The past, present, and future of x-ray technology for in vivo imaging of function and form
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Andreas Fouras | Robert A. Lewis | Stuart B. Hooper | Kerry Hourigan | Marcus John Kitchen | Stephen Dubsky | S. Hooper | S. Dubsky | M. Kitchen | A. Fouras | K. Hourigan | R. Lewis
[1] D. Beebe,et al. A particle image velocimetry system for microfluidics , 1998 .
[2] A. Dart,et al. Raised Plasma Soluble P-Selectin in Peripheral Arterial Occlusive Disease Enhances Leukocyte Adhesion , 2005, Circulation research.
[3] Alberto Bravin,et al. Comparison of synchrotron radiation angiography with conventional angiography for the diagnosis of in-stent restenosis after percutaneous transluminal coronary angioplasty. , 2005, European heart journal.
[4] Max A. Viergever,et al. Retrospective motion correction in digital subtraction angiography: a review , 1999, IEEE Transactions on Medical Imaging.
[5] P O Byrne,et al. A laser Doppler scanner for imaging blood flow in skin. , 1991, Journal of biomedical engineering.
[6] D. Dowsett,et al. Physics of diagnostic imaging , 1998 .
[7] A. Fourasa,et al. Measurement of instantaneous velocity and surface topography in the wake of a cylinder at low Reynolds number , 2008 .
[8] R. Pauwels,et al. Burden and clinical features of chronic obstructive pulmonary disease (COPD) , 2004, The Lancet.
[9] Fumio Sakai,et al. In-line phase-contrast imaging of a biological specimen using a compact laser-Compton scattering-based x-ray source , 2008 .
[10] Jean Hertzberg,et al. Development and validation of echo PIV , 2004 .
[11] G Tromba,et al. Analyser-based phase contrast image reconstruction using geometrical optics. , 2007, Physics in medicine and biology.
[12] Clive A. Greated,et al. Stereoscopic particle image velocimetry , 1991 .
[13] Andrew Pogany,et al. Optical phase retrieval by use of first Born- and Rytov-type approximations. , 2004, Applied optics.
[14] D. Gabor. A New Microscopic Principle , 1948, Nature.
[15] S. V. Bulanov,et al. Phase-contrast x-ray imaging with intense ArKα radiation from femtosecond-laser-driven gas target , 2007 .
[16] Andreas Fouras,et al. An improved, free surface, topographic technique , 2006, J. Vis..
[17] P. C. Johns,et al. X-ray characterisation of normal and neoplastic breast tissues. , 1987, Physics in medicine and biology.
[18] Phase retrieval for improved three-dimensional velocimetry of dynamic x-ray blood speckle , 2008 .
[19] H Wayland,et al. Erythrocyte velocity measurement in microvessels by a two-slit photometric method. , 1967, Journal of applied physiology.
[20] Klaus Affeld,et al. X-ray-based assessment of the three-dimensional velocity of the liquid phase in a bubble column , 2001 .
[21] E. Pisano,et al. Human breast cancer specimens: diffraction-enhanced imaging with histologic correlation--improved conspicuity of lesion detail compared with digital radiography. , 2000, Radiology.
[22] Kentaro Uesugi,et al. X-ray refraction-enhanced imaging and a method for phase retrieval for a simple object. , 2002, Journal of synchrotron radiation.
[23] M Gambaccini,et al. Mammography with synchrotron radiation. , 1995, Radiology.
[24] B. Jacobson,et al. Dichromatic absorption radiography; dichromography. , 1953, Acta radiologica.
[25] K. Tsukada,et al. Image correlation method for measuring blood flow velocity in microcirculation: correlation 'window' simulation and in vivo image analysis. , 2000, Physiological measurement.
[26] Andreas Fouras,et al. Target-free Stereo PIV: a novel technique with inherent error estimation and improved accuracy , 2008 .
[27] Atsushi Momose,et al. Phase-contrast X-ray imaging based on interferometry. , 2002, Journal of synchrotron radiation.
[28] R Lewis,et al. Medical applications of synchrotron radiation x-rays. , 1997, Physics in medicine and biology.
[29] Etta D. Pisano,et al. Preliminary experience with monoenergetic photon mammography , 1995, Medical Imaging.
[30] A. Fouras,et al. Measurement of instantaneous velocity and surface topography in the wake of a cylinder at low Reynolds number , 2008 .
[31] Hui Meng,et al. An advanced off-axis holographic particle image velocimetry (HPIV) system , 2000 .
[32] Hironari Yamada,et al. Novel X-ray source based on a tabletop synchrotron and its unique features , 2003 .
[33] Kamel Fezzaa,et al. Particle tracking velocimetry using fast x-ray phase-contrast imaging , 2007 .
[34] John Sheridan,et al. ENGINEERING IMAGING: USING PARTICLE IMAGE VELOCIMETRY TO SEE PHYSIOLOGY IN A NEW LIGHT , 2009, Clinical and experimental pharmacology & physiology.
[35] Kamel Fezzaa,et al. Tracheal Respiration in Insects Visualized with Synchrotron X-ray Imaging , 2003, Science.
