Image gradation processing method and apparatus for mammogram copying system
First Claim
1. A method of processing a mammogram image which includes images of glandular tissue, subcutaneous tissue, and skin where the densities of the images increase from a minimum density of the glandular tissue through a boundary density between the densities of the subcutaneous tissue and the skin to a maximum density of the skin where the mammogram image is scanned with a light beam and the image densities recorded therein are read out and converted into an electric signal, the level of which varies with the recorded image densities, and then an image is recorded on a recording medium having a fog density by use of the electric signal, said method comprising lowering the level of the electric signal corresponding to the minimum density of the glandular tissue of the mammogram down to a level between the level corresponding to the fog density and a level higher than the level corresponding to fog density by 0.3 in terms of the density of the recording medium, and lowering the density of the mammogram image as a whole with the lowering degree decreasing from the smaller densities thereof to the higher densities, whereby the contrast of the mammogram image is raised in the image recorded on the recording medium.
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Abstract
A method of and apparatus for processing a mammogram in a mammogram copying system in which an original mammogram is scanned with a scanning light beam and the light transmitted through the mammogram is detected by a photodetector which gives an output to be processed and used for recording a visible image on a recording medium. The image gradation of the mammogram is processed. The gradation processing is characterized in that the minimum density of the glandular tissue of the mammogram is lowered down to the level of the fog density to raise the contrast of the mammogram.
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8 Claims
- 1. A method of processing a mammogram image which includes images of glandular tissue, subcutaneous tissue, and skin where the densities of the images increase from a minimum density of the glandular tissue through a boundary density between the densities of the subcutaneous tissue and the skin to a maximum density of the skin where the mammogram image is scanned with a light beam and the image densities recorded therein are read out and converted into an electric signal, the level of which varies with the recorded image densities, and then an image is recorded on a recording medium having a fog density by use of the electric signal, said method comprising lowering the level of the electric signal corresponding to the minimum density of the glandular tissue of the mammogram down to a level between the level corresponding to the fog density and a level higher than the level corresponding to fog density by 0.3 in terms of the density of the recording medium, and lowering the density of the mammogram image as a whole with the lowering degree decreasing from the smaller densities thereof to the higher densities, whereby the contrast of the mammogram image is raised in the image recorded on the recording medium.
- 5. An apparatus for processing a mammogram image which includes images of glandular tissue, subcutaneous tissue, and skin where the densities of the images increase from a minimum density of the glandular tissue through a boundary density between the densities of the subcutaneous tissue and the skin to a maximum density of the skin where the mammogram image is scanned with a light beam and the image densities recorded therein are read out and converted into an electric signal, the level of which varies with the recorded image densities, and then an image is recorded on a recording medium having a fog density by use of the electric signal, said apparatus comprising means for detecting a level of said electric signal corresponding to the boundary density between the densities of the subcutaneous tissue and the skin and the substantial maximum and minimum values of said electric signal, and means for converting the level of said electric signal so that at least the level of said minimum value of the electric signal is lowered from the detected level.
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