Title :
Denoising fluorescence endoscopy - A motion compensated temporal recursive video filter with an optimal minimum mean square error parameterization
Author :
Stehle, Thomas ; Wulff, Jonas ; Behrens, Alexander ; Gross, Sebastian ; Aach, Til
Author_Institution :
Inst. of Imaging & Comput. Vision, RWTH Aachen Univ., Aachen, Germany
fDate :
June 28 2009-July 1 2009
Abstract :
Fluorescence endoscopy is an emerging technique for the detection of bladder cancer. A marker substance is brought into the patient´s bladder which accumulates at cancer tissue. If a suitable narrow band light source is used for illumination, a red fluorescence of the marker substance is observable. Because of the low fluorescence photon count and because of the narrow band light source, only a small amount of light is detected by the camera´s CCD sensor. This, in turn, leads to strong noise in the recorded video sequence. To overcome this problem, we apply a temporal recursive filter to the video sequence. The derivation of a filter function is presented, which leads to an optimal filter in the minimum mean square error sense. The algorithm is implemented as plug-in for the real-time capable clinical demonstrator platform RealTimeFrame and it is capable to process color videos with a resolution of 768times576 pixels at 50 frames per second.
Keywords :
cancer; endoscopes; fluorescence; image denoising; mean square error methods; medical image processing; motion compensation; recursive filters; tumours; bladder cancer; cancer tissue; color videos; denoising; error parameterization; fluorescence endoscopy; fluorescence photon count; motion compensation; optimal minimum mean square error; temporal recursive filter; tumors; video filter; video sequence; Bladder; Cancer; Endoscopes; Filters; Fluorescence; Light sources; Mean square error methods; Narrowband; Noise reduction; Video sequences; Noise filtering; bladder; endoscopy; fluorescence; optimal filter; photo dynamic diagnostics;
Conference_Titel :
Biomedical Imaging: From Nano to Macro, 2009. ISBI '09. IEEE International Symposium on
Conference_Location :
Boston, MA
Print_ISBN :
978-1-4244-3931-7
Electronic_ISBN :
1945-7928
DOI :
10.1109/ISBI.2009.5193047