Laser-wakefield accelerators as hard x-ray sources for 3D medical imaging of human bone

نویسندگان

  • J. M. Cole
  • J. C. Wood
  • N. C. Lopes
  • K. Poder
  • R. L. Abel
  • S. Alatabi
  • J. S. J. Bryant
  • A. Jin
  • S. Kneip
  • K. Mecseki
  • D. R. Symes
  • S. P. D. Mangles
  • Z. Najmudin
چکیده

A bright μm-sized source of hard synchrotron x-rays (critical energy Ecrit > 30 keV) based on the betatron oscillations of laser wakefield accelerated electrons has been developed. The potential of this source for medical imaging was demonstrated by performing micro-computed tomography of a human femoral trabecular bone sample, allowing full 3D reconstruction to a resolution below 50 μm. The use of a 1 cm long wakefield accelerator means that the length of the beamline (excluding the laser) is dominated by the x-ray imaging distances rather than the electron acceleration distances. The source possesses high peak brightness, which allows each image to be recorded with a single exposure and reduces the time required for a full tomographic scan. These properties make this an interesting laboratory source for many tomographic imaging applications.

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عنوان ژورنال:

دوره 5  شماره 

صفحات  -

تاریخ انتشار 2015