Drift correction for accurate PRF-shift MR thermometry during mild hyperthermia treatments with MR-HIFU
暂无分享,去创建一个
Rajiv Chopra | Charles Mougenot | Mika Ylihautala | Max O. Köhler | Rajiv Chopra | R. Staruch | C. Mougenot | T. Laetsch | M. Köhler | Chenchen Bing | Matti Tillander | Theodore W. Laetsch | Chenchen Bing | Robert M. Staruch | M. Ylihautala | M. Tillander
[1] K. Hynynen,et al. MRI-guided noninvasive ultrasound surgery. , 1993, Medical physics.
[2] R M Henkelman,et al. Ex vivo tissue‐type independence in proton‐resonance frequency shift MR thermometry , 1998, Magnetic resonance in medicine.
[3] D G Nishimura,et al. Inhomogeneity correction using an estimated linear field map , 1996, Magnetic resonance in medicine.
[4] Rajiv Chopra,et al. Hyperthermia-mediated doxorubicin release from thermosensitive liposomes using MR-HIFU: Therapeutic effect in rabbit Vx2 tumours , 2015, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[5] J. Poorter,et al. Noninvasive MRI Thermometry with the Proton Resonance Frequency (PRF) Method: In Vivo Results in Human Muscle , 1995, Magnetic resonance in medicine.
[6] Rajiv Chopra,et al. Trans-cranial opening of the blood-brain barrier in targeted regions using a stereotaxic brain atlas and focused ultrasound energy , 2014, Journal of therapeutic ultrasound.
[7] Chris Diederich,et al. Focal ablation of prostate cancer: four roles for magnetic resonance imaging guidance. , 2013, The Canadian journal of urology.
[8] C. Tempany,et al. Magnetic Resonance–Guided Focused Ultrasound for Patients With Painful Bone Metastases: Phase III Trial Results , 2014, Journal of the National Cancer Institute.
[9] 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.
[10] Chris J G Bakker,et al. Correction of proton resonance frequency shift temperature maps for magnetic field disturbances caused by breathing. , 2006, Physics in medicine and biology.
[11] Peter Wust,et al. Neo-adjuvant chemotherapy alone or with regional hyperthermia for localised high-risk soft-tissue sarcoma: a randomised phase 3 multicentre study. , 2010, The Lancet. Oncology.
[12] A. W. Simonetti,et al. Tumour hyperthermia and ablation in rats using a clinical MR‐HIFU system equipped with a dedicated small animal set‐up , 2012, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[13] K. Hynynen,et al. Transcranial Magnetic Resonance Imaging– Guided Focused Ultrasound Surgery of Brain Tumors: Initial Findings in 3 Patients , 2010, Neurosurgery.
[14] 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.
[15] Carlo Catalano,et al. Real-time magnetic resonance-guided high-intensity focused ultrasound focal therapy for localised prostate cancer: preliminary experience. , 2013, European urology.
[16] E. Atalar,et al. Monitoring and correcting spatio-temporal variations of the MR scanner’s static magnetic field , 2006, Magnetic Resonance Materials in Physics, Biology and Medicine.
[17] Michael Lustig,et al. Hybrid referenceless and multibaseline subtraction MR thermometry for monitoring thermal therapies in moving organs. , 2010, Medical physics.
[18] K Hynynen,et al. MRI monitoring of the thermal ablation of tissue: Effects of long exposure times , 2001, Journal of magnetic resonance imaging : JMRI.
[19] Sharon Thomsen,et al. Magnetic resonance-guided focused ultrasound surgery of breast cancer: reliability and effectiveness. , 2006, Journal of the American College of Surgeons.
[20] Samuel Pichardo,et al. In vivo optimisation study for multi-baseline MR-based thermometry in the context of hyperthermia using MR-guided high intensity focused ultrasound for head and neck applications , 2014, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[21] L. Bartels,et al. Do respiration and cardiac motion induce magnetic field fluctuations in the breast and are there implications for MR thermometry? , 2009, Journal of magnetic resonance imaging : JMRI.