[36] W.-R. Dix,et al. Double beam bent Laue monochromator for coronary angiography , 1995 .
[37] M. Maxwell,et al. Shear Induces a Unique Series of Morphological Changes in Translocating Platelets: Effects of Morphology on Translocation Dynamics , 2005, Arteriosclerosis, thrombosis, and vascular biology.
[38] A. Snigirev,et al. On the possibilities of x-ray phase contrast microimaging by coherent high-energy synchrotron radiation , 1995 .
[39] C. Isles,et al. Risks of coronary angiography , 2005, The Lancet.
[40] D. Siddons,et al. A single crystal bent Laue monochromator for coronary angiography , 1993 .
[41] A. Fleischer,et al. Ovarian Volume Measurements in Mice With High‐Resolution Ultrasonography , 2007, Journal of ultrasound in medicine : official journal of the American Institute of Ultrasound in Medicine.
[42] Kazuyuki Hyodo,et al. Non-invasive and Time-Resolved Observation of Tumors Implanted in Living Mice by Using Phase-Contrast X-ray Computed Tomography , 2006 .
[43] Lucia Mancini,et al. Medical applications of synchrotron radiation at the SYRMEP beamline of ELETTRA , 2005 .
[44] R. Stephens,et al. Compact X-pinch based point x-ray source for phase contrast imaging of inertial confinement fusion capsules , 2006 .
[45] Philippe Coussot,et al. Some Applications of Magnetic Resonance Imaging in Fluid Mechanics: Complex Flows and Complex Fluids , 2008 .
[46] D. Paganin,et al. On the origin of speckle in x-ray phase contrast images of lung tissue. , 2004, Physics in medicine and biology.
[47] S. Berger,et al. Flows in Stenotic Vessels , 2000 .
[48] G. Tromba,et al. Synchrotron radiation mammography: Clinical experimentation , 2007 .
[49] Paul J. Nederkoorn,et al. Duplex Ultrasound and Magnetic Resonance Angiography Compared With Digital Subtraction Angiography in Carotid Artery Stenosis: A Systematic Review , 2003, Stroke.
[50] Christopher J. Hall,et al. Diffraction-enhanced imaging: improved contrast and lower dose x-ray imaging , 2002, SPIE Medical Imaging.
[51] D R Dance,et al. X-ray refraction effects: application to the imaging of biological tissues. , 2003, The British journal of radiology.
[52] A. Bravin,et al. Exploiting the x-ray refraction contrast with an analyser: the state of the art , 2003 .
[53] K K W Siu,et al. Dynamic measures of regional lung air volume using phase contrast x-ray imaging , 2008, Physics in medicine and biology.
[54] J. Bushberg. The Essential Physics of Medical Imaging , 2001 .
[55] C R Robertson,et al. Use of digital cross-correlation for on-line determination of single-vessel blood flow in the mammalian kidney. , 1985, Microvascular research.
[56] Andreas Fouras,et al. A simple calibration technique for stereoscopic particle image velocimetry , 2007 .
[57] Greg Bednarz,et al. Absolute volumetric coronary blood flow measurement with digital subtraction angiography , 1998, The International Journal of Cardiac Imaging.
[58] S. Wilkins,et al. Phase-contrast imaging of weakly absorbing materials using hard X-rays , 1995, Nature.
[59] Akira Furukawa,et al. The First Trial of Phase Contrast Imaging for Digital Full-Field Mammography Using a Practical Molybdenum X-Ray Tube , 2005, Investigative radiology.
[60] R. Adrian,et al. Out-of-focus effects on particle image visibility and correlation in microscopic particle image velocimetry , 2000 .
[61] E. Förster,et al. Double crystal diffractometry for the characterization of targets for laser fusion experiments , 1980 .
[62] B. Cason,et al. Bronchial imaging in humans using xenon K-edge dichromography , 1998 .
[63] P C Pedersen,et al. Ultrasound properties of lung tissue and their measurements. , 1986, Ultrasound in medicine & biology.
[64] A R Sovijärvi,et al. Quantitative functional lung imaging with synchrotron radiation using inhaled xenon as contrast agent. , 2001, Physics in medicine and biology.
[65] J. Coalson. Pathology of new bronchopulmonary dysplasia. , 2003, Seminars in neonatology : SN.
[66] R. Close,et al. X-ray videodensitometric methods for blood flow and velocity measurement: a critical review of literature. , 2000, Medical physics.
[67] K K W Siu,et al. Dynamic imaging of the lungs using x-ray phase contrast , 2005, Physics in medicine and biology.
[68] Kentaro Uesugi,et al. Imaging lung aeration and lung liquid clearance at birth , 2007, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[69] Guk Bae Kim,et al. X-ray PIV measurements of blood flows without tracer particles , 2006 .
[70] G. Kim,et al. X-ray particle image velocimetry for measuring quantitative flow information inside opaque objects , 2003 .
[71] Franz Pfeiffer,et al. High-resolution differential phase contrast imaging using a magnifying projection geometry with a microfocus x-ray source , 2007 .
