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Taschenbuch. Zustand: Neu. MULLER MATRIX IMAGES OF BIOLOGICAL CRYSTAL NETWORKS | CORRELATION AND TOPOLOGICAL DIAGNOSTICS USING MATLAB PARALLEL SERVER FOR AZURE/AWS CLOUD ENVIRONMENT | Yurii Tomka (u. a.) | Taschenbuch | Englisch | 2024 | LAP LAMBERT Academic Publishing | EAN 9786207463541 | Verantwortliche Person für die EU: SIA OmniScriptum Publishing, Brivibas Gatve 197, 1039 RIGA, LETTLAND, customerservice[at]vdm-vsg[dot]de | Anbieter: preigu.
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Taschenbuch. Zustand: Neu. This item is printed on demand - Print on Demand Titel. Neuware -This research explores the optical characterization of biological tissues, distinguishing them as highly scattering (opaque) or weakly scattering (transparent). The focus is on Mueller matrix imaging (MMI), offering detailed polarization information. The goal is to extend traditional photometric methods by incorporating MMI coordinate distributions, providing exhaustive insight into the optical anisotropic component of biological tissues. Correlation and topological analyses aid in statistical and fractal diagnostics of biological crystal networks.Tasks included exploring the relationship between laser-induced phase shifts by birefringent crystals and statistical moments of MMI, differentiation of optical-anisotropic properties through correlation analysis, and identifying topological structures generating polarization singularities in scattered laser radiation.It is established relationships between phase shifts and statistical moments, introducing the degree of mutual correlation of MMI, and unveiling scenarios for topological structures' formation. Wavelet analysis of singular distributions further enables diagnosing local changes in optical and geometric structures.VDM Verlag, Dudweiler Landstraße 99, 66123 Saarbrücken 200 pp. Englisch.
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Taschenbuch. Zustand: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - This research explores the optical characterization of biological tissues, distinguishing them as highly scattering (opaque) or weakly scattering (transparent). The focus is on Mueller matrix imaging (MMI), offering detailed polarization information. The goal is to extend traditional photometric methods by incorporating MMI coordinate distributions, providing exhaustive insight into the optical anisotropic component of biological tissues. Correlation and topological analyses aid in statistical and fractal diagnostics of biological crystal networks.Tasks included exploring the relationship between laser-induced phase shifts by birefringent crystals and statistical moments of MMI, differentiation of optical-anisotropic properties through correlation analysis, and identifying topological structures generating polarization singularities in scattered laser radiation.It is established relationships between phase shifts and statistical moments, introducing the degree of mutual correlation of MMI, and unveiling scenarios for topological structures' formation. Wavelet analysis of singular distributions further enables diagnosing local changes in optical and geometric structures.