Kullervo Hynynen,et al. Uterine leiomyomas: MR imaging-guided focused ultrasound surgery--imaging predictors of success. , 2008, Radiology.
[143] S. Deiner,et al. Parkinson's disease and deep brain stimulator placement. , 2009, Anesthesiology clinics.
[144] Bruno Quesson,et al. Improved Volumetric MR-HIFU Ablation by Robust Binary Feedback Control , 2010, IEEE Transactions on Biomedical Engineering.
[145] Victor Frenkel,et al. Potential role of pulsed-high intensity focused ultrasound in gene therapy. , 2006, Future oncology.
[146] Andrew Webb,et al. Introduction to Medical Imaging: Physics, Engineering and Clinical Applications , 2010 .
[147] Mathieu Pernot,et al. Combined passive detection and ultrafast active imaging of cavitation events induced by short pulses of high-intensity ultrasound , 2011, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[148] Prasanna Hariharan,et al. Characterization of high intensity focused ultrasound transducers using acoustic streaming. , 2008, The Journal of the Acoustical Society of America.
[149] F A Jolesz,et al. Optimization of chemical shift selective suppression of fat , 1998, Magnetic resonance in medicine.
[150] Lawrence A Crum,et al. Effects of nonlinear propagation, cavitation, and boiling in lesion formation by high intensity focused ultrasound in a gel phantom. , 2006, The Journal of the Acoustical Society of America.
[151] Tim Johansson,et al. Systematic review of the efficacy and safety of high-intensity focussed ultrasound for the primary and salvage treatment of prostate cancer. , 2010, European urology.
[152] Natalia Vykhodtseva,et al. MRI-guided targeted blood-brain barrier disruption with focused ultrasound: histological findings in rabbits. , 2005, Ultrasound in medicine & biology.
[153] Yunbo Liu,et al. High intensity focused ultrasound-induced gene activation in solid tumors. , 2006, The Journal of the Acoustical Society of America.
[154] Mingxi Wan,et al. The inception of cavitation bubble clouds induced by high-intensity focused ultrasound. , 2006, Ultrasonics.
[155] J. Bai,et al. A microbubble agent improves the therapeutic efficiency of high intensity focused ultrasound: a rabbit kidney study , 2004, Urological Research.
[156] F. Fulfaro,et al. Malignant bone pain: Pathophysiology and treatments , 2000, Current review of pain.
[157] A. Loomis. XXXVIII. The physical and biological effects of high-frequency sound-waves of great intensity , 1927 .
[158] Adam Shaw,et al. Requirements for measurement standards in high intensity focused ultrasound (HIFU) fields. , 2006 .
[159] Jeffery H. Wootton,et al. Endocervical ultrasound applicator for integrated hyperthermia and HDR brachytherapy in the treatment of locally advanced cervical carcinoma. , 2011, Medical physics.
[160] J M Dubernard,et al. Treatment of prostate cancer with transrectal focused ultrasound: early clinical experience. , 1996, European urology.
[161] J. G. Lynn,et al. Histology of Cerebral Lesions Produced by Focused Ultrasound. , 1944, The American journal of pathology.
[162] F. Fry,et al. Transkull focal lesions in cat brain produced by ultrasound. , 1981, Journal of neurosurgery.
[163] M. van Kleef,et al. Radiofrequency Treatment of Facet-related Pain: Evidence and Controversies , 2011, Current Pain and Headache Reports.
[164] K. Hynynen,et al. Noninvasive MR imaging-guided focal opening of the blood-brain barrier in rabbits. , 2001, Radiology.
[165] R. B. Roemer,et al. Treatment of malignant brain tumors with focused ultrasound hyperthermia and radiation: results of a phase I trial , 1991, Journal of Neuro-Oncology.
[166] R F Heimburger,et al. Ultrasound and the blood-brain barrier. , 1990, Advances in experimental medicine and biology.
[167] Chronic neurogenic pain and the medial thalamotomy. , 1994, Schweizerische Rundschau fur Medizin Praxis = Revue suisse de medecine Praxis.
[168] Guo-Liang Xu,et al. Analysis of clinical effect of high-intensity focused ultrasound on liver cancer. , 2004, World journal of gastroenterology.
