Cylindrical illumination with angular coupling for whole-prostate photoacoustic tomography.
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Darren Roblyer | Yingchun Cao | Ji-Xin Cheng | Liang Cheng | Lu Lan | Sean Gorsky | Tiffany Yang-Tran | Liang Cheng | D. Roblyer | Yingchun Cao | Ji‐Xin Cheng | L. Lan | T. Masterson | M. Koch | Michael O Koch | Brittani Bungart | Tiffany Yang-Tran | S. Gorsky | Brittani Bungart | Timothy Masterson
[1] Saugata Sinha,et al. Evaluation of Frequency Domain Analysis of a Multiwavelength Photoacoustic Signal for Differentiating Malignant From Benign and Normal Prostates , 2016, Journal of ultrasound in medicine : official journal of the American Institute of Ultrasound in Medicine.
[2] F. M. van den Engh,et al. Photoacoustic image patterns of breast carcinoma and comparisons with Magnetic Resonance Imaging and vascular stained histopathology , 2015, Scientific Reports.
[3] Jian Chen,et al. Transurethral Photoacoustic Endoscopy for Prostate Cancer: A Simulation Study , 2016, IEEE Transactions on Medical Imaging.
[4] Paul Beard,et al. In vivo three-dimensional photoacoustic imaging of the renal vasculature in preclinical rodent models. , 2018, American journal of physiology. Renal physiology.
[5] Mark A. Anastasio,et al. Photoacoustic tomography through a whole adult human skull with a photon recycler , 2012, Journal of biomedical optics.
[6] Rui Li,et al. Assessing breast tumor margin by multispectral photoacoustic tomography. , 2015, Biomedical optics express.
[7] Robert A Kruger,et al. Photoacoustic angiography of the breast. , 2010, Medical physics.
[8] Cheri X Deng,et al. Frequency-domain analysis of photoacoustic imaging data from prostate adenocarcinoma tumors in a murine model. , 2011, Ultrasound in medicine & biology.
[9] F. M. van den Engh,et al. Initial results of in vivo non-invasive cancer imaging in the human breast using near-infrared photoacoustics. , 2007, Optics express.
[10] Ji‐Xin Cheng,et al. Annihilation of Methicillin-resistant Staphylococcus aureus via Photobleaching of Staphyloxanthin , 2017, bioRxiv.
[11] Yasunori Iwata,et al. Evaluation of renal oxygen saturation using photoacoustic imaging for the early prediction of chronic renal function in a model of ischemia-induced acute kidney injury , 2018, PloS one.
[12] Junjie Yao,et al. Internal-illumination photoacoustic computed tomography. , 2018, Journal of biomedical optics.
[13] Vasilis Ntziachristos,et al. Multispectral Optoacoustic Tomography of Matrix Metalloproteinase Activity in Vulnerable Human Carotid Plaques , 2011, Molecular Imaging and Biology.
[14] Wayne M. Trott,et al. High-power transmission through step-index multimode fibers , 1991, Laser Damage.
[15] H. J. van Staveren,et al. Light scattering in Intralipid-10% in the wavelength range of 400-1100 nm. , 1991, Applied optics.
[16] S. Emelianov,et al. Tissue-mimicking phantoms for photoacoustic and ultrasonic imaging , 2011, Biomedical optics express.
[17] Stanislav Y. Emelianov,et al. Photoacoustic imaging of prostate brachytherapy seeds , 2011, Biomedical optics express.
[18] Caroline Reinhold,et al. Multiparametric magnetic resonance imaging: Current role in prostate cancer management , 2016, International journal of urology : official journal of the Japanese Urological Association.
[19] J. Trachtenberg,et al. Ultrasound properties of human prostate tissue during heating. , 2002, Ultrasound in medicine & biology.
[20] Weibiao Chen,et al. High-sensitivity intravascular photoacoustic imaging of lipid–laden plaque with a collinear catheter design , 2016, Scientific Reports.
[21] Wiendelt Steenbergen,et al. Preclinical detection of liver fibrosis using dual-modality photoacoustic/ultrasound system. , 2016, Biomedical optics express.
[22] Jesse V Jokerst,et al. Photoacoustic Tomography Detects Early Vessel Regression and Normalization During Ovarian Tumor Response to the Antiangiogenic Therapy Trebananib , 2015, The Journal of Nuclear Medicine.
[23] Huabei Jiang,et al. Photoacoustic tomography can detect cerebral hemodynamic alterations in a neonatal rodent model of hypoxia-ischemia. , 2012, Acta neurobiologiae experimentalis.
