Photoacoustic-Based-Close-Loop Temperature Control for Nanoparticle Hyperthermia
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[1] Rares Salomir,et al. Automatic spatial and temporal temperature control for MR‐guided focused ultrasound using fast 3D MR thermometry and multispiral trajectory of the focal point , 2004, Magnetic resonance in medicine.
[2] Matteo Pasquali,et al. Carbon nanotube‐enhanced thermal destruction of cancer cells in a noninvasive radiofrequency field , 2007, Cancer.
[3] P. VanBaren,et al. Multipoint temperature control during hyperthermia treatments: theory and simulation , 1995, IEEE Transactions on Biomedical Engineering.
[4] E. Dumont,et al. Magnetic Resonance Thermometry at 7T for Real-Time Monitoring and Correction of Ultrasound Induced Mild Hyperthermia , 2012, PloS one.
[5] Huabei Jiang,et al. 4-D Photoacoustic Tomography , 2013, Scientific Reports.
[6] Junjie Yao,et al. Absolute photoacoustic thermometry in deep tissue. , 2013, Optics letters.
[7] R. E. Rosensweig,et al. Heating magnetic fluid with alternating magnetic field , 2002 .
[8] Dalong Liu,et al. Realtime control of multiple-focus phased array heating patterns based on noninvasive ultrasound thermography , 2010, 2010 IEEE International Ultrasonics Symposium.
[9] Huabei Jiang,et al. Quantitative photoacoustic tomography: Recovery of optical absorption coefficient maps of heterogeneous media , 2006 .
[10] Morteza Mahmoudi,et al. Magnetic fluid hyperthermia: focus on superparamagnetic iron oxide nanoparticles. , 2011, Advances in colloid and interface science.
[11] Lihong V. Wang,et al. Photoacoustic Tomography: In Vivo Imaging from Organelles to Organs , 2012, Science.
[12] I. Pelivanov,et al. Temperature dependence of the optoacoustic transformation efficiency in ex vivo tissues for application in monitoring thermal therapies. , 2012, Journal of biomedical optics.
[13] V. Novosad,et al. Surface Functionalized Biocompatible Magnetic Nanospheres for Cancer Hyperthermia , 2007, IEEE Transactions on Magnetics.
[14] M. Kowalski,et al. A temperature-based feedback control system for electromagnetic phased-array hyperthermia: theory and simulation. , 2003, Physics in medicine and biology.
[15] Bruno Quesson,et al. Improved Volumetric MR-HIFU Ablation by Robust Binary Feedback Control , 2010, IEEE Transactions on Biomedical Engineering.
[16] M. O’Donnell,et al. Multifunctional nanoparticles as coupled contrast agents. , 2010, Nature communications.
[17] Jesse V. Jokerst,et al. A Brain Tumor Molecular Imaging Strategy Using A New Triple-Modality MRI-Photoacoustic-Raman Nanoparticle , 2011, Nature Medicine.
[18] O. V. von Ramm,et al. In vivo real-time 3-D intracardiac echo using PMUT arrays , 2014, IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control.
[19] H. Hejase,et al. MnZnFe nanoparticles for self-controlled magnetic hyperthermia , 2012 .
[20] R. Witte,et al. Spectroscopic thermoacoustic imaging of water and fat composition , 2012 .
[21] L V Wang,et al. Signal processing in scanning thermoacoustic tomography in biological tissues. , 2001, Medical physics.
[22] C M Collins,et al. Adaptive Real-Time Closed-Loop Temperature Control for Ultrasound Hyperthermia Using Magnetic Resonance Thermometry. , 2005, Concepts in magnetic resonance. Part B, Magnetic resonance engineering.
[23] Pai-Chi Li,et al. A photoacoustic imager with light illumination through an infrared-transparent silicon CMUT array , 2012, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[24] P. VanBaren,et al. Two-dimensional temperature estimation using diagnostic ultrasound , 1998, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[25] Vasilis Ntziachristos,et al. Multispectral opto-acoustic tomography of deep-seated fluorescent proteins in vivo , 2009 .
[26] M. Fink,et al. Temperature estimation using ultrasonic spatial compound imaging , 2004, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[27] H. Hejase,et al. Self-Controlled Hyperthermia Characteristics of ZnGdFe Nanoparticles , 2012, IEEE Transactions on Magnetics.
[28] Keith St. Lawrence,et al. Monitoring brain temperature by time-resolved near-infrared spectroscopy: pilot study , 2014, Journal of biomedical optics.
[29] Y. Takemura,et al. AC Magnetic-Field-Induced Heating and Physical Properties of Ferrite Nanoparticles for a Hyperthermia Agent in Medicine , 2009, IEEE Transactions on Nanotechnology.
[30] P. Decuzzi,et al. Design Maps for the Hyperthermic Treatment of Tumors with Superparamagnetic Nanoparticles , 2013, PloS one.
[31] Q. Pankhurst,et al. Applications of magnetic nanoparticles in biomedicine , 2003 .
[32] C. Knospe,et al. PID control , 2006, IEEE Control Systems.
[33] Yuanjin Zheng,et al. Thermally modulated photoacoustic imaging with super-paramagnetic iron oxide nanoparticles. , 2014, Optics letters.
[34] Lihong V. Wang,et al. Thermoacoustic and photoacoustic sensing of temperature. , 2009, Journal of biomedical optics.
[35] Yuanjin Zheng,et al. Magnetically mediated thermoacoustic imaging toward deeper penetration , 2013 .
[36] C. Damianou,et al. Noninvasive temperature estimation in tissue via ultrasound echo-shifts. Part II. In vitro study. , 1996, The Journal of the Acoustical Society of America.
[37] V. Zharov,et al. Photothermal nanodrugs: potential of TNF-gold nanospheres for cancer theranostics , 2013, Scientific Reports.
[38] Yuanjin Zheng,et al. Microwave-acoustic phasoscopy for tissue characterization , 2012 .
[39] L. Wald,et al. Proposing Magnetic Nanoparticle Hyperthermia in Low-Field MRI , 2010 .
[40] Thomas Kelly,et al. In vivo magnetic enrichment and multiplex photoacoustic detection of circulating tumour cells. , 2009, Nature nanotechnology.
[41] Douglas N. Stephens,et al. Spatial and Temporal-Controlled Tissue Heating on a Modified Clinical Ultrasound Scanner for Generating Mild Hyperthermia in Tumors , 2010, IEEE Transactions on Biomedical Engineering.
[42] S. Dutz,et al. INSTITUTE OF PHYSICS PUBLISHING JOURNAL OF PHYSICS: CONDENSED MATTER , 2005 .
[43] S. Emelianov,et al. Photoacoustic imaging and temperature measurement for photothermal cancer therapy. , 2008, Journal of biomedical optics.
[44] L V Wang,et al. Scanning thermoacoustic tomography in biological tissue. , 2000, Medical physics.
[45] A.J. Fenn,et al. Experimental investigation of an adaptive feedback algorithm for hot spot reduction in radio-frequency phased-array hyperthermia , 1996, IEEE Transactions on Biomedical Engineering.
[46] Bruno Quesson,et al. Three‐dimensional spatial and temporal temperature control with MR thermometry‐guided focused ultrasound (MRgHIFU) , 2009, Magnetic resonance in medicine.