[169] Dhiraj Arora,et al. MR thermometry-based feedback control of efficacy and safety in minimum-time thermal therapies: Phantom and in-vivo evaluations , 2006, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[170] J. Chapelon,et al. Treatment of localised prostate cancer with transrectal high intensity focused ultrasound. , 1999, European journal of ultrasound : official journal of the European Federation of Societies for Ultrasound in Medicine and Biology.
[171] D. E. Matthews,et al. Evaluation of high-intensity therapeutic ultrasound irradiation in the treatment of experimental hepatoma. , 1989, Journal of pediatric surgery.
[172] B. Daniel,et al. MRI-guided interstitial ultrasound thermal therapy of the prostate: a feasibility study in the canine model. , 2005, Medical physics.
[173] M. Papa,et al. The use of MR imaging guided focused ultrasound in breast cancer patients; a preliminary phase one study and review , 2005, Breast cancer.
[174] E. Burdette,et al. Evaluation of multielement catheter-cooled interstitial ultrasound applicators for high-temperature thermal therapy. , 2001, Medical physics.
[175] B. McCormick. The politics and the ethics of breast cancer. , 2003, Brachytherapy.
[176] F. Jolesz,et al. Current status and future potential of MRI‐guided focused ultrasound surgery , 2008, Journal of magnetic resonance imaging : JMRI.
[177] Hao-Li Liu,et al. Focal beam distortion and treatment planning for transrib focused ultrasound thermal therapy: a feasibility study using a two-dimensional ultrasound phased array. , 2010, Medical physics.
[178] J. Manola,et al. Hyperthermia combined with radiation for the treatment of locally advanced prostate cancer , 2011, Cancer.
[179] R. Stafford,et al. Transurethral ultrasound applicators with directional heating patterns for prostate thermal therapy: in vivo evaluation using magnetic resonance thermometry. , 2004, Medical physics.
[180] E. Konofagou,et al. An All-Ultrasound-Based System for Real-Time Monitoring and Sonication of Temperature Change and Ablation , 2006, 2006 International Conference of the IEEE Engineering in Medicine and Biology Society.
[181] C. Moonen,et al. A method for MRI guidance of intercostal high intensity focused ultrasound ablation in the liver. , 2010, Medical physics.
[182] N. Shabshin,et al. Pain Palliation in Patients with Bone Metastases Using MR-Guided Focused Ultrasound Surgery: A Multicenter Study , 2008, Annals of Surgical Oncology.
[183] G. Lovisolo,et al. Problem of sequence and fractionation in the clinical application of combined heat and radiation. , 1984, Cancer research.
[184] Nico de Jong,et al. Increasing the Endothelial Layer Permeability Through Ultrasound-Activated Microbubbles , 2010, IEEE Transactions on Biomedical Engineering.
[185] Ralf Seip,et al. Ultrasound-triggered release of materials entrapped in microbubble-liposome constructs: a tool for targeted drug delivery. , 2010, Journal of controlled release : official journal of the Controlled Release Society.
[186] W J FRY,et al. Production of focal destructive lesions in the central nervous system with ultrasound. , 1954, Journal of neurosurgery.
[187] Lars Michels,et al. Transcranial magnetic resonance imaging-guided focused ultrasound: noninvasive central lateral thalamotomy for chronic neuropathic pain. , 2012, Neurosurgical focus.
[188] G Gregory Raab,et al. From medical invention to clinical practice: the reimbursement challenge facing new device procedures and technology--part 1: issues in medical device assessment. , 2006, Journal of the American College of Radiology : JACR.
[189] K Hynynen,et al. MRI-guided gas bubble enhanced ultrasound heating in in vivo rabbit thigh. , 2003, Physics in medicine and biology.
[190] I. Roberts,et al. High-intensity focused ultrasound ablation of liver tumours: can radiological assessment predict the histological response? , 2008, The British journal of radiology.
[191] R M Henkelman,et al. Ex vivo tissue‐type independence in proton‐resonance frequency shift MR thermometry , 1998, Magnetic resonance in medicine.
[192] A. Morel,et al. High‐intensity focused ultrasound for noninvasive functional neurosurgery , 2009, Annals of neurology.
[193] Wen-Zhi Chen,et al. Extracorporeal High Intensity Focused Ultrasound Ablation in the Treatment of Patients with Large Hepatocellular Carcinoma , 2004, Annals of Surgical Oncology.
[194] Gersten Jw,et al. The effect of ultrasound on conduction velocity of peripheral nerve. , 1961 .
