Image-guided robotic interventions for prostate cancer
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A. Darzi | P. Pratt | Guang-Zhong Yang | E. Mayer | P. Edwards | A. Hughes-Hallett | A. Sridhar | J. Vale
[1] T. Ahlering,et al. Robot-assisted radical prostatectomy: 5-year oncological and biochemical outcomes. , 2012, The Journal of urology.
[2] Y. Endo. Value of Real-Time Elastography-Targeted Biopsy for Prostate Cancer Detection in Men With Prostate-Specific Antigen 1.25 ng/mL or Greater and 4.00 ng/mL or Less , 2011 .
[3] Tom W J Scheenen,et al. Feasibility of a pneumatically actuated MR-compatible robot for transrectal prostate biopsy guidance. , 2011, Radiology.
[4] S. Verma,et al. The feasibility of multiparametric magnetic resonance imaging for targeted biopsy using novel navigation systems to detect early stage prostate cancer: the preliminary experience. , 2013, Journal of endourology.
[5] E. Halpern,et al. Enhanced transrectal ultrasound modalities in the diagnosis of prostate cancer. , 2010, Urology.
[6] Alexandru Patriciu,et al. “MRI Stealth” robot for prostate interventions , 2007, Minimally invasive therapy & allied technologies : MITAT : official journal of the Society for Minimally Invasive Therapy.
[7] M. Menon,et al. A prospective comparison of radical retropubic and robot‐assisted prostatectomy: experience in one institution , 2003, BJU international.
[8] Renato A. Valdés Olmos,et al. SPECT/CT and a Portable γ-Camera for Image-Guided Laparoscopic Sentinel Node Biopsy in Testicular Cancer , 2011, The Journal of Nuclear Medicine.
[9] Katarzyna J Macura,et al. MR-guided biopsy of the prostate: an overview of techniques and a systematic review. , 2008, European urology.
[10] G. Janetschek. Can sentinel pelvic lymph node dissection replace extended pelvic lymph node dissection in patients with prostate cancer? , 2007, Nature Clinical Practice Urology.
[11] B. Bloch,et al. Prediction of prostate cancer extracapsular extension with high spatial resolution dynamic contrast-enhanced 3-T MRI , 2012, European Radiology.
[12] G Bartsch,et al. Comparison of contrast enhanced color Doppler targeted biopsy to conventional systematic biopsy: impact on Gleason score. , 2007, The Journal of urology.
[13] Franck Bladou,et al. Identification of the prostate cancer index lesion by real-time elastography: considerations for focal therapy of prostate cancer , 2011, World Journal of Urology.
[14] M. Sumura,et al. Initial evaluation of prostate cancer with real‐time elastography based on step‐section pathologic analysis after radical prostatectomy: A preliminary study , 2007, International journal of urology : official journal of the Japanese Urological Association.
[15] B L Davies,et al. Brachytherapy—an example of a urological minimally invasive robotic procedure , 2004, The international journal of medical robotics + computer assisted surgery : MRCAS.
[16] G. Bartsch,et al. Real‐time elastography for detecting prostate cancer: preliminary experience , 2007, BJU international.
[17] H. G. van der Poel,et al. Extended nodal dissection reduces sexual function recovery after robot-assisted laparoscopic prostatectomy. , 2012, Journal of endourology.
[18] H. G. van der Poel,et al. Peroperative transrectal ultrasonography‐guided bladder neck dissection eases the learning of robot‐assisted laparoscopic prostatectomy , 2008, BJU international.
[19] S. Hazell,et al. Tumor focality in prostate cancer: implications for focal therapy , 2011, Nature Reviews Clinical Oncology.
[20] G. Mantica,et al. The role of the elastography in the diagnosis of prostate cancer: a retrospective study on 460 patients. , 2012, Archivio italiano di urologia, andrologia : organo ufficiale [di] Societa italiana di ecografia urologica e nefrologica.
[21] Osamu Ukimura,et al. Real-time transrectal ultrasound guidance during laparoscopic radical prostatectomy: impact on surgical margins. , 2006, The Journal of urology.
[22] B. Davies,et al. Robotic System for Transrectal Biopsy of the Prostate: Real-Time Guidance Under MRI , 2010, IEEE Engineering in Medicine and Biology Magazine.
