Search results for "Homomorphic filtering"

showing 4 items of 4 documents

Illumination Correction on MR Images

2006

Objective. An important artifact corrupting Magnetic Resonance Images is the rf inhomogeneity, also called bias artifact. This anomaly produces an abnormal illumination fluctuation on the image, due to variations of the device magnetic field. This artifact is particularly strong on images acquired with a device specialized on upper and lower limbs due to their coil configuration. A method based on homomorphic filtering aimed to suppress this artifact was proposed by Guillemaud. This filter has two faults: it doesnt provide an indication about the cutoff frequency (cf) and introduces another illumination artifact on the edges of the foreground. This work is an improvement to this method because i…

Artifact (error)Computer sciencebusiness.industryComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISIONHealth InformaticsFilter (signal processing)Critical Care and Intensive Care MedicineMagnetic Resonance ImagingCutoff frequencyMagnetic fieldAnesthesiology and Pain MedicineHomomorphic filteringBiasElectromagnetic coilIntensive careMagnetic Resonance Image MRI bias artifact illumination rf inhomogeneity homomorphic filter.Image Processing Computer-AssistedHumansKneeComputer visionArtificial intelligenceAnomaly (physics)businessAlgorithmsJournal of Clinical Monitoring and Computing
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Frequency Determined Homomorphic Unsharp Masking Algorithm on Knee MR Images

2005

A very important artifact corrupting Magnetic Resonance (MR) Images is the RF inhomogeneity, also called Bias artifact. The visual effect produced by this kind of artifact is an illumination variation which afflicts this kind of medical images. In literature a lot of works oriented to the suppression of this artifact can be found. The approaches based on homomorphic filtering offer an easy way to perform bias correction but none of them can automatically determine the cut-off frequency. In this work we present a measure based on information theory in order to find the frequency mentioned above and this technique is applied to MR images of the knee which are hardly bias corrupted.

Masking (art)Artifact (error)medicine.diagnostic_testbusiness.industryComputer scienceHomomorphic encryptionMagnetic resonance imagingLuminanceHomomorphic filteringmedicinemedical images magnetic resonanceComputer visionArtificial intelligencebusinessUnsharp masking
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Reliable Detection and Smart Deletion of Malassez Counting Chamber Grid in Microscopic White Light Images for Microbiological Applications

2015

AbstractIn biology, hemocytometers such as Malassez slides are widely used and are effective tools for counting cells manually. In a previous work, a robust algorithm was developed for grid extraction in Malassez slide images. This algorithm was evaluated on a set of 135 images and grids were accurately detected in most cases, but there remained failures for the most difficult images. In this work, we present an optimization of this algorithm that allows for 100% grid detection and a 25% improvement in grid positioning accuracy. These improvements make the algorithm fully reliable for grid detection. This optimization also allows complete erasing of the grid without altering the cells, whic…

Microbiological TechniquesMicroscopy[ INFO.INFO-TS ] Computer Science [cs]/Signal and Image ProcessingComputer sciencebusiness.industryMalassezGridSet (abstract data type)OpticsHomomorphic filtering[INFO.INFO-TS]Computer Science [cs]/Signal and Image Processingimage analysisnoise filteringImage Processing Computer-AssistedWhite lightFourier transformSegmentationComputer visionArtificial intelligencehomomorphic filteringbusinessInstrumentation
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Exponential Entropy Driven HUM on Knee MR Images

2007

A very important artifact corrupting Magnetic Resonance Images is the RF inhomogeneity. This kind of artifact generates variations of illumination which trouble both direct examination by the doctor and segmentation algorithms. Even if homomorphic filtering approaches have been presented in literature, none of them has developed a measure to determine the cut-off frequency. In this work we present a measure based on information theory with a large experimental setup aimed to demonstrate the validity of our approach.

Settore ING-INF/05 - Sistemi Di Elaborazione Delle Informazionibusiness.industryEntropy Knee Magnetic resonance rf-inhomogeneityImage segmentationInformation theoryExponential functionHomomorphic filteringHumEntropy (information theory)SegmentationComputer visionArtificial intelligenceMr imagesbusinessMathematics2005 IEEE Engineering in Medicine and Biology 27th Annual Conference
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