[195] S. Kaul,et al. In vivo myocardial kinetics of air-filled albumin microbubbles during myocardial contrast echocardiography. Comparison with radiolabeled red blood cells. , 1994, Circulation research.
[196] L A Crum,et al. Real-time visualization of high-intensity focused ultrasound treatment using ultrasound imaging. , 2001, Ultrasound in medicine & biology.
[197] Rajiv Chopra,et al. MRI-controlled transurethral ultrasound therapy for localised prostate cancer , 2010, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[198] R. Lewensohn,et al. Cellular effects of high-intensity focused continuous wave ultrasound alone and in combination with X-rays , 2001, International journal of radiation biology.
[199] Ralf Seip,et al. Targeted Ultrasound-Mediated Delivery of Nanoparticles: On the Development of a New HIFU-Based Therapy and Imaging Device , 2010, IEEE Transactions on Biomedical Engineering.
[200] P van Gelderen,et al. Invited. On the feasibility of MRI‐guided focused ultrasound for local induction of gene expression , 1998, Journal of magnetic resonance imaging : JMRI.
[201] M. Bronskill,et al. MRI-guided transurethral ultrasound therapy of the prostate gland using real-time thermal mapping: initial studies. , 2010, Urology.
[202] J P Felmlee,et al. MR guided focused ultrasound: technical acceptance measures for a clinical system , 2006, Physics in medicine and biology.
[203] G Trübestein,et al. Thrombolysis by ultrasound. , 1976, Clinical science and molecular medicine. Supplement.
[204] John A. Pearce,et al. Relationship between Arrhenius models of thermal damage and the CEM 43 thermal dose , 2009, BiOS.
[205] J. Chin,et al. Salvage HIFU for recurrent prostate cancer after radiotherapy , 2009, Prostate Cancer and Prostatic Diseases.
[206] John A Hossack,et al. Real-Time Technique for Improving Molecular Imaging and Guiding Drug Delivery in Large Blood Vessels: In Vitro and Ex Vivo Results , 2011, Molecular imaging.
[207] K. Hynynen,et al. Localized harmonic motion imaging for Focused Ultrasound Surgery targeting and treatment outcome , 2010, 2010 IEEE International Ultrasonics Symposium.
[208] D J Coleman,et al. Therapeutic ultrasound for the treatment of glaucoma. , 1991, American journal of ophthalmology.
[209] C. Diederich,et al. Interstitial Heating Technologies , 1995 .
[210] W. Dewey,et al. Time-temperature analysis of cell killing of BHK cells heated at temperatures in the range of 43.5°C to 57.0°C☆ , 1990 .
[211] Chris J Diederich,et al. Transurethral ultrasound applicators with dynamic multi-sector control for prostate thermal therapy: in vivo evaluation under MR guidance. , 2008, Medical physics.
[212] Donald Whiting,et al. Hardware-Related Complications after Placement of Thalamic Deep Brain Stimulator Systems , 2003, Stereotactic and Functional Neurosurgery.
[213] Yusuf Tufail,et al. Ultrasonic neuromodulation by brain stimulation with transcranial ultrasound , 2011, Nature Protocols.
[214] K. Kuroda,et al. A precise and fast temperature mapping using water proton chemical shift , 1995, Magnetic resonance in medicine.
[215] Stephan E Maier,et al. Magnetic resonance acoustic radiation force imaging. , 2008, Medical physics.
[216] E E Konofagou,et al. Harmonic motion imaging for focused ultrasound (HMIFU): a fully integrated technique for sonication and monitoring of thermal ablation in tissues , 2008, Physics in medicine and biology.
[217] C. Moonen,et al. Real‐time volumetric MRI thermometry of focused ultrasound ablation in vivo: a feasibility study in pig liver and kidney , 2011, NMR in biomedicine.
[218] M. Dewhirst,et al. Rationale for and measurement of liposomal drug delivery with hyperthermia using non-invasive imaging techniques , 2008, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[219] I. Rivens,et al. The intensity dependence of the site of maximal energy deposition in focused ultrasound surgery. , 1996, Ultrasound in medicine & biology.
[220] R. Stafford,et al. Multiplanar MR temperature‐sensitive imaging of cerebral thermal treatment using interstitial ultrasound applicators in a canine model , 2002, Journal of magnetic resonance imaging : JMRI.