[24] Yuan Qu,et al. Transvaginal fast-scanning optical-resolution photoacoustic endoscopy , 2018, Journal of biomedical optics.
[25] Lihong V Wang,et al. High-throughput ultraviolet photoacoustic microscopy with multifocal excitation , 2018, Journal of biomedical optics.
[26] T. Hirasawa,et al. Influence of laser pulse width to the photoacoustic temporal waveform and the image resolution with a solid-state excitation laser , 2012, Photonics West - Biomedical Optics.
[27] Zhixing Xie,et al. Evaluation of bladder microvasculature with high-resolution photoacoustic imaging. , 2011, Optics letters.
[28] Haichong K. Zhang,et al. Prostate‐specific membrane antigen‐targeted photoacoustic imaging of prostate cancer in vivo , 2018, Journal of biophotonics.
[29] J C Mizeret,et al. Cylindrical fiberoptic light diffuser for medical applications , 1996, Lasers in surgery and medicine.
[30] A. Jemal,et al. Cancer statistics, 2018 , 2018, CA: a cancer journal for clinicians.
[31] Shyam Natarajan,et al. Prostate cancer detection with magnetic resonance‐ultrasound fusion biopsy: The role of systematic and targeted biopsies , 2016, Cancer.
[32] Xueding Wang,et al. Photoacoustic tomography: a potential new tool for prostate cancer , 2010, Biomedical optics express.
[33] M. Parmar,et al. Diagnostic accuracy of multi-parametric MRI and TRUS biopsy in prostate cancer (PROMIS): a paired validating confi rmatory study , 2018 .
[34] Ivan D. Nikolov,et al. Dispersion Properties of Optical Polymers , 2009 .
[35] Paul C Beard,et al. Spectroscopic photoacoustic imaging of lipid-rich plaques in the human aorta in the 740 to 1400 nm wavelength range. , 2012, Journal of biomedical optics.
[36] B. Geavlete,et al. Cystoscopy and Urinary Bladder Anatomy , 2016 .
[37] R J Roselli,et al. Measurement of thermal effects on the optical properties of prostate tissue at wavelengths of 1,064 and 633 nm , 1999, Lasers in surgery and medicine.
[38] Rui Li,et al. Photoacoustic tomography of intact human prostates and vascular texture analysis identify prostate cancer biopsy targets , 2018, Photoacoustics.
[39] Ellen Stechel. Laser-induced damage in step-index multimode fibers , 1993, Laser Damage.
[40] Zhigang Wang,et al. A preliminary study of photoacoustic/ultrasound dual-mode imaging in melanoma using MAGE-targeted gold nanoparticles. , 2018, Biochemical and biophysical research communications.
[41] H. Shinmoto,et al. A pilot study of photoacoustic imaging system for improved real‐time visualization of neurovascular bundle during radical prostatectomy , 2016, The Prostate.
[42] Bo Wang,et al. Noninvasive detection of intimal xanthoma using combined ultrasound, strain rate and photoacoustic imaging. , 2012, Ultrasonics.
[43] Navalgund Rao,et al. Basics and Clinical Applications of Photoacoustic Imaging , 2009 .
[44] Massimo Mischi,et al. Angiogenesis in prostate cancer: onset, progression and imaging , 2012, BJU international.
[45] Jie Yuan,et al. Identifying intestinal fibrosis and inflammation by spectroscopic photoacoustic imaging: an animal study in vivo. , 2018, Biomedical optics express.
[46] R. Rohling,et al. Design of high energy laser pulse delivery in a multimode fiber for photoacoustic tomography. , 2017, Optics express.
[47] Rui Li,et al. Label‐free in vivo imaging of peripheral nerve by multispectral photoacoustic tomography , 2015, Journal of biophotonics.
[48] S. Gambhir,et al. Light in and sound out: emerging translational strategies for photoacoustic imaging. , 2014, Cancer research.
[49] John T. Wei,et al. Interstitial assessment of aggressive prostate cancer by physio‐chemical photoacoustics: An ex vivo study with intact human prostates , 2018, Medical physics.
[50] Konstantin I Maslov,et al. Handheld photoacoustic microscopy to detect melanoma depth in vivo. , 2014, Optics letters.
[51] Craig J. Goergen,et al. Assessing carotid atherosclerosis by fiber-optic multispectral photoacoustic tomography , 2015, Photonics West - Biomedical Optics.
