Literature DB >> 22476707

[Dynamic contrast-enhanced computed tomography. Tracer kinetics and radiation hygienic principles].

G Brix1, J Griebel, S Delorme.   

Abstract

Technical innovations in multislice computed tomography (CT) allow for larger volume coverage in ever shorter scan times. This progress has stimulated the clinical application of dynamic contrast-enhanced (DCE) CT techniques, which offer the possibility to noninvasively characterize tissue microcirculation in terms of well-defined physiological quantities. This educational review imparts to radiologists the essential physiological terms and definitions as well as the basic tracer kinetic concepts required for the analysis of DCE-CT data. In particular, four different approaches are presented and exemplified by the analysis of representative DCE data: the steepest-gradient method, model-free algebraic deconvolution in combination with the indicator-dilution theory, two-compartment modelling and the so-called adiabatic approximation to the homogeneity model. Even though DCE-CT offers substantial methodological and practical advantages as compared to DCE-MRI (magnetic resonance imaging), there are also two serious and interconnected shortcomings: the low contrast enhancement in relation to the noise level and the high exposure of patients to ionizing radiation. These limiting aspects are considered in detail from a radiation hygienic point of view, emphasizing the basic principles of justification and optimization. Clinically established as well as potential future applications of DCE-CT will be presented in a subsequent paper.

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Year:  2012        PMID: 22476707     DOI: 10.1007/s00117-011-2277-9

Source DB:  PubMed          Journal:  Radiologe        ISSN: 0033-832X            Impact factor:   0.635


  32 in total

1.  Radiation-induced temporary hair loss as a radiation damage only occurring in patients who had the combination of MDCT and DSA.

Authors:  Yoshimasa Imanishi; Atsushi Fukui; Hiroshi Niimi; Daisuke Itoh; Kyouko Nozaki; Shunsuke Nakaji; Kumiko Ishizuka; Hitoshi Tabata; Yu Furuya; Masahiko Uzura; Hideto Takahama; Suzuo Hashizume; Shiro Arima; Yasuo Nakajima
Journal:  Eur Radiol       Date:  2004-09-04       Impact factor: 5.315

2.  Measurement of regional cerebral blood flow using ultrafast computed tomography. Theoretical aspects.

Authors:  G T Gobbel; C E Cann; J R Fike
Journal:  Stroke       Date:  1991-06       Impact factor: 7.914

3.  Measurement of tissue perfusion by dynamic computed tomography.

Authors:  K A Miles
Journal:  Br J Radiol       Date:  1991-05       Impact factor: 3.039

Review 4.  [Radiation hygiene in medical X-ray imaging: part 2: Assessment of radiation exposure and radiation protection measures].

Authors:  G Brix; R Veit; U Häusler
Journal:  Radiologe       Date:  2010-10       Impact factor: 0.635

5.  Radiation dose reduction in time-resolved CT angiography using highly constrained back projection reconstruction.

Authors:  Mark Supanich; Yinghua Tao; Brian Nett; Kari Pulfer; Jiang Hsieh; Patrick Turski; Charles Mistretta; Howard Rowley; Guang-Hong Chen
Journal:  Phys Med Biol       Date:  2009-06-30       Impact factor: 3.609

Review 6.  Modeling tracer kinetics in dynamic Gd-DTPA MR imaging.

Authors:  P S Tofts
Journal:  J Magn Reson Imaging       Date:  1997 Jan-Feb       Impact factor: 4.813

Review 7.  Innovations in CT dose reduction strategy: application of the adaptive statistical iterative reconstruction algorithm.

Authors:  Alvin C Silva; Holly J Lawder; Amy Hara; Jennifer Kujak; William Pavlicek
Journal:  AJR Am J Roentgenol       Date:  2010-01       Impact factor: 3.959

8.  Graphical evaluation of blood-to-brain transfer constants from multiple-time uptake data.

Authors:  C S Patlak; R G Blasberg; J D Fenstermacher
Journal:  J Cereb Blood Flow Metab       Date:  1983-03       Impact factor: 6.200

9.  Dose exposure of patients undergoing comprehensive stroke imaging by multidetector-row CT: comparison of 320-detector row and 64-detector row CT scanners.

Authors:  S Diekmann; E Siebert; R Juran; M Roll; W Deeg; H-C Bauknecht; F Diekmann; R Klingebiel; G Bohner
Journal:  AJNR Am J Neuroradiol       Date:  2010-01-28       Impact factor: 3.825

10.  X-ray imaging and the skin: radiation biology, patient dosimetry and observed effects.

Authors:  Jacob Geleijns; Jan Wondergem
Journal:  Radiat Prot Dosimetry       Date:  2005       Impact factor: 0.972

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  1 in total

Review 1.  Tracer-kinetic modeling of dynamic contrast-enhanced MRI and CT: a primer.

Authors:  Michael Ingrisch; Steven Sourbron
Journal:  J Pharmacokinet Pharmacodyn       Date:  2013-04-06       Impact factor: 2.745

  1 in total

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