Post Hoc Analysis of Passive Cavitation Imaging for Classification of Histotripsy-Induced Liquefaction in Vitro
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Adam D. Maxwell | Kevin J. Haworth | Christy K. Holland | Kenneth B. Bader | C. Holland | A. Maxwell | K. Haworth | K. Bader
[1] C. Cain,et al. Controlling cavitation‐based image contrast in focused ultrasound histotripsy surgery , 2015, Magnetic resonance in medicine.
[2] Zhen Xu,et al. Histotripsy methods in mechanical disintegration of tissue: Towards clinical applications , 2015, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[3] Mingxi Wan,et al. Spatial-temporal ultrasound imaging of residual cavitation bubbles around a fluid-tissue interface in histotripsy. , 2015, The Journal of the Acoustical Society of America.
[4] Jie Tang,et al. Prostatic elasticity: a new non-invasive parameter to assess bladder outlet obstruction caused by benign prostatic hyperplasia (a canine experiment). , 2013, Urology.
[5] Zhen Xu,et al. Image-guided non-invasive ultrasound liver ablation using histotripsy: Feasibility study in an in vivo porcine model , 2012 .
[6] C. Cain,et al. Disintegration of tissue using high intensity focused ultrasound: Two approaches that utilize shock waves , 2012 .
[7] C. Holland,et al. Efficacy of histotripsy combined with rt-PA in vitro , 2016, Physics in medicine and biology.
[8] W. Kreider,et al. Design of HIFU Transducers for Generating Specified Nonlinear Ultrasound Fields , 2017, IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control.
[9] Kullervo Hynynen,et al. Blood-brain barrier: real-time feedback-controlled focused ultrasound disruption by using an acoustic emissions-based controller. , 2012, Radiology.
[10] J. Mobley,et al. The effect of static pressure on the strength of inertial cavitation events. , 2012, The Journal of the Acoustical Society of America.
[11] M. Zweig,et al. Receiver-operating characteristic (ROC) plots: a fundamental evaluation tool in clinical medicine. , 1993, Clinical chemistry.
[12] David Hinkley,et al. Bootstrap Methods: Another Look at the Jackknife , 2008 .
[13] James J. Choi,et al. Non-invasive and real-time passive acoustic mapping of ultrasound-mediated drug delivery , 2014, Physics in medicine and biology.
[14] C. Cain,et al. A real-time measure of cavitation induced tissue disruption by ultrasound imaging backscatter reduction , 2007, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[15] Jonathan T. Sutton,et al. Ultrasound-enhanced rt-PA thrombolysis in an ex vivo porcine carotid artery model. , 2011, Ultrasound in medicine & biology.
[16] Thomas L. Szabo,et al. Diagnostic Ultrasound Imaging: Inside Out , 2004 .
[17] Zhen Xu,et al. Imaging feedback of histotripsy treatments using ultrasound shear wave elastography , 2012, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[18] E. DeLong,et al. Comparing the areas under two or more correlated receiver operating characteristic curves: a nonparametric approach. , 1988, Biometrics.
[19] C. Cain,et al. Optical and acoustic monitoring of bubble cloud dynamics at a tissue-fluid interface in ultrasound tissue erosion. , 2006, The Journal of the Acoustical Society of America.
[20] 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.
[21] Eleanor Stride,et al. Ultrasound-Propelled Nanocups for Drug Delivery , 2015, Small.
[22] C. Cain,et al. Histotripsy beyond the “intrinsic” cavitation threshold using very short ultrasound pulses: “Microtripsy” , 2013 .
[23] T. D. Mast,et al. Using passive cavitation images to classify high-intensity focused ultrasound lesions. , 2015, Ultrasound in medicine & biology.
[24] C. Cain,et al. An efficient treatment strategy for histotripsy by removing cavitation memory. , 2012, Ultrasound in medicine & biology.
[25] Vasant A Salgaonkar,et al. Passive cavitation imaging with ultrasound arrays. , 2009, The Journal of the Acoustical Society of America.
[26] C. Holland,et al. Trans-Stent B-Mode Ultrasound and Passive Cavitation Imaging. , 2016, Ultrasound in medicine & biology.
[27] Jie Tang,et al. Elastic modulus of the prostate: a new non-invasive feature to diagnose bladder outlet obstruction in patients with benign prostatic hyperplasia. , 2014, Ultrasound in medicine & biology.
[28] A. Levin,et al. Real-time feedback of histotripsy thrombolysis using bubble-induced color Doppler. , 2015, Ultrasound in medicine & biology.
[29] Miklós Gyöngy,et al. Passive cavitation mapping for localization and tracking of bubble dynamics. , 2010, The Journal of the Acoustical Society of America.
[30] T. D. Mast,et al. Methods to calibrate the absolute receive sensitivity of single-element, focused transducers. , 2015, The Journal of the Acoustical Society of America.
[31] Lawrence A Crum,et al. Shock-induced heating and millisecond boiling in gels and tissue due to high intensity focused ultrasound. , 2010, Ultrasound in medicine & biology.
[32] C. Cain,et al. Histotripsy for the treatment of BPH: evaluation in a chronic canine model , 2008, 2008 IEEE Ultrasonics Symposium.
