Download Information Technologies in Biomedicine: Third International by Marcin Grzegorzek, Paula Lubina (auth.), Ewa Piętka, Jacek PDF

By Marcin Grzegorzek, Paula Lubina (auth.), Ewa Piętka, Jacek Kawa (eds.)

This ebook constitutes the refereed court cases of the 4th overseas convention on details applied sciences in Biomedicine, ITIB 2012, held in Goglin, Poland, in June 2012. The 60 revised complete papers have been conscientiously reviewed and chosen from a variety of submissions. The papers are prepared in topical sections on snapshot research; sign processing; biocybernetics; biomaterials; bioinformatics and biotechnology; biomechanics and rehabilitation; assisted dwelling systems.

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Extra resources for Information Technologies in Biomedicine: Third International Conference, ITIB 2012, Gliwice, Poland, June 11-13, 2012. Proceedings

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That condition has been tested by means of the Fisher-Snedecor test. It has been demonstrated that the variance difference is not statistically significant - variances are uniform, homogeneous, which allows to apply the t-Student test. 1 proved to be correct. 22 4 R. Koprowski et al. Discussion The method presented enables fully automatic correction (improvement) of results obtained in layer detection on OCT images of the posterior section of the eye. The method presented is versatile, and enables location correction of any other edge on OCT images.

Szwarc, J. Kawa, and E. Pietka References 1. : Numerical Taxonomy with Fuzzy Sets. Journal of Mathematical Biology 1, 57–71 (1974) 2. : A New Cluster Validity Measure and its Application to Image Compression. Pattern Analysis and Applications 7(2), 205–220 (2004) 3. : A Cluster Separation Measure. IEEE Transactions on Pattern Analysis and Machine Intelligence 1, 224–227 (1979) 4. : A Fuzzy Relative of the ISODATA Process and its Use in Detecting Compact Well Separated Clusters. Journal of Cybernetics 3(3), 32–57 (1973) 5.

Pl/pieciak/ Abstract. In this paper a left ventricle segmentation approach in shortaxis MRI is proposed. It is based on an active contour method and gradient vector flow field forces. Firstly, algorithm delineates endocardium using active contour method approach assisted by gradient vector flow field forces. After that, the epicardium is outlined by proposed divergence rays method and corrected by Fourier descriptors to smoothen an epicardium curve. An algorithm has been tested on eight healthy patients and compared to a manual delineation of endo- and epicardium boundaries.

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