[23] Nobuhiko Hata,et al. High-Field MRI-Compatible Needle Placement Robot for Prostate Interventions , 2011, MMVR.
[24] Mingyue Ding,et al. 3D TRUS Guided Robot Assisted Prostate Brachytherapy , 2005, MICCAI.
[25] G.S. Fischer,et al. MRI-Compatible Pneumatic Robot for Transperineal Prostate Needle Placement , 2008, IEEE/ASME Transactions on Mechatronics.
[26] M. Brock,et al. The impact of real-time elastography guiding a systematic prostate biopsy to improve cancer detection rate: a prospective study of 353 patients. , 2012, The Journal of urology.
[27] Nikolai Hungr,et al. Development of a Novel Robot for Transperineal Needle Based Interventions: Focal Therapy, Brachytherapy and Prostate Biopsies , 2012, The Journal of urology.
[28] P. Grenier,et al. Accuracy of high resolution (1.5 tesla) pelvic phased array magnetic resonance imaging (MRI) in staging prostate cancer in candidates for radical prostatectomy: results from a prospective study. , 2013, Urologic oncology.
[29] J. Fitzpatrick,et al. Medical image processing and analysis , 2000 .
[30] C. Cheng,et al. Robotic prostate biopsy and its relevance to focal therapy of prostate cancer , 2011, Nature Reviews Urology.
[31] Gabor Fichtinger,et al. Design of a novel MRI compatible manipulator for image guided prostate interventions , 2005, IEEE Transactions on Biomedical Engineering.
[32] R Kikinis,et al. Robot-assisted needle placement in open MRI: System architecture, integration and validation , 2007, Computer aided surgery : official journal of the International Society for Computer Aided Surgery.
[33] F. Forsberg,et al. Contrast enhanced transrectal ultrasound for the detection of prostate cancer: a randomized, double-blind trial of dutasteride pretreatment. , 2012, The Journal of urology.
[34] I. Gill,et al. Imaging-assisted endoscopic surgery: Cleveland Clinic experience. , 2008, Journal of endourology.
[35] J. Affeldt,et al. The feasibility study , 2019, The Information System Consultant’s Handbook.
[36] B. S. Sidhu,et al. Real-time elastography in the detection of prostate cancer in patients with raised PSA level. , 2011, Ultrasound in medicine & biology.
[37] David Cosgrove,et al. Contrast-enhanced ultrasound and prostate cancer; a multicentre European research coordination project. , 2008, European urology.
[38] D. Stoianovici,et al. Transperineal prostate intervention: robot for fully automated MR imaging--system description and proof of principle in a canine model. , 2008, Radiology.
[39] Leslie Roberts,et al. A Proof of Principle , 2007, Science.
[40] C. Chaussy,et al. Robot-assisted high-intensity focused ultrasound in focal therapy of prostate cancer. , 2010, Journal of endourology.
[41] P Mohan,et al. Robotic transperineal prostate biopsy: pilot clinical study. , 2011, Urology.
[42] Zhang Yan,et al. Role of transrectal real-time tissue elastography in the diagnosis of prostate cancer. , 2011, Zhongguo yi xue ke xue yuan xue bao. Acta Academiae Medicinae Sinicae.
[43] Ralph Weissleder,et al. Noninvasive detection of clinically occult lymph-node metastases in prostate cancer. , 2003, The New England journal of medicine.
[44] E. Halpern,et al. Targeted biopsy of the prostate: the impact of color Doppler imaging and elastography on prostate cancer detection and Gleason score. , 2007, Urology.
[45] Thomas Wendler,et al. Image navigation as a means to expand the boundaries of fluorescence-guided surgery , 2012, Physics in medicine and biology.
[46] M. Schouten,et al. Predictive value of MRI in the localization, staging, volume estimation, assessment of aggressiveness, and guidance of radiotherapy and biopsies in prostate cancer , 2012, Journal of magnetic resonance imaging : JMRI.
[47] M. Brawer,et al. Predictors of pathologic stage in prostatic carcinoma. The role of neovascularity , 1994, Cancer.
[48] Ken Masamune,et al. System for robotically assisted prostate biopsy and therapy with intraoperative CT guidance. , 2002, Academic radiology.
[49] Jean-Alexandre Long,et al. Real-time robotic transrectal ultrasound navigation during robotic radical prostatectomy: initial clinical experience. , 2012, Urology.