[33] James J. Choi,et al. Spatiotemporal evolution of cavitation dynamics exhibited by flowing microbubbles during ultrasound exposure. , 2012, The Journal of the Acoustical Society of America.
[34] T. D. Mast,et al. Passive imaging with pulsed ultrasound insonations. , 2012, The Journal of the Acoustical Society of America.
[35] J. Noble,et al. Use of passive arrays for characterization and mapping of cavitation activity during HIFU exposure , 2008, 2008 IEEE Ultrasonics Symposium.
[36] T. Bigelow,et al. Dependence of ablative ability of high-intensity focused ultrasound cavitation-based histotripsy on mechanical properties of agar. , 2014, The Journal of the Acoustical Society of America.
[37] C. Cain,et al. Removal of residual cavitation nuclei to enhance histotripsy erosion of model urinary stones , 2015, IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control.
[38] Zhen Xu,et al. Noninvasive treatment of deep venous thrombosis using pulsed ultrasound cavitation therapy (histotripsy) in a porcine model. , 2011, Journal of vascular and interventional radiology : JVIR.
[39] C. Cain,et al. MR‐based detection of individual histotripsy bubble clouds formed in tissues and phantoms , 2016, Magnetic resonance in medicine.
[40] Tom Leslie,et al. Spatiotemporal monitoring of high-intensity focused ultrasound therapy with passive acoustic mapping. , 2012, Radiology.
[41] C. Lafon,et al. Observation of a cavitation cloud in tissue using correlation between ultrafast ultrasound images , 2015, IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control.
[42] Eli Vlaisavljevich,et al. Non-Invasive Ultrasound Liver Ablation Using Histotripsy: Chronic Study in an In Vivo Rodent Model. , 2016, Ultrasound in medicine & biology.
[43] J. Hanley,et al. The meaning and use of the area under a receiver operating characteristic (ROC) curve. , 1982, Radiology.
[44] Penny Probert Smith,et al. Passive acoustic mapping utilizing optimal beamforming in ultrasound therapy monitoring. , 2015, The Journal of the Acoustical Society of America.
[45] Adam D. Maxwell,et al. A tissue phantom for visualization and measurement of ultrasound-induced cavitation damage. , 2010, Ultrasound in medicine & biology.
[46] Zhen Xu,et al. Cavitation clouds created by shock scattering from bubbles during histotripsy. , 2011, The Journal of the Acoustical Society of America.
[47] Zhen Xu,et al. Noninvasive Creation of an Atrial Septal Defect by Histotripsy in a Canine Model , 2010, Circulation.
[48] C. Cain,et al. Why Are Short Pulses More Efficient in Tissue Erosion Using Pulsed Cavitational Ultrasound Therapy (Histotripsy) , 2010 .
[49] Nathan McDannold,et al. Passive Acoustic Mapping with the Angular Spectrum Method , 2017, IEEE Transactions on Medical Imaging.
[50] Nathan McDannold,et al. Integrated ultrasound and magnetic resonance imaging for simultaneous temperature and cavitation monitoring during focused ultrasound therapies. , 2013, Medical physics.
[51] Timothy L. Hall,et al. A Low Cost Compact 512 Channel Therapeutic Ultrasound System For Transcutaneous Ultrasound Surgery , 2006 .
[52] Zhen Xu,et al. Effects of tissue mechanical properties on susceptibility to histotripsy-induced tissue damage , 2014, Physics in medicine and biology.
[53] K. Hynynen,et al. MRI guided and monitored focused ultrasound thermal ablation methods: a review of progress , 2004, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[54] C. Holland,et al. Predicting the growth of nanoscale nuclei by histotripsy pulses , 2016, Physics in medicine and biology.
[55] K. Nightingale,et al. Characterizing Stiffness of Human Prostates Using Acoustic Radiation Force , 2010, Ultrasonic imaging.
[56] C. Cain,et al. Bubble-Induced Color Doppler Feedback for Histotripsy Tissue Fractionation , 2016, IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control.
[57] C. Cain,et al. Noninvasive thrombolysis using histotripsy beyond the intrinsic threshold (microtripsy) , 2015, IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control.
[58] Zhen Xu,et al. Probability of cavitation for single ultrasound pulses applied to tissues and tissue-mimicking materials. , 2013, Ultrasound in medicine & biology.
[59] Zhen Xu,et al. Effects of tissue stiffness, ultrasound frequency, and pressure on histotripsy-induced cavitation bubble behavior , 2015, Physics in medicine and biology.
[60] C. Holland,et al. Effect of Frequency-Dependent Attenuation on Predicted Histotripsy Waveforms in Tissue-Mimicking Phantoms. , 2016, Ultrasound in medicine & biology.
[61] 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.
[62] F. Jolesz. MRI-guided focused ultrasound surgery. , 2007, Annual review of medicine.
[63] V. Normand,et al. New insight into agarose gel mechanical properties. , 2000, Biomacromolecules.
[64] Aytekin Oto,et al. Short-term reproducibility of apparent diffusion coefficient estimated from diffusion-weighted MRI of the prostate , 2015, Abdominal Imaging.
[65] M Tanter,et al. In vivo real-time cavitation imaging in moving organs , 2017, Physics in medicine and biology.