Receptor saturation in roentgen films
Description
Roentgen-film recording of small object details of low attenuation differences (e.g. pulmonary vessels) is regularly seen to be impaired when the film is exposed to yield high values of optical density (D). This high-density failure is due to receptor saturation, which implies that at high exposure values most silver halide grains of the film are made developable, leaving few grains available to receive additional informative photons. The receptor saturation is analysed by means of a mathematical model of a non-screen film yielding Dsub(max) = 2.0. Optimum recording, defined by maximum signal-to-noise ratio in the image, is found at D approximately 0.64, corresponding to, on an average, 1.6 photons absorbed per grain. On the other hand, maximum contrast occurs at D approximately 1.4, where, on the average, 3.6 photons are absorbed per grain. The detective quantum efficiency of the film, i.e. the fraction of the photons actually contributing to the information content of the image, drops from 41 per cent at maximum signal-to-noise ratio to a mere 10 per cent at maximum contrast. Receptor saturation does not manifest itself as 'mottle' in the image - it is therefore easily overlooked. The importance of adequate removal of secondary radiation is emphasised by these results. (Auth.)
Additional details
Publishing Information
- Journal Title
- Acta Radiol., Diagn.
- Journal Volume
- 21
- Journal Issue
- 6
- Series
- Acta Radiol., Diagn.
- Journal Page Range
- 789-796
- ISSN
- 0567-8056
INIS
- Country of Publication
- Sweden
- Country of Input or Organization
- Sweden
- INIS RN
- 12627763
- Subject category
- S46: INSTRUMENTATION RELATED TO NUCLEAR SCIENCE AND TECHNOLOGY; S62: RADIOLOGY AND NUCLEAR MEDICINE;
- Descriptors DEI
- BIOMEDICAL RADIOGRAPHY; IMAGES; NOISE; PERFORMANCE; PHOTOGRAPHIC FILM DETECTORS; PHOTOGRAPHIC FILMS; X RADIATION; X-RAY DETECTION
- Descriptors DEC
- DIAGNOSTIC TECHNIQUES; ELECTROMAGNETIC RADIATION; IONIZING RADIATIONS; MEASURING INSTRUMENTS; MEDICINE; RADIATION DETECTION; RADIATION DETECTORS; RADIATIONS