Digital radiography enhancement by nonlinear multiscale processing
- 6 January 2000
- journal article
- Published by Wiley in Medical Physics
- Vol. 27 (1) , 56-65
- https://doi.org/10.1118/1.598857
Abstract
Today's digital radiography systems mostly use unsharp maskinglike enhancement algorithms based on splitting input images into two or three frequency channels. This method allows fine detail enhancement as well as processing of global contrast (harmonization). However, structures of medium size are not accessible. In extension of a standard algorithm of such type, we develop and test a new enhancement algorithm based on hierarchically repeated unsharp masking, resulting in a multiscale architecture allowing consistent access to structures of all sizes. Our algorithm decomposes a radiograph by a pyramid‐architecture, dividing it into eight or more channels representing structures of different sizes, known as “scales.” At each scale, weakly contrasting structures are then enhanced by suitable nonlinear processing. We emphasize two points: first, backward compatibility to the standard algorithm which is used routinely in clinical practice. This allows reuse of current parametrization know‐how as well as a smooth transition from current to new processing. Second, our enhancement is noise‐resistant in the sense that it prevents unacceptable noise amplification. A prototype implementation of the algorithm is undergoing trials in the clinical routine of radiology departments of major German hospitals. Results strongly indicate the superior performance and high acceptance of the new processing.Keywords
This publication has 11 references indexed in Scilit:
- Digital image acquisition and processing in medical x-ray imagingJournal of Electronic Imaging, 1999
- Physical imaging performance of a compact computed radiography acquisition deviceMedical Physics, 1998
- Adaptive image contrast enhancement based on human visual propertiesIEEE Transactions on Medical Imaging, 1994
- Optimal Parameters for Unsharp Mask Filtering of Digital Chest RadiographsPublished by Springer Nature ,1991
- Optimized Image Processing for Routine Digital RadiographyPublished by Springer Nature ,1991
- The computer enhancement of digital grey-scale fluorographic imagesThe British Journal of Radiology, 1988
- Imaging performance of a digital storage phosphor systemMedical Physics, 1987
- Detective quantum efficiency of imaging systems with amplifying and scattering mechanismsJournal of the Optical Society of America A, 1987
- Image processingPublished by Springer Nature ,1987
- The Laplacian Pyramid as a Compact Image CodeIEEE Transactions on Communications, 1983