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Institution

University of Crete

EducationRethymno, Greece
About: University of Crete is a education organization based out in Rethymno, Greece. It is known for research contribution in the topics: Population & Galaxy. The organization has 8681 authors who have published 21684 publications receiving 709078 citations. The organization is also known as: Panepistimio Kritis.


Papers
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Journal ArticleDOI
TL;DR: This comprehensive review of the current evidence defining the position of polyphenols in the prevention/treatment of human chronic diseases, including prostate cancer and other types of cancer, cardiovascular diseases, diabetes mellitus and neurodegenerative diseases such as Alzheimer's and Parkinson's disease focuses on their ability to modulate multiple signalling transduction pathways involved in the pathophysiology of these diseases.

184 citations

Journal ArticleDOI
TL;DR: A novel pathway emanating from the TGF-β type I receptor and leading to regulation of actin assembly is defined, via the kinase LIMK2, which is known to regulate the activity of LIM-kinases (LIMK), and is tested in Swiss3T3 fibroblasts.

184 citations

Journal ArticleDOI
TL;DR: There is a lack of sufficient long-term data to allow such a statement to be definitively made, and caution regarding infections should continue to be exercised, especially in patients who have received repeated courses of rituximab, are receiving other immunosuppressants concurrently, and in those whose immunoglobulin levels have fallen below the normal range.

183 citations

Journal ArticleDOI
TL;DR: In this article, the authors proposed a simple method which is able to precisely reproduce light curves which match both the power spectral density (PSD) and the probability density function (PDF) of either an observed light curve or a theoretical model.
Abstract: The production of artificial light curves with known statistical and variability properties is of great importance in astrophysics. Consolidating the confidence levels during cross-correlation studies, understanding the artefacts induced by sampling irregularities, establishing detection limits for future observatories are just some of the applications of simulated data sets. Currently, the widely used methodology of amplitude and phase randomization is able to produce artificial light curves which have a given underlying power spectral density (PSD) but which are strictly Gaussian distributed. This restriction is a significant limitation, since the majority of the light curves, e.g. active galactic nuclei, X-ray binaries, gamma-ray bursts, show strong deviations from Gaussianity exhibiting ‘burst-like’ events in their light curves yielding long-tailed probability density functions (PDFs). In this study, we propose a simple method which is able to precisely reproduce light curves which match both the PSD and the PDF of either an observed light curve or a theoretical model. The PDF can be representative of either the parent distribution or the actual distribution of the observed data, depending on the study to be conducted for a given source. The final artificial light curves contain all of the statistical and variability properties of the observed source or theoretical model, i.e. the same PDF and PSD, respectively. Within the framework of Reproducible Research, the code and the illustrative example used in this paper are both made publicly available in the form of an interactive mathematica notebook.

183 citations

Posted Content
TL;DR: In this article, a unified approach to improved $L^p$ Hardy inequalities was presented, where Hardy potentials that involve either the distance from a point, or the distance to the boundary, or even the intermediate case where distance is taken from a surface of codimension $1
Abstract: We present a unified approach to improved $L^p$ Hardy inequalities in $\R^N$. We consider Hardy potentials that involve either the distance from a point, or the distance from the boundary, or even the intermediate case where distance is taken from a surface of codimension $1

182 citations


Authors

Showing all 8725 results

NameH-indexPapersCitations
Mercouri G. Kanatzidis1521854113022
T. J. Pearson150895126533
Stylianos E. Antonarakis13874693605
William Wijns12775295517
Andrea Comastri11170649119
Costas M. Soukoulis10864450208
Elias Anaissie10737242808
Jian Zhang107306469715
Emmanouil T. Dermitzakis10129482496
Andreas Engel9944833494
Nikos C. Kyrpides9671162360
David J. Kerr9554439408
Manolis Kogevinas9562328521
Thomas Walz9225529981
Jean-Paul Latgé9134329152
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202328
2022103
20211,381
20201,288
20191,180
20181,131