Philippe GROS L'espace dans les modèles de dynamique des populations
42
[99]
Segel, L.A., & J.L. Jackson, 1972. Dissipative structure: an explanation and an ecological
example, J. Theor. Biol. 37(3): 545-559.
[100] Shaw, M.W., 1995. Simulation of population expansion and spatial pattern when individual dispersal
distributions do not decline exponentially with distance, Proc. R. Soc. Lond. B259 : 243-248.
[101] Siegel, D.A., 1998. Resource competition in a discrete environment: why are plankton distributions
paradoxical?, Limnol. Oceanogr. 43(6): 1133-1146.
[102] Solé, R.V., & J. Valls, 1992. On structural stability and chaos in biological systems, J. theor.
Biol. 155 : 87-102.
[103] Solé, R.V., J. Valls & J. Bascompte, 1992. Spiral waves, chaos and multiple attractors in lattice
models of interacting populations, Phys. Lett. A 166 : 123-128.
[104] Solé R.V., & J. Bascompte, 1998. Emergent phenomena in spatially extended model ecosystems,
pp. 1-25 in : Modeling spatiotemporal dynamics in ecology, Springer-Verlag, 230 p.
[105] Strickler J.R., 1984. Sticky water: a selective force in copepod evolution, pp. 187-242 in : Trophic
interactions within aquatic ecosystems, D.G. Meyers & J.R. Strickler eds., AAAS, Washington D.C.
[106] Sugihara, G., 1994. Nonlinear forecasting for the classification of natural time series, Phil.
Trans. R. Soc. Lond. A348(1688): 477-495.
[107] Sugihara, G., 1995. From out of the blue, Nature, Lond. 378(6557): 559-560.
[108] Thomas, W.R., M.J. Pomerantz, & M.E. Gilpin, 1980. Chaos, asymmetric growth and group selection
for dynamical stability, Ecology 6(6): 1312-1320.
[109] Tidd, C.W., L.F. Olsen & W.M. Schaffer, 1993. The case for chaos in childhood epidemics. II.
Predicting historical epidemics from mathematical models, Proc. R. Soc. Lond. B254(1341): 257-273.
[110] Tilman, D., 2000. Causes, consequences and ethics of biodiversity, Nature, Lond. 405(6782): 208-211.
[111] Tilman, D. & D. Wedin, 1991. Oscillations and chaos in the dynamics of a perennial grass,
Nature, Lond. 353(6345): 653-655.
[112] Tilman, D. & P. Kareiva, 1997. Spatial Ecology. The role of space in population dynamics and
interspecific interactions, Princeton University Press, New Jersey, 368 p.
[113] Tilman, D., J. Knops, D. Wedin, P. Reich, M. Ritchie, & E. Siemann, 1997. The influence of functional
diversity and composition on ecosystem processes, Science, Wash. 277 (5330): 1300-1302.
[114] Tremblay, M.J., J.W. Loder, F.E. Werner, C.E. Naimie, F.H. Page & M.M. Sinclair, 1994. Drift of
sea scallop larvae Placopecten magellanicus on Georges Bank: a model study of the roles of mean
advection, larval behavior and larval origin, Deep-Sea Res. II 41(1) : 7-49.
[115] van den Bosch, F., R. Hengeveld & J.A.J. Metz, 1992. Analysing the velocity of animal range
expansion, J. Biogeogr. 19 : 135-150.
[116] Veit, R.R., & M.A. Lewis, 1996. Dispersal, population growth, and the Allee effect: dynamics of the
house finch invasion of eastern North Americ, Am. Nat. 148(2): 255-274.
[117] Wardle, D.A., O. Zackrisson, G. Hörnberg, & C. Gallet , 1997. The influence of island area on
ecosystem properties, Science, Wash. 277 (5330): 1296-1299.
[118] White, K.A.J., J.D. Murray & M.A. Lewis, 1996. Wolf-deer interactions: a mathematical model,
Proc. R. Soc. Lond. B 263(1368): 299-305.
[119] White, K.A.J., M.A. Lewis & J.D. Murray, 1998. On wolf territoriality and deer suvival, pp. 105-126 in :
Bascompte, J., & R.V. Solé, Modeling Spatiotemporal Dynamics in Ecology, Springer-Verlag, 230 p.
[120] Xin, J., 2000. Front propagation in heterogeneous media, SIAM Review 42(2): 167-230.
[121] Young, E.F., G.R. Bigg, A. Grant, P. Walker, J. Brown, 1998. A modelling study of environmental
influences of bivalve settlement in the Wash, England, Mar. Ecol. Prog. Ser. 172 : 197-214.
