Zobrazeno 1 - 10
of 299
pro vyhledávání: '"O. Arino"'
Autor:
B. Poulter, N. MacBean, A. Hartley, I. Khlystova, O. Arino, R. Betts, S. Bontemps, M. Boettcher, C. Brockmann, P. Defourny, S. Hagemann, M. Herold, G. Kirches, C. Lamarche, D. Lederer, C. Ottlé, M. Peters, P. Peylin
Publikováno v:
Geoscientific Model Development, Vol 8, Iss 7, Pp 2315-2328 (2015)
Global land cover is a key variable in the earth system with feedbacks on climate, biodiversity and natural resources. However, global land cover data sets presently fall short of user needs in providing detailed spatial and thematic information that
Externí odkaz:
https://doaj.org/article/0a5fd773adac470ea500601f52b15231
Autor:
S. Bontemps, M. Boettcher, C. Brockmann, G. Kirches, C. Lamarche, J. Radoux, M. Santoro, E. Vanbogaert, U. Wegmüller, M. Herold, F. Achard, F. Ramoino, O. Arino, P. Defourny
Publikováno v:
The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Vol XL-7/W3, Pp 323-328 (2015)
Essential Climate Variables were listed by the Global Climate Observing System as critical information to further understand the climate system and support climate modelling. The European Space Agency launched its Climate Change Initiative in order t
Externí odkaz:
https://doaj.org/article/16cebbb7eec1401c9c316110960cd9c4
Autor:
S. Bontemps, M. Herold, L. Kooistra, A. van Groenestijn, A. Hartley, O. Arino, I. Moreau, P. Defourny
Publikováno v:
Biogeosciences, Vol 9, Iss 6, Pp 2145-2157 (2012)
Improving systematic observations of land cover, as an Essential Climate Variable, should contribute to a better understanding of the global climate system and thus improve our ability to predict climatic change. The aim of this paper is to bring glo
Externí odkaz:
https://doaj.org/article/bfa7da021e1b497fbbbc19062742ed94
Publikováno v:
International Journal of Heritage in the Digital Era. 4:325-338
An overview is provided of the activities of the European Space Agency, ESA, to support the documentation, monitoring and management of Cultural Heritage through the use of Earth Observation, EO. These activities include: participation in internation
Publikováno v:
Mathematical biosciences 206 (2007): 185–199.
info:cnr-pdr/source/autori:Arino, O.; Bertuzzi, A.; Gandolfi, A.; Sanchez, E.; Sinisgalli, C./titolo:A model with 'growth retardation' for the kinetic heterogeneity of tumour cell populations/doi:/rivista:Mathematical biosciences/anno:2007/pagina_da:185/pagina_a:199/intervallo_pagine:185–199/volume:206
info:cnr-pdr/source/autori:Arino, O.; Bertuzzi, A.; Gandolfi, A.; Sanchez, E.; Sinisgalli, C./titolo:A model with 'growth retardation' for the kinetic heterogeneity of tumour cell populations/doi:/rivista:Mathematical biosciences/anno:2007/pagina_da:185/pagina_a:199/intervallo_pagine:185–199/volume:206
In the present paper we propose a continuous cell population model based on Shackney’s idea of growth retardation. Cells are characterized by two state variables: the cell maturity x , 0 ⩽ x ⩽ 1, and a state variable T that identifies the rate
Publikováno v:
Nonlinear Analysis: Real World Applications. 6:593-607
The mechanisms of grouping and the models revolving around these problems truly impassioned many mathematicians. Our main goal in this paper is the development and analysis of an aggregation model of phytoplankton. The model is the continuum limit of
Publikováno v:
Journal of mathematical analysis and applications
302 (2005): 521–542.
info:cnr-pdr/source/autori:Arino, O.; Bertuzzi, A.; Gandolfi, A.; Sanchez, E.; Sinisgalli, C./titolo:The asynchronous exponential growth property in a model for the kinetic heterogeneity of tumour cell populations/doi:/rivista:Journal of mathematical analysis and applications (Print)/anno:2005/pagina_da:521/pagina_a:542/intervallo_pagine:521–542/volume:302
302 (2005): 521–542.
info:cnr-pdr/source/autori:Arino, O.; Bertuzzi, A.; Gandolfi, A.; Sanchez, E.; Sinisgalli, C./titolo:The asynchronous exponential growth property in a model for the kinetic heterogeneity of tumour cell populations/doi:/rivista:Journal of mathematical analysis and applications (Print)/anno:2005/pagina_da:521/pagina_a:542/intervallo_pagine:521–542/volume:302
A continuous cell population model, which represents both the cell cycle phase structure and the kinetic heterogeneity of the population following Shackney's ideas [J. Theor. Biol. 38 (1973) 305–333], is studied. The asynchronous exponential growth
Infection in prey population may act as a biological control in ratio-dependent predator–prey models
Publikováno v:
Nonlinearity. 17:1101-1116
A ratio-dependent predator-prey model with infection in prey population is proposed and analysed. The behaviour of the system near the biological feasible equilibria is observed. The conditions for which no trajectory can reach the origin following a
Publikováno v:
Dynamical Systems and Their Applications in Biology. :17-31
Publikováno v:
Journal of Differential Equations. 181(1):1-30
We present an approach for the resolution of a class of differential equations with state-dependent delays by the theory of strongly continuous nonlinear semigroups. We show that this class determines a strongly continuous semigroup in a closed subse