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Evaluation of various attenuation corrections in lung SPECT in healthy subjects

Gustafsson, Agnetha (författare)
Linköpings universitet,Medicinsk radiofysik,Hälsouniversitetet
Jacobsson, Lars, 1947 (författare)
Gothenburg University,Göteborgs universitet,Institutionen för särskilda specialiteter, Avdelningen för radiofysik,Institute of Selected Clinical Sciences, Department of Radiation Physics,Department of Radiation Physics, University of Göteborg, Sahlgrenska University Hospital, Göteborg, Sweden
Johansson, A. (författare)
Department of Clinical Physiology, University of Göteborg, Sahlgrenska University Hospital, Göteborg, Sweden
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Moonen, Michaela (författare)
Gothenburg University,Göteborgs universitet,Institutionen för invärtesmedicin,Institute of Internal Medicine,Department of Lung Medicine, University of Göteborg, Sahlgrenska University Hospital, Göteborg, Sweden
Tylén, Ulf, 1938 (författare)
Gothenburg University,Göteborgs universitet,Institutionen för särskilda specialiteter, Avdelningen för radiologi,Institute of Selected Clinical Sciences, Department of Radiology,Department of Radiology, University of Göteborg, Sahlgrenska University Hospital, Göteborg, Sweden
Bake, Björn, 1939 (författare)
Gothenburg University,Göteborgs universitet,Institutionen för invärtesmedicin, Avdelningen för lungmedicin och allergologi,Institute of Internal Medicine, Dept of Respiratory Medicine/Allergology,Department of Lung Medicine, University of Göteborg, Sahlgrenska University Hospital, Göteborg, Sweden
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 (creator_code:org_t)
Ovid Technologies (Wolters Kluwer Health), 2003
2003
Engelska.
Ingår i: Nuclear Medicine Communications. - : Ovid Technologies (Wolters Kluwer Health). - 0143-3636 .- 1473-5628. ; 24:10, s. 1087-1095
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
Stäng  
  • The effect of increasingly more sophisticated attenuation correction methods on image homogeneity has been studied in seven healthy subjects. The subjects underwent computed tomography (CT), single photon emission computed tomography (SPECT) and transmission computed tomography (TCT) of the thorax region in the supine position. Density maps were obtained from the CT and TCT studies. Attenuation corrections were performed using five different methods: (1) uniform correction using only the body contour; (2) TCT based corrections using the average lung density; (3) TCT based corrections using the pixel density; (4) CT based corrections using average lung density; and (5) CT based corrections using the pixel density. The isolated attenuation effects were assessed on quotient images generated by the division of images obtained using various attenuation correction methods divided by the non-uniform attenuation correction based on CT pixel density (reference method). The homogeneity was calculated as the coefficient of variation of the quotient images (CVatt), showing the isolated attenuation effects. Values of CVatt were on average 12.8% without attenuation correction, 10.7% with the uniform correction, 8.1% using TCT map using the average lung density value and 4.8% using CT and average lung density corrections. There are considerable inhomogeneities in lung SPECT slices due to the attenuation effect. After attenuation correction the remaining inhomogeneity is considerable and cannot be explained by statistical noise and camera non-uniformity alone. ((C) 2003 Lippincott Williams Wilkins).

Ämnesord

MEDICIN OCH HÄLSOVETENSKAP  -- Klinisk medicin -- Lungmedicin och allergi (hsv//swe)
MEDICAL AND HEALTH SCIENCES  -- Clinical Medicine -- Respiratory Medicine and Allergy (hsv//eng)

Nyckelord

attenuation correction
spect
lung and thorax region
monte-carlo
regional distribution
blood-flow
perfusion
tomography
ct
attenuation correction
MEDICINE

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