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| 1 | Estimation of Distributed Hybrid Systems Using Particle Filtering Methods显示文摘 | Xenofon KOUTSOUKOS James KURIEN Feng ZHAO | 2003 | Hybrid Systems:Computation and Control (HSCC 2003)2003,,: | 1 |
| 2 | Exercise-mediated adaptations in vascular function and structure:Beneficial effects in coronary artery disease显示文摘Exercise exerts direct effects on the vasculature via the impact of hemodynamic forces on the endothelium,thereby leading to functional and structural adaptations that lower cardiovascular risk.The patterns of blood flow and endothelial shear stress during exercise lead to atheroprotective hemodynamic stimuli on the endothelium and contribute to adaptations in vascular function and structure.The structural adaptations observed in arterial lumen dimensions after prolonged exercise supplant the need for acute functional vasodilatation in case of an increase in endothelial shear stress due to repeated exercise bouts.In contrast,wall thickness is affected by rather systemic factors,such as transmural pressure modulated during exercise by generalized changes in blood pressure.Several mechanisms have been proposed to explain the exercise-induced benefits in patients with coronary artery disease(CAD).They include decreased progression of coronary plaques in CAD,recruitment of collaterals,enhanced blood rheological properties,improvement of vascular smooth muscle cell and endothelial function,and coronary blood flow.This review describes how exercise via alterations in hemodynamic factors influences vascular function and structure which contributes to cardiovascular risk reduction,and highlights which mechanisms are involved in the positive effects of exercise on CAD. | Xenofon M Sakellariou Michail I Papafaklis Eleni M Domouzoglou Christos S Katsouras Lampros K Michalis Katerina K Naka | 2021 | World Journal of Cardiology2021,13,9: | 1 |
| 3 | Hip involvement in ankylosingspondylitis显示文摘 | Xenofon Baraliakos Juergen Braun | 2010 | Rheumatology2010,49,1: | 1 |
| 4 | Modular Filter Convergence Theorems for Urysohn Integral Operators and Applications显示文摘We prove some versions of modular convergence theorems for nonlinear Urysohn-type integral operators with respect to filter convergence. We consider pointwise filter convergence of functions giving also some applications to linear and nonlinear Mellin operators. We show that our results are strict extensions of the classical ones. | Antonio BOCCUTO Xenofon DIMITRIOU | 2013 | Acta Mathematica Sinica,English Series2013,29,6: | 1 |
| 5 | Timed Petri Nets in Hybrid Systems: Stability and Supervisory Control显示文摘 | Xenofon D. Koutsoukos Kevin X. He Michael D. Lemmon Panos J. Antsaklis | 1998 | Discrete Event Dynamic Systems1998,,2: | 1 |
| 6 | Adaptive algorithms for blind channel estimation in OFDM system显示文摘 | DOUKOPOULOS Xenofon G MOUSTAKIDES Gerge V | 2004 | IEEE Communications Society2004,,: | 1 |
| 7 | Monitoring and fault diagnosis of hybrid systems显示文摘 | Zhao Feng Koutsoukos Xenofon Haussecker Horst | 2005 | IEEE Transactions on Systems Man and Cybernetics2005,35,6: | 1 |
| 8 | MRI in the Histologic Characterization of Testicular Neoplasms显示文摘 | Athina C Tsilil Constantine Tsampoulas Xenofon Giannak opoulos | 2007 | AJR2007,189,6: | 1 |
| 9 | Adaptive algorithms for blind channel estimation in OFDM systems 显示文摘 | XENOFON G GEORGE V | 2004 | IEEE Communications Society2004,4,: | 1 |
| 10 | Fast and stable subspace tracking 显示文摘 | Xenofon G D George V M | 2008 | IEEE Trans on Signal Processing2008,56,4: | 1 |
| 11 | Seamless integration of bioelectronic interface in an animal model via in vivo polymerization of conjugated oligomers显示文摘Leveraging the biocatalytic machinery of living organisms for fabricating functional bioelectronic interfaces,in vivo,defines a new class of micro-biohybrids enabling the seamless integration of technology with living biological systems.Previously,we have demonstrated the in vivo polymerization of conjugated oligomers forming conductors within the structures of plants.Here,we expand this concept by reporting that Hydra,an invertebrate animal,polymerizes the conjugated oligomer ETE-S both within cells that expresses peroxidase activity and within the adhesive material that is secreted to promote underwater surface adhesion.The resulting conjugated polymer forms electronically conducting and electrochemically activeμm-sized domains,which are inter-connected resulting in percolative conduction pathways extending beyond 100μm,that are fully integrated within the Hydra tissue and the secreted mucus.Furthermore,the introduction and in vivo polymerization of ETE-S can be used as a biochemical marker to follow the dynamics of Hydra budding(reproduction)and regeneration.This work paves the way for well-defined self-organized electronics in animal tissue to modulate biological functions and in vivo biofabrication of hybrid functional materials and devices. | Giuseppina Tommasini Gwennael Dufil Federica Fardella Xenofon Strakosas Eugenio Fergola Tobias Abrahamsson David Bliman Roger Olsson Magnus Berggren Angela Tino Eleni Stavrinidou Claudia Tortiglione | 2022 | Bioactive Materials2022,7,4: | 0 |