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Issue title: Selected Presentations held at the 33th Annual Conference of the German Society for Clinical Microcirculation and Hemorheology, Villingen-Schwenningen, Germany, 14-15 November, 2014
Article type: Research Article
Authors: Büttner, Petra | Galli, Roberta | Jannasch, Anett | Schnabel, Christian | Waldow, Thomas | Koch, Edmund
Affiliations: Faculty of Medicine, TU Dresden, Herzzentrum Dresden, Klinik für Herzchirurgie, Dresden, Germany | Clinical Sensoring and Monitoring, Faculty of Medicine, TU Dresden, Dresden, Germany
Note: [] These authors contributed equally to this work.
Note: [] Corresponding author: Roberta Galli, Clinical Sensoring and Monitoring, Faculty of Medicine, TU Dresden, Fetscherstrasse 74, 01307 Dresden, Germany. Tel.: +49 351 4583114, Fax: +49 351 4586325, E-mail: [email protected] These authors contributed equally to this work.
Abstract: Degenerative heart valve disease is a life-threatening disease affecting about 3% of the population over 65 years. Up to date, cardiac surgery with heart valve replacement is the only available therapy. The disease is characterized by degenerative disorganization of the heart valve structure and alterations in the residing cell populations. Causes and mechanisms of disease genesis are still not fully understood and until now pharmacological therapies are not available. Thus there is enormous interest in new technologies that enable a better characterization of structure and composition of diseased valves. Currently most research techniques demand for extensive processing of extracted valve material. We present a novel approach combining coherent anti-Stokes Raman scattering, endogenous two-photon excited fluorescence and second harmonic generation. Cusp constituents can be examined simultaneously, three-dimensionally and without extensive manipulation of the sample enabling impressive insights into a complex disease.
Keywords: Heart valve disease, aortic valve stenosis, aortic valve insufficiency, fibrosis, coherent anti-Stokes Raman scattering, endogenous two-photon excited fluorescence, second harmonic generation, nonlinear optical microscopy
DOI: 10.3233/CH-141882
Journal: Clinical Hemorheology and Microcirculation, vol. 58, no. 1, pp. 65-75, 2014
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