[221] Karl A. Sillay,et al. Deep brain stimulator hardware-related infections: incidence and management in a large series. , 2008, Neurosurgery.
[222] A. Gelet,et al. Salvage radiotherapy after high-intensity focused ultrasound for localized prostate cancer: early clinical results. , 2007, Urology.
[223] A. Misra,et al. Drug delivery to the central nervous system: a review. , 2003, Journal of pharmacy & pharmaceutical sciences : a publication of the Canadian Society for Pharmaceutical Sciences, Societe canadienne des sciences pharmaceutiques.
[224] K. Hynynen,et al. MRI-guided noninvasive ultrasound surgery. , 1993, Medical physics.
[225] John M Pauly,et al. Triggered, navigated, multi‐baseline method for proton resonance frequency temperature mapping with respiratory motion , 2003, Magnetic resonance in medicine.
[226] G Fleury,et al. Dual-mode transducers for ultrasound imaging and thermal therapy. , 2010, Ultrasonics.
[227] K. Hynynen,et al. The impact of standing wave effects on transcranial focused ultrasound disruption of the blood–brain barrier in a rat model , 2010, Physics in medicine and biology.
[228] F. Gleeson,et al. High-intensity focused ultrasound for the treatment of liver tumours. , 2004, Ultrasonics.
[229] Y. Kaji,et al. Magnetic resonance-guided focused ultrasound surgery for uterine fibroids: relationship between the therapeutic effects and signal intensity of preexisting T2-weighted magnetic resonance images. , 2007, American journal of obstetrics and gynecology.
[230] Dhiraj Arora,et al. Control of thermal therapies with moving power deposition field. , 2006, Physics in medicine and biology.
[231] H. Kampinga,et al. Hyperthermic radiosensitization: mode of action and clinical relevance , 2001, International journal of radiation biology.
[232] S. L. Griffith,et al. Extracorporeal Liver Ablation Using Sonography-Guided High-Intensity Focused Ultrasound , 1992, Investigative radiology.
[233] H. Kauczor,et al. Focal Gene Induction in the Liver of Rats by a Heat-Inducible Promoter Using Focused Ultrasound Hyperthermia: Preliminary Results , 2005, Investigative Radiology.
[234] Vesna Zderic,et al. Hemorrhage control using high intensity focused ultrasound , 2007, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[235] Mark Hodnett,et al. Calibration and measurement issues for therapeutic ultrasound. , 2008, Ultrasonics.
[236] K Hynynen,et al. Ultrasound surgery using multiple sonications--treatment time considerations. , 1996, Ultrasound in medicine & biology.
[237] C. Porter,et al. Spatial and acoustic pressure dependence of microbubble‐mediated gene delivery targeted using focused ultrasound , 2006, The journal of gene medicine.
[238] T. Uchida,et al. High‐intensity focused ultrasound as salvage therapy for patients with recurrent prostate cancer after external beam radiation, brachytherapy or proton therapy , 2011, BJU international.
[239] Mark Bydder,et al. Qualitative and quantitative ultrashort echo time (UTE) imaging of cortical bone. , 2010, Journal of magnetic resonance.
[240] F. Lizzi,et al. Myocardial lesion formation using high-intensity focused ultrasound. , 2006, Journal of the American Society of Echocardiography : official publication of the American Society of Echocardiography.
[241] C. R. Hill,et al. Histological changes in rat liver tumours treated with high-intensity focused ultrasound. , 1993, Ultrasound in medicine & biology.
[242] Y. Na,et al. Patient selection guidelines in MR-guided focused ultrasound surgery of uterine fibroids: a pictorial guide to relevant findings in screening pelvic MRI , 2008, European Radiology.
[243] T. D. Mast,et al. Miniaturized ultrasound arrays for interstitial ablation and imaging. , 2005, Ultrasound in medicine & biology.
[244] Philip A Starr,et al. Risk Factors for Hemorrhage during Microelectrode-guided Deep Brain Stimulator Implantation for Movement Disorders , 2005, Neurosurgery.
[245] R. Sievert,et al. Book Reviews : Recommendations of the International Commission on Radiological Protection (as amended 1959 and revised 1962). I.C.R.P. Publication 6. 70 pp. PERGAMON PRESS. Oxford, London and New York, 1964. £1 5s. 0d. [TB/54] , 1964 .