42
[99]
Segel, L.A., & J.L. Jackson, 1972. Dissipative structure: an explanation and an ecological
example, J. Theor. Biol. 37(3): 545-559.
[100] Shaw, M.W., 1995. Simulation of population expansion and spatial pattern when individual dispersal
distributions do not decline exponentially with distance, Proc. R. Soc. Lond. B259 : 243-248.
[101] Siegel, D.A., 1998. Resource competition in a discrete environment: why are plankton distributions
paradoxical?, Limnol. Oceanogr. 43(6): 1133-1146.
[102] Solé, R.V., & J. Valls, 1992. On structural stability and chaos in biological systems, J. theor.
Biol. 155 : 87-102.
[103] Solé, R.V., J. Valls & J. Bascompte, 1992. Spiral waves, chaos and multiple attractors in lattice
models of interacting populations, Phys. Lett. A 166 : 123-128.
[104] Solé R.V., & J. Bascompte, 1998. Emergent phenomena in spatially extended model ecosystems,
pp. 1-25 in : Modeling spatiotemporal dynamics in ecology, Springer-Verlag, 230 p.
[105] Strickler J.R., 1984. Sticky water: a selective force in copepod evolution, pp. 187-242 in : Trophic
interactions within aquatic ecosystems, D.G. Meyers & J.R. Strickler eds., AAAS, Washington D.C.
[106] Sugihara, G., 1994. Nonlinear forecasting for the classification of natural time series, Phil.
Trans. R. Soc. Lond. A348(1688): 477-495.
[107] Sugihara, G., 1995. From out of the blue, Nature, Lond. 378(6557): 559-560.
[108] Thomas, W.R., M.J. Pomerantz, & M.E. Gilpin, 1980. Chaos, asymmetric growth and group selection
for dynamical stability, Ecology 6(6): 1312-1320.
[109] Tidd, C.W., L.F. Olsen & W.M. Schaffer, 1993. The case for chaos in childhood epidemics. II.
Predicting historical epidemics from mathematical models, Proc. R. Soc. Lond. B254(1341): 257-273.
[110] Tilman, D., 2000. Causes, consequences and ethics of biodiversity, Nature, Lond. 405(6782): 208-211.
[111] Tilman, D. & D. Wedin, 1991. Oscillations and chaos in the dynamics of a perennial grass,
Nature, Lond. 353(6345): 653-655.
[112] Tilman, D. & P. Kareiva, 1997. Spatial Ecology. The role of space in population dynamics and
interspecific interactions, Princeton University Press, New Jersey, 368 p.
[113] Tilman, D., J. Knops, D. Wedin, P. Reich, M. Ritchie, & E. Siemann, 1997. The influence of functional
diversity and composition on ecosystem processes, Science, Wash. 277 (5330): 1300-1302.
[114] Tremblay, M.J., J.W. Loder, F.E. Werner, C.E. Naimie, F.H. Page & M.M. Sinclair, 1994. Drift of
sea scallop larvae Placopecten magellanicus on Georges Bank: a model study of the roles of mean
advection, larval behavior and larval origin, Deep-Sea Res. II 41(1) : 7-49.
[115] van den Bosch, F., R. Hengeveld & J.A.J. Metz, 1992. Analysing the velocity of animal range
expansion, J. Biogeogr. 19 : 135-150.
[116] Veit, R.R., & M.A. Lewis, 1996. Dispersal, population growth, and the Allee effect: dynamics of the
house finch invasion of eastern North Americ, Am. Nat. 148(2): 255-274.
[117] Wardle, D.A., O. Zackrisson, G. Hörnberg, & C. Gallet , 1997. The influence of island area on
ecosystem properties, Science, Wash. 277 (5330): 1296-1299.
[118] White, K.A.J., J.D. Murray & M.A. Lewis, 1996. Wolf-deer interactions: a mathematical model,
Proc. R. Soc. Lond. B 263(1368): 299-305.
[119] White, K.A.J., M.A. Lewis & J.D. Murray, 1998. On wolf territoriality and deer suvival, pp. 105-126 in :
Bascompte, J., & R.V. Solé, Modeling Spatiotemporal Dynamics in Ecology, Springer-Verlag, 230 p.
[120] Xin, J., 2000. Front propagation in heterogeneous media, SIAM Review 42(2): 167-230.
[121] Young, E.F., G.R. Bigg, A. Grant, P. Walker, J. Brown, 1998. A modelling study of environmental
influences of bivalve settlement in the Wash, England, Mar. Ecol. Prog. Ser. 172 : 197-214.
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