R. E. Abercrombie, M. Antolik, K. Felzer, and G. Ekström, The 1994 java tsunami earthquake: Slip over a subducting seamount, Journal of Geophysical Research, vol.106, pp.6595-6607, 2001.

D. Bassett, D. T. Sandwell, Y. Fialko, and A. B. Watts, Upper-plate controls on co-seismic slip in the 2011 magnitude 9.0 Tohoku-oki earthquake, Nature, vol.531, issue.7592, pp.92-96, 2016.

D. Bassett and A. B. Watts, Gravity anomalies, crustal structure, and seismicity at subduction zones: 1. Seafloor roughness and subducting relief. Geochemistry, Geophysics, Geosystems, vol.16, pp.1508-1540, 2015.

D. Bassett and A. B. Watts, Gravity anomalies, crustal structure, and seismicity at subduction zones: 2. Interrelationships between forearc structure and seismogenic behavior. Geochemistry, Geophysics, Geosystems, vol.16, pp.1541-1576, 2015.

J. J. Becker, D. T. Sandwell, W. H. Smith, J. Braud, B. Binder et al., Global bathymetry and elevation data at 30 arc seconds resolution: SRTM30_PLUS. Marine Geodesy, vol.32, pp.355-371, 2009.

S. L. Bilek, Seismicity along the south American subduction zone: Large earthquakes, tsunamis, and subduction zone complexity, 2009.

S. L. Bilek, Invited review paper: Seismicity along the south American subduction zone: Review of large earthquakes, tsunamis, and subduction zone complexity, Tectonophysics, vol.495, issue.1-2, pp.2-14, 2010.

S. L. Bilek, S. Y. Schwarz, and H. R. Deshon, Control of seafloor roughness on earthquake rupture behavior, Geology, issue.5, pp.455-458, 2003.

Q. Bletery, A. M. Thomas, A. W. Rempel, L. Karlstrom, A. Sladen et al., Mega-earthquakes rupture flat megathrusts, Science, vol.354, issue.6315, pp.1027-1031, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01417120

J. N. Brune, Seismic moment, seismicity, and rate of slip along major fault zones, Journal of Geophysical Research, vol.73, pp.777-784, 1968.

S. Carena, Subducting-plate topography and nucleation of great and giant earthquakes along the South American trench, Seismological Research Letters, vol.82, issue.5, pp.629-637, 2011.

M. Chlieh, H. Perfettini, H. Tavera, J. Avouac, D. Remy et al., Interseismic coupling and seismic potential along the Central Andes subduction zone, Journal of Geophysical Research, vol.116, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00658793

M. Cloos, Thrust-type subduction-zone earthquakes and seamount asperities: A physical model for seismic rupture, Geology, vol.20, issue.7, pp.601-604, 1992.

J. Collot, J. Daniel, and R. V. Burne, Recent tectonics associated with the subduction of the D'Entrecasteaux zone in the central new Hebrides, Tectonophysics, vol.112, issue.1-4, pp.325-356, 1985.

J. Collot, K. Lewis, G. Lamarche, and S. Lallemand, The giant Ruatoria debris avalanche on the northern Hikurangi margin, Journal of Geophysical Research, vol.106, pp.271-290, 2001.
URL : https://hal.archives-ouvertes.fr/hal-01261406

J. Collot, E. Sanclemente, J. Nocquet, A. Leprêtre, A. Ribodetti et al., Subducted oceanic relief locks the shallow megathrust in Central Ecuador, Journal of Geophysical Research: Solid Earth, vol.122, pp.3286-3305, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01734549

E. Contreras-reyes, E. R. Flueh, and I. Grevemeyer, Tectonic control on sediment accretion and subduction off south Central