[52] H. Shinmoto,et al. Pilot Study of Prostate Cancer Angiogenesis Imaging Using a Photoacoustic Imaging System. , 2017, Urology.
[53] Manojit Pramanik,et al. Hand‐held, clinical dual mode ultrasound ‐ photoacoustic imaging of rat urinary bladder and its applications , 2018, Journal of biophotonics.
[54] Xiaoyu Guo,et al. Transurethral light delivery for prostate photoacoustic imaging , 2015, Journal of biomedical optics.
[55] L. Lilge,et al. Optimizing interstitial photodynamic therapy with custom cylindrical diffusers , 2018, Journal of biophotonics.
[56] Hyun Wook Kang,et al. Circumferential irradiation for interstitial coagulation of urethral stricture. , 2015, Optics express.
[57] M. Perazella,et al. Gadolinium-contrast toxicity in patients with kidney disease: nephrotoxicity and nephrogenic systemic fibrosis. , 2008, Current drug safety.
[58] W. Chapman,et al. Feasibility of co-registered ultrasound and acoustic-resolution photoacoustic imaging of human colorectal cancer. , 2018, Biomedical optics express.
[59] D. Xing,et al. Toward in vivo biopsy of melanoma based on photoacoustic and ultrasound dual imaging with an integrated detector. , 2016, Biomedical optics express.
[60] D. Margolis,et al. PI-RADS Prostate Imaging - Reporting and Data System: 2015, Version 2. , 2016, European urology.
[61] Qifa Zhou,et al. Evaluation of breast tumor margins in vivo with intraoperative photoacoustic imaging. , 2012, Optics express.
[62] S. Prahl,et al. Optical properties of scattering and absorbing materials used in the development of optical phantoms at 1064 nm. , 1996, Journal of biomedical optics.
[63] John A Viator,et al. Photoacoustic detection of metastatic melanoma cells in the human circulatory system. , 2006, Optics letters.
[64] Purang Abolmaesumi,et al. Transurethral illumination probe design for deep photoacoustic imaging of prostate , 2018, BiOS.
[65] Michael C. Kolios,et al. Photoacoustic imaging for assessing ischemic kidney damage in vivo , 2018, BiOS.
[66] Wolfgang Uter,et al. Multispectral Optoacoustic Tomography for Assessment of Crohn's Disease Activity. , 2017, The New England journal of medicine.
[67] Ji-Xin Cheng,et al. Cholesteryl ester accumulation induced by PTEN loss and PI3K/AKT activation underlies human prostate cancer aggressiveness. , 2014, Cell metabolism.
[68] Hamid Moradi,et al. Toward Intra-Operative Prostate Photoacoustic Imaging: Configuration Evaluation and Implementation Using the da Vinci Research Kit , 2019, IEEE Transactions on Medical Imaging.
[69] Nitish V. Thakor,et al. A Handheld Real-Time Photoacoustic Imaging System for Animal Neurological Disease Models: From Simulation to Realization , 2018, Sensors.
[70] B T Cox,et al. Characterisation of a phantom for multiwavelength quantitative photoacoustic imaging , 2016, Physics in medicine and biology.
[71] Chulhong Kim,et al. Nonionizing photoacoustic cystography in vivo. , 2011, Optics letters.
[72] J. Bamber,et al. Detecting human melanoma cell re-differentiation following BRAF or heat shock protein 90 inhibition using photoacoustic and magnetic resonance imaging , 2017, Scientific Reports.
[73] Massimo Mischi,et al. Multiparametric ultrasound in the detection of prostate cancer: a systematic review , 2015, World Journal of Urology.
[74] Lihong V. Wang,et al. Photoacoustic imaging in biomedicine , 2006 .
[75] Quing Zhu,et al. Evaluation of Ovarian Cancer: Initial Application of Coregistered Photoacoustic Tomography and US. , 2018, Radiology.
[76] Lihong V. Wang,et al. A practical guide to photoacoustic tomography in the life sciences , 2016, Nature Methods.
[77] Vasilis Ntziachristos,et al. Advances in real-time multispectral optoacoustic imaging and its applications , 2015, Nature Photonics.
[78] Rebecca L. Siegel Mph,et al. Cancer statistics, 2018 , 2018 .
[79] O. Oralkan,et al. Photoacoustic Imaging of the Bladder , 2013, Journal of ultrasound in medicine : official journal of the American Institute of Ultrasound in Medicine.
[80] Samir S Taneja,et al. Optimization of initial prostate biopsy in clinical practice: sampling, labeling and specimen processing. , 2013, The Journal of urology.