[246] W. Fry,et al. Production of reversible changes in the central nervous system by ultrasound. , 1958, Science.
[247] Sébastien Roujol,et al. Real‐time 3D target tracking in MRI guided focused ultrasound ablations in moving tissues , 2010, Magnetic resonance in medicine.
[248] G M Bydder,et al. Magnetic resonance imaging of short T2 components in tissue. , 2003, Clinical radiology.
[249] Icrp. 1990 Recommendations of the International Commission on Radiological Protection , 1991 .
[250] K. Hynynen,et al. Focused ultrasound (HIFU) induces localized enhancement of reporter gene expression in rabbit carotid artery , 2003, Gene Therapy.
[251] Kullervo Hynynen,et al. Microbubble contrast agent with focused ultrasound to create brain lesions at low power levels: MR imaging and histologic study in rabbits. , 2006, Radiology.
[252] Steve B. Jiang,et al. The management of respiratory motion in radiation oncology report of AAPM Task Group 76. , 2006, Medical physics.
[253] Icrp. Recommendations of the International Commission on Radiological Protection Publication 60 , 1991 .
[254] Ferenc A. Jolesz,et al. MR-guided focused ultrasound surgery. , 1992 .
[255] Wen-Zhi Chen,et al. Extracorporeal high intensity focused ultrasound treatment for patients with breast cancer , 2005, Breast Cancer Research and Treatment.
[256] Wen-Zhi Chen,et al. Feasibility of US-guided high-intensity focused ultrasound treatment in patients with advanced pancreatic cancer: initial experience. , 2005, Radiology.
[257] Baudouin Denis de Senneville,et al. Real‐time adaptive methods for treatment of mobile organs by MRI‐controlled high‐intensity focused ultrasound , 2007, Magnetic resonance in medicine.
[258] Michael Lustig,et al. Hybrid referenceless and multibaseline subtraction MR thermometry for monitoring thermal therapies in moving organs. , 2010, Medical physics.
[259] L. Leksell. The stereotaxic method and radiosurgery of the brain. , 1951, Acta chirurgica Scandinavica.
[260] Matthew D Robson,et al. Magnetic resonance imaging of cortical bone with ultrashort TE pulse sequences. , 2005, Magnetic resonance imaging.
[261] J L Thomas,et al. Optimal focusing by spatio-temporal inverse filter. II. Experiments. Application to focusing through absorbing and reverberating media. , 2001, The Journal of the Acoustical Society of America.
[262] O. S. Nielsen. Effect of fractionated hyperthermia on hypoxic cells in vitro. , 1981, International journal of radiation biology and related studies in physics, chemistry, and medicine.
[263] H. Imhof,et al. Pancreatic calcifications in malignant islet cell tumors. , 1977, Radiology.
[264] A. Dumont,et al. SONOTHROMBOLYSIS: AN EMERGING MODALITY FOR THE MANAGEMENT OF STROKE , 2009, Neurosurgery.
[265] G T Clement,et al. A non-invasive method for focusing ultrasound through the human skull. , 2002, Physics in medicine and biology.
[266] John R. Eisenbrey,et al. Delivery of Encapsulated Doxorubicin by Ultrasound-Mediated Size Reduction of Drug-Loaded Polymer Contrast Agents , 2010, IEEE Transactions on Biomedical Engineering.
[267] Ronald A. Roy,et al. Role of acoustic cavitation in the delivery and monitoring of cancer treatment by high-intensity focused ultrasound (HIFU) , 2007, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[268] Robert R. Young,et al. Reversible Block of Nerve Conduction by Ultrasound: Ultrasonic Blocking of Nerve Fibers , 1961 .
[269] Matthias David,et al. Focused ultrasound treatment of uterine fibroid tumors: safety and feasibility of a noninvasive thermoablative technique. , 2003, American journal of obstetrics and gynecology.
[270] K. Hynynen,et al. Computational aspects in high intensity ultrasonic surgery planning , 2010, Comput. Medical Imaging Graph..
[271] J. Trojanowski,et al. Long-term deep brain stimulation in a patient with essential tremor: clinical response and postmortem correlation with stimulator termination sites in ventral thalamus. Case report. , 2000, Journal of neurosurgery.
[272] Kullervo Hynynen,et al. Focal beam distortion and treatment planning in abdominal focused ultrasound surgery. , 2005 .