[50] Johan Braeckman,et al. Detection, localisation and characterisation of prostate cancer by Prostate HistoScanning™ , 2012, BJU international.
[51] Gabor Fichtinger,et al. A robotic system for transrectal needle insertion into the prostate with integrated ultrasound , 2004, IEEE International Conference on Robotics and Automation, 2004. Proceedings. ICRA '04. 2004.
[52] Monish Aron,et al. Robotic transrectal ultrasonography during robot-assisted radical prostatectomy. , 2012, European urology.
[53] Ivan Buzurovic,et al. MIRAB: An Image-Guided Multichannel Robot for Prostate Brachytherapy , 2010 .
[54] H. Meinzer,et al. Augmented reality visualization during laparoscopic radical prostatectomy. , 2011, Journal of endourology.
[55] Dan Stoianovici,et al. Toward adaptive stereotactic robotic brachytherapy for prostate cancer: Demonstration of an adaptive workflow incorporating inverse planning and an MR stealth robot , 2010, Minimally invasive therapy & allied technologies : MITAT : official journal of the Society for Minimally Invasive Therapy.
[56] M. Moallem,et al. A Novel Manipulator for Percutaneous Needle Insertion: Design and Experimentation , 2009, IEEE/ASME Transactions on Mechatronics.
[57] Jim C Hu,et al. Perioperative complications of laparoscopic and robotic assisted laparoscopic radical prostatectomy. , 2006, The Journal of urology.
[58] A.A. Goldenberg,et al. Robotic System for Closed-Bore MRI-Guided Prostatic Interventions , 2008, IEEE/ASME Transactions on Mechatronics.
[59] Bernard Bayle,et al. Design considerations for a novel MRI compatible manipulator for prostate cryoablation , 2011, International Journal of Computer Assisted Radiology and Surgery.
[60] Guang-Zhong Yang,et al. Augmented Reality Image Guidance in Minimally Invasive Prostatectomy , 2010, Prostate Cancer Imaging.
[61] E. Wallen,et al. Prospective evaluation of short-term impact and recovery of health related quality of life in men undergoing robotic assisted laparoscopic radical prostatectomy versus open radical prostatectomy. , 2007, The Journal of urology.
[62] M. Porena,et al. Transrectal high-intensity focused ultrasound for the treatment of prostate cancer: Past, present, and future , 2010, Indian journal of urology : IJU : journal of the Urological Society of India.
[63] M. Emberton,et al. Sonablate-500: transrectal high-intensity focused ultrasound for the treatment of prostate cancer. , 2006, Expert review of medical devices.
[64] W. Horninger,et al. Contrast‐enhanced ultrasonography using cadence‐contrast pulse sequencing technology for targeted biopsy of the prostate , 2009, BJU international.
[65] S. Zangos,et al. MR-compatible Assistance System for Biopsy in a High-Field-Strength System: Initial Results in Patients with Suspicious Prostate Lesions 1 , 2022 .
[66] Georg Bartsch,et al. Comparison of contrast enhanced color Doppler targeted biopsy with conventional systematic biopsy: impact on prostate cancer detection. , 2002, The Journal of urology.
[67] Robert G. Moore,et al. Initial clinical experience , 1997 .
[68] Naira Muradyan,et al. Prebiopsy magnetic resonance imaging and prostate cancer detection: comparison of random and targeted biopsies. , 2013, The Journal of urology.
[69] G. Krūmiņa,et al. The value and limitations of contrast-enhanced ultrasound in detection of prostate cancer. , 2011, Anticancer research.
[70] D. Caleb Rucker,et al. A MRI-guided concentric tube continuum robot with piezoelectric actuation: A feasibility study , 2012, 2012 IEEE International Conference on Robotics and Automation.
[71] Anke M Hövels,et al. MRI with a lymph-node-specific contrast agent as an alternative to CT scan and lymph-node dissection in patients with prostate cancer: a prospective multicohort study. , 2008, The Lancet. Oncology.
[72] T. Podder,et al. Robotic system for prostate brachytherapy , 2007, Computer aided surgery : official journal of the International Society for Computer Aided Surgery.
[73] D. Stoianovici,et al. Tandem-robot assisted laparoscopic radical prostatectomy to improve the neurovascular bundle visualization: a feasibility study. , 2011, Urology.
