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Articles related to 18591200 [Unique ID], provided by the PubMed system
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Brandberg J, Lonn L, Bergelin E, et al. 
Accurate tissue area measurements with considerably reduced radiation dose achieved by patient-specific CT scan parameters. [JOURNAL ARTICLE]
Br J Radiol 2008 Jun 30.
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Wildberger JE, Mahnken AH, Schmitz-Rode T, et al. 
Individually adapted examination protocols for reduction of radiation exposure in chest CT. [Journal Article]
Invest Radiol 2001 Oct; 36(10):604-11.
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Kalra MK, Prasad S, Saini S, et al. 
Clinical comparison of standard-dose and 50% reduced-dose abdominal CT: effect on image quality. [Journal Article]
AJR Am J Roentgenol 2002 Nov; 179(5):1101-6.
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Rogalla P, Meiri N, Hoksch B, et al. 
Low-dose spiral computed tomography for measuring abdominal fat volume and distribution in a clinical setting. [Journal Article]
Eur J Clin Nutr 1998 Aug; 52(8):597-602.
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Garcia-Ramirez JL, Mutic S, Dempsey JF, et al. 
Performance evaluation of an 85-cm-bore X-ray computed tomography scanner designed for radiation oncology and comparison with current diagnostic CT scanners. [Evaluation Studies, Journal Article]
Int J Radiat Oncol Biol Phys 2002 Mar 15; 52(4):1123-31.
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Verellen D, Vinh-Hung V, Bijdekerke P, et al. 
Characteristics and clinical application of a treatment simulator with Ct-option. [Journal Article]
Radiother Oncol 1999 Mar; 50(3):355-66.
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Starck G, Lönn L, Cederblad A, et al. 
A method to obtain the same levels of CT image noise for patients of various sizes, to minimize radiation dose. [Evaluation Studies, Journal Article]
Br J Radiol 2002 Feb; 75(890):140-50.
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Siegel MJ, Schmidt B, Bradley D, et al. 
Radiation dose and image quality in pediatric CT: effect of technical factors and phantom size and shape. [Journal Article]
Radiology 2004 Nov; 233(2):515-22.
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Starck G, Lönn L, Cederblad A, et al. 
Radiation dose reduction in CT: application to tissue area and volume determination. [Journal Article]
Radiology 1998 Nov; 209(2):397-403.
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