[22] Ashish Ranjan,et al. Image-guided drug delivery with magnetic resonance guided high intensity focused ultrasound and temperature sensitive liposomes in a rabbit Vx2 tumor model. , 2012, Journal of controlled release : official journal of the Controlled Release Society.
[23] Holger Grüll,et al. Magnetic resonance guided high-intensity focused ultrasound for image-guided temperature-induced drug delivery. , 2014, Advanced drug delivery reviews.
[24] Dieter Haemmerich,et al. Targeted drug delivery by high intensity focused ultrasound mediated hyperthermia combined with temperature-sensitive liposomes: Computational modelling and preliminary in vivovalidation , 2012, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[25] P. Lambin,et al. Magnetic Resonance Guided High-Intensity Focused Ultrasound Mediated Hyperthermia Improves the Intratumoral Distribution of Temperature-Sensitive Liposomal Doxorubicin , 2013, Investigative radiology.
[26] H. Grüll,et al. Hyperthermia-triggered drug delivery from temperature-sensitive liposomes using MRI-guided high intensity focused ultrasound. , 2012, Journal of controlled release : official journal of the Controlled Release Society.
[27] G. Ehnholm,et al. Volumetric HIFU ablation under 3D guidance of rapid MRI thermometry. , 2009, Medical physics.
[28] Maxim Zaitsev,et al. Correction of frequency drifts induced by gradient heating in 1H spectra using interleaved reference spectroscopy , 2011, Journal of magnetic resonance imaging : JMRI.
[29] J. MacFall,et al. Correction of breathing-induced errors in magnetic resonance thermometry of hyperthermia using multiecho field fitting techniques. , 2010, Medical physics.
[30] J. Lewin,et al. Variation correction algorithm: Analysis of phase suppression and thermal profile fidelity for proton resonance frequency magnetic resonance thermometry at 0.2 T , 2003, Journal of magnetic resonance imaging : JMRI.
[31] Bruno Quesson,et al. Improved Volumetric MR-HIFU Ablation by Robust Binary Feedback Control , 2010, IEEE Transactions on Biomedical Engineering.
[32] 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.
[33] K Hynynen,et al. The feasibility of using MRI to monitor and guide noninvasive ultrasound surgery. , 1993, Ultrasound in medicine & biology.
[34] F A Jolesz,et al. MR imaging-guided focused ultrasound surgery of fibroadenomas in the breast: a feasibility study. , 2001, Radiology.
[35] W. Kucharczyk,et al. Palliative treatment of painful bone metastases with MR imaging--guided focused ultrasound. , 2008, Radiology.
[36] M. Dewhirst,et al. Hyperthermia and liposomes. , 1999, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[37] Fritz Schick,et al. Magnetic susceptibility effects on the accuracy of MR temperature monitoring by the proton resonance frequency method , 2005, Journal of magnetic resonance imaging : JMRI.
[38] K. Hynynen,et al. Magnetic resonance‐guided thermal surgery , 1993, Magnetic resonance in medicine.
[39] 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.
[40] Waldemar Wlodarczyk,et al. Noninvasive magnetic resonance thermography of recurrent rectal carcinoma in a 1.5 Tesla hybrid system. , 2005, Cancer research.
[41] R M Henkelman,et al. Proton‐resonance frequency shift MR thermometry is affected by changes in the electrical conductivity of tissue , 2000, Magnetic resonance in medicine.
[42] M. A. van den Bosch,et al. Feasibility of volumetric MRI-guided high intensity focused ultrasound (MR-HIFU) for painful bone metastases , 2014, Journal of therapeutic ultrasound.
[43] Xiaodong Zhou,et al. Temperature measurement error reduction for MRI-guided HIFU treatment , 2010, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[44] A. Hart,et al. Comparison of radiotherapy alone with radiotherapy plus hyperthermia in locally advanced pelvic tumours: a prospective, randomised, multicentre trial , 2000, The Lancet.
[45] Ian Rivens,et al. Investigation of the viscous heating artefact arising from the use of thermocouples in a focused ultrasound field , 2008, Physics in medicine and biology.
[46] Allison Payne,et al. Respiration artifact correction in three‐dimensional proton resonance frequency MR thermometry using phase navigators , 2016, Magnetic resonance in medicine.