[74] F. Beuvon,et al. 141 Pre-biopsy magnetic resonance imaging and prostate cancer detection: Comparison of random and MRI-targeted biopsies using three different techniques of MRI-TRUS image registration , 2013 .
[75] Peter Kazanzides,et al. Robotic assistance for ultrasound-guided prostate brachytherapy , 2008, Medical Image Anal..
[76] C. Stief,et al. Risk factors for pelvic lymphoceles post‐radical prostatectomy , 2011, International journal of urology : official journal of the Japanese Urological Association.
[77] D. Teber,et al. In-vitro evaluation of a soft-tissue navigation system for laparoscopic prostatectomy. , 2010, Journal of endourology.
[78] Jan J W Lagendijk,et al. MRI-guided robotic system for transperineal prostate interventions: proof of principle , 2010, Physics in medicine and biology.
[79] Gabor Fichtinger,et al. An MRI-Compatible Robotic System With Hybrid Tracking for MRI-Guided Prostate Intervention , 2011, IEEE Transactions on Biomedical Engineering.
[80] T. Schlomm,et al. Evaluation of prostate cancer detection with ultrasound real-time elastography: a comparison with step section pathological analysis after radical prostatectomy. , 2008, European urology.
[81] P. Choyke,et al. Real-time MRI-TRUS fusion for guidance of targeted prostate biopsies , 2008, Computer aided surgery : official journal of the International Society for Computer Aided Surgery.
[82] F. Jolesz. MRI-guided focused ultrasound surgery. , 2007, Annual review of medicine.
[83] Bernd Hamm,et al. Patients with a history of elevated prostate-specific antigen levels and negative transrectal US-guided quadrant or sextant biopsy results: value of MR imaging. , 2002, Radiology.
[84] T. Miki,et al. Technique for a hybrid system of real‐time transrectal ultrasound with preoperative magnetic resonance imaging in the guidance of targeted prostate biopsy , 2010, International journal of urology : official journal of the Japanese Urological Association.
[85] Gabor Fichtinger,et al. Accuracy study of a robotic system for MRI‐guided prostate needle placement , 2013, The international journal of medical robotics + computer assisted surgery : MRCAS.
[86] Hashim Uddin Ahmed,et al. Do low-grade and low-volume prostate cancers bear the hallmarks of malignancy? , 2012, The Lancet. Oncology.
[87] M. Brock,et al. Multiparametric ultrasound of the prostate: adding contrast enhanced ultrasound to real-time elastography to detect histopathologically confirmed cancer. , 2013, The Journal of urology.
[88] Kullervo Hynynen,et al. MRIgHIFU: A tool for image‐guided therapeutics , 2011, Journal of magnetic resonance imaging : JMRI.
[89] F. Frauscher,et al. Applications of transrectal ultrasound in prostate cancer. , 2012, The British journal of radiology.
[90] Septimiu E. Salcudean,et al. A robotic needle guide for prostate brachytherapy , 2008, 2008 IEEE International Conference on Robotics and Automation.
[91] N Betrouni,et al. Focal therapy of prostate cancer: energies and procedures. , 2013, Urologic oncology.
[92] Di Xiao,et al. Ultrasound Guided Robotic System for Transperineal Biopsy of the Prostate , 2005, Proceedings of the 2005 IEEE International Conference on Robotics and Automation.
[93] Prokar Dasgupta,et al. Bone segmentation using a CT based statistical shape model for image guidance in robot assisted prostatectomy , 2008 .
[94] H. G. van der Poel,et al. Laparoscopic Sentinel Lymph Node Biopsy for Prostate Cancer: The Relevance of Locations Outside the Extended Dissection Area , 2011, Prostate Cancer.
[95] Jun Qi,et al. Prostate cancer detection with real-time elastography using a bi-plane transducer: comparison with step section radical prostatectomy pathology , 2014, World Journal of Urology.
[96] A. Thompson,et al. MRI in the detection of prostate cancer: combined apparent diffusion coefficient, metabolite ratio, and vascular parameters. , 2009, AJR. American journal of roentgenology.
[97] Milan Sonka,et al. "Handbook of Medical Imaging, Volume 2. Medical Image Processing and Analysis " , 2000 .