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Goorden, M.C. (author), Kamphuis, Chris (author), Ramakers, R.M. (author), Beekman, F.J. (author)
Today, versatile emission computed tomography (VECTor) technology using dedicated high-energy collimation enables simultaneous positron emission tomography (PET) and single photon emission computed tomography (SPECT) down to 0.6 mm and 0.4 mm resolution in mice, respectively. We recently showed that for optimal resolution and quantitative...
journal article 2020
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Van der Have, F. (author), Vastenhouw, B. (author), Ramakers, R.M. (author), Branderhorst, W. (author), Krah, J.O. (author), Ji, C. (author), Staelens, S.G. (author), Beekman, F.J. (author)
We present a new rodent SPECT system (U-SPECT-II) that enables molecular imaging of murine organs down to resolutions of less than half a millimeter and high-resolution total-body imaging. Methods: The U-SPECT-II is based on a triangular stationary detector set-up, an XYZ stage that moves the animal during scanning, and interchangeable cylindric...
journal article 2009
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Van der Have, F. (author), Vastenhouw, B. (author), Rentmeester, M. (author), Beekman, F.J. (author)
For multipinhole single-photon emission computed tomography (SPECT), iterative reconstruction algorithms are preferred over analytical methods, because of the often complex multipinhole geometries and the ability of iterative algorithms to compensate for effects like spatially variant sensitivity and resolution. Ideally, such compensation...
journal article 2008