[47] M. Köhler,et al. High intensity focused ultrasound induced in vivo large volume hyperthermia under 3D MRI temperature control. , 2016, Medical physics.
[48] Bruno Quesson,et al. Volumetric HIFU ablation under 3D guidance of rapid MRI thermometry. , 2009, Medical physics.
[49] Elizabeth A Stewart,et al. Clinical outcomes of focused ultrasound surgery for the treatment of uterine fibroids. , 2006, Fertility and sterility.
[50] Zeljko Vujaskovic,et al. Randomized trial of hyperthermia and radiation for superficial tumors. , 2005, Journal of clinical oncology : official journal of the American Society of Clinical Oncology.
[51] Mark W. Dewhirst,et al. Review Hyperthermia and liposomes , 1999 .
[52] Rajiv Chopra,et al. MRI-compatible transurethral ultrasound system for the treatment of localized prostate cancer using rotational control. , 2008, Medical physics.
[53] P. Stauffer,et al. Hyperthermia MRI temperature measurement: Evaluation of measurement stabilisation strategies for extremity and breast tumours , 2009, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[54] G. Maclair,et al. Online correction of respiratory‐induced field disturbances for continuous MR‐thermometry in the breast , 2009, Magnetic resonance in medicine.
[55] Rajiv Chopra,et al. MR imaging-controlled transurethral ultrasound therapy for conformal treatment of prostate tissue: initial feasibility in humans. , 2012, Radiology.
[56] J L Lancaster,et al. Comparison of navigator echo and centroid corrections of image displacement induced by static magnetic field drift on echo planar functional MRI , 2001, Journal of magnetic resonance imaging : JMRI.
[57] John M Pauly,et al. Referenceless PRF shift thermometry , 2004, Magnetic resonance in medicine.
[58] K. Kuroda,et al. A precise and fast temperature mapping using water proton chemical shift , 1995, Magnetic resonance in medicine.
[59] P. Prakash,et al. Model-based feasibility assessment and evaluation of prostate hyperthermia with a commercial MR-guided endorectal HIFU ablation array. , 2014, Medical physics.
[60] Rajiv Chopra,et al. MR thermometry in the human prostate gland at 3.0T for transurethral ultrasound therapy , 2013, Journal of magnetic resonance imaging : JMRI.
[61] K. Hynynen,et al. Temperature Mapping using the water proton chemical shift: A chemical shift selective phase mapping method , 1997, Magnetic resonance in medicine.
[62] Kullervo Hynynen,et al. MR imaging-guided focused ultrasound surgery of uterine leiomyomas: a feasibility study. , 2003, Radiology.
[63] V. Rieke,et al. Comparison of temperature processing methods for monitoring focused ultrasound ablation in the brain , 2013, Journal of magnetic resonance imaging : JMRI.
[64] J. Barkhausen,et al. MR thermometry analysis of sonication accuracy and safety margin of volumetric MR imaging-guided high-intensity focused ultrasound ablation of symptomatic uterine fibroids. , 2012, Radiology.
[65] David L. Woods,et al. Mild hyperthermia with magnetic resonance-guided high-intensity focused ultrasound for applications in drug delivery , 2012, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[66] Rajiv Chopra,et al. Localised drug release using MRI-controlled focused ultrasound hyperthermia , 2011, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[67] I. Hsu,et al. Model-based feasibility assessment and evaluation of prostate hyperthermia with a commercial MR-guided endorectal HIFU ablation array , 2017 .
[68] Eric Achten,et al. The Proton-Resonance-Frequency-Shift Method Compared with Molecular Diffusion for Quantitative Measurement of Two-Dimensional Time-Dependent Temperature Distribution in a Phantom , 1994 .
[69] M. Wintermark,et al. Imaging Findings in MR Imaging–Guided Focused Ultrasound Treatment for Patients with Essential Tremor , 2014, American Journal of Neuroradiology.
[70] M. Viergever,et al. Temperature‐induced tissue susceptibility changes lead to significant temperature errors in PRFS‐based MR thermometry during thermal interventions , 2010, Magnetic resonance in medicine.
[71] 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.