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Träfflista för sökning "WFRF:(Wahlström Claes Göran) ;pers:(Herrlin K)"

Sökning: WFRF:(Wahlström Claes Göran) > Herrlin K

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1.
  • Svanberg, Sune, et al. (författare)
  • Applications of terawatt lasers
  • 1994
  • Ingår i: LASER SPECTROSCOPY - XITH INTERNATIONAL CONFERENCE. - : AIP. - 1551-7616 .- 0094-243X. - 1563962624 ; :290, s. 264-269
  • Konferensbidrag (refereegranskat)
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3.
  • Herrlin, K, et al. (författare)
  • Contrast-enhanced radiography by differential absorption, using a laser-produced X-ray source
  • 1997
  • Ingår i: Investigative Radiology. - 0020-9996. ; 32:5, s. 306-310
  • Tidskriftsartikel (refereegranskat)abstract
    • RATIONALE AND OBJECTIVES. The authors evaluate the feasibility of differential imaging of contrast media, with division of individual pixel values obtained from digital images generated by characteristic radiation from a laser-produced plasma, bridging the K-absorption edge of the contrast agent. METHODS. Laser pulses from an ultrashort-pulse terawatt laser system were focused onto gadolinium and tantalum targets, creating a plasma from which characteristic radiation and Bremsstrahlung was emitted. The elements of the target were selected so the characteristic emission lines of one of the elements were below the K edge of the contrast agent and the emission lines of the other element above. A phantom with gadolinium and other elements in various concentrations was examined. One radiographic exposure was made using a gadolinium target source and a subsequent exposure using a tantalum source. Both images were recorded digitally and the transmission ratios calculated by division of the individual pixel values. RESULTS. When viewed separately, the two images of the test phantom appeared similar. In the differential image, only the gadolinium solutions were bright, reflecting a difference in attenuation between the two exposures. CONCLUSIONS. Element-specific radiographs can be obtained by differential imaging. When fully explored, the technique may allow for contrast-enhanced radiography with increased sensitivity and decreased contrast dose.
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4.
  • Herrlin, K, et al. (författare)
  • Generation of X-rays For Medical Imaging By High-power Lasers - Preliminary-results
  • 1993
  • Ingår i: Radiology. - 1527-1315. ; 189:1, s. 65-68
  • Tidskriftsartikel (refereegranskat)abstract
    • PURPOSE: To evaluate the use of x-ray imaging performed with a high-power laser system in biologic and medical studies. MATERIALS AND METHODS: A compact terawatt laser system based on chirped pulse amplification in titanium-doped sapphire was used. X rays were generated by irradiating a high-atomic-number target (tantalum). RESULTS: When photons with an energy below 10 keV were removed with use of 3 mm of aluminum, the half-value layer in aluminum for the remaining x rays was approximately 10 mm. The x-ray source allowed performance of biologic magnification radiography. Star-pattern tests indicated an equivalent focal spot size of less than 60 mum. Exposures of a single pulse could be obtained. The duration of a single x-ray pulse was estimated to be of the order of picoseconds. CONCLUSION. With use of subpicosecond laser pulses, x-ray generation can occur with a smaller equivalent focal spot size than with conventional x-ray sources.
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5.
  • Svanberg, Sune, et al. (författare)
  • Generation, characterization, and medical utilization of laser-produced emission continua
  • 2000
  • Ingår i: Laser and Particle Beams. - 0263-0346. ; 18:3, s. 563-570
  • Tidskriftsartikel (refereegranskat)abstract
    • Intense continua of electromagnetic radiation of very brief duration are formed in the interaction of focused ultra-short terawatt laser pulses with matter. Two different kinds of experiments, which have been performed utilizing the Lund 10 Hz titanium-doped sapphire terawatt laser system are being described, where visible radiation and X-rays, respectively, have been generated. Focusing into water leads to the generation of a light continuum through self-phase modulation. The propagation of the light through tissue was studied addressing questions related to optical mammography and specific chromophore absorption. When terawatt laser pulses are focused onto a solid target with high nuclear charge Z, intense X-ray radiation of few ps duration and with energies exceeding hundreds of keV is emitted. Biomedical applications of this radiation are described, including differential absorption and gated-viewing imaging.
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6.
  • Tillman, C, et al. (författare)
  • Imaging Using Hard X-rays From A Laser-produced Plasma
  • 1995
  • Ingår i: Applied Physics B. - 0946-2171. ; 61:4, s. 333-338
  • Tidskriftsartikel (refereegranskat)abstract
    • Imaging of technical and biological objects using hard X-rays from a laser-produced plasma source is demonstrated. Magnification radiography and single-shot imaging of biological samples are feasible with the source, which utilised focused radiation from a short-pulse terawatt laser. Differential imaging with element specificity and a new projection geometry for X-ray radiography are proposed.
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