[72] Richard J. Fitzgerald,et al. Phase‐Sensitive X‐Ray Imaging , 2000 .
[73] M. Halliwell,et al. A comparative study of velocity measurements in major blood vessels using magnetic resonance imaging and Doppler ultrasound. , 1993, The British journal of radiology.
[74] Y Nakajima,et al. Application of synchrotron X-ray imaging to phase objects in orthopedics. , 2002, Journal of synchrotron radiation.
[75] M. Simoons,et al. Acute myocardial infarction , 2003, The Lancet.
[76] P Suortti,et al. Medical applications of synchrotron radiation. , 2003, Physics in medicine and biology.
[77] Attila Kovacs,et al. Recent advances in imaging the lungs of intact small animals. , 2004, American journal of respiratory cell and molecular biology.
[78] Atsushi Momose,et al. Biological Imaging by X-ray Phase Tomography Using Diffraction-Enhanced Imaging , 2005 .
[79] C. J. Kotre,et al. Phase contrast enhancement of x-ray mammography: a design study. , 1999, Physics in medicine and biology.
[80] Keith A. Nugent,et al. Matter-wave phase measurement: A noninterferometric approach , 2000 .
[81] R. Adrian. Twenty years of particle image velocimetry , 2005 .
[82] S. Wereley,et al. PIV measurements of a microchannel flow , 1999 .
[83] D. Ffytche,et al. An Introduction to the Principles of Medical Imaging , 2000 .
[84] R. Passariello,et al. X-ray mammography with synchrotron radiation , 1992 .
[85] S. Mayer,et al. Transcranial Doppler ultrasonography in cerebral arteriovenous malformations. Diagnostic sensitivity and association of flow velocity with spontaneous hemorrhage and focal neurological deficit. , 1995, Stroke.
[86] Jerry Westerweel,et al. In vivo micro particle image velocimetry measurements of blood-plasma in the embryonic avian heart. , 2006, Journal of biomechanics.
[87] P N Wells,et al. Ultrasonic colour flow imaging. , 1994, Physics in medicine and biology.
[88] C L Dumoulin,et al. Three‐dimensional phase contrast angiography , 1989, Magnetic resonance in medicine.
[89] Y. Sugii,et al. In vivo PIV measurement of red blood cell velocity field in microvessels considering mesentery motion. , 2002, Physiological measurement.
[90] P. Suortti,et al. Effect of tidal volume on distribution of ventilation assessed by synchrotron radiation CT in rabbit. , 2004, Journal of applied physiology.
[91] Andreas Fouras,et al. Three-dimensional synchrotron x-ray particle image velocimetry , 2007 .
[92] H. Suhonen,et al. Differences in the time course of proximal and distal airway response to inhaled histamine studied by synchrotron radiation CT. , 2006, Journal of applied physiology.
[93] Abraham Z Snyder,et al. Registration of [18F]FDG microPET and small-animal MRI. , 2005, Nuclear medicine and biology.
[94] S. Webb. The Physics of Medical Imaging , 1990 .
[95] P. N. T. Wells,et al. Ultrasound imaging , 2006, Physics in Medicine and Biology.
[96] D. Ku. BLOOD FLOW IN ARTERIES , 1997 .
[97] Y. Kohmura,et al. Refraction-enhanced x-ray imaging of mouse lung using synchrotron radiation source. , 1999, Medical physics.
[98] Kentaro Uesugi,et al. High‐resolution visualization of airspace structures in intact mice via synchrotron phase‐contrast X‐ray imaging (PCXI) , 2008, Journal of anatomy.
[99] P. Spanne,et al. Instrumentation of the ESRF medical imaging facility , 1999 .
[100] William Thomlinson,et al. Quantitative measurement of regional lung gas volume by synchrotron radiation computed tomography , 2005, Physics in medicine and biology.
[101] Hans M. Hertz,et al. Phase-contrast x-ray imaging with a liquid-metal-jet-anode microfocus source , 2007 .
[102] C A Mistretta,et al. Relative charaterisitics of MR angiography and competing vascular imaging modalities , 1993, Journal of magnetic resonance imaging : JMRI.
[103] Joseph Katz,et al. Turbulent flow measurement in a square duct with hybrid holographic PIV , 1997 .
[104] S Jureczek,et al. Phase contrast X-ray imaging of mice and rabbit lungs: a comparative study. , 2005, The British journal of radiology.
[105] P. Turski,et al. MR angiography flow analysis. Neurovascular applications. , 1995, Magnetic resonance imaging clinics of North America.
[106] T E Gureyev,et al. Phase-contrast tomography of single-material objects from few projections. , 2008, Optics express.
[107] E Castelli,et al. Mammography with synchrotron radiation: phase-detection techniques. , 2000, Radiology.
[108] Keiji Umetani,et al. Changes in macrovessel pulmonary blood flow distribution following chronic hypoxia: assessed using synchrotron radiation microangiography. , 2008, Journal of applied physiology.
[109] Eiichi Fukushima,et al. Nuclear magnetic resonance as a tool to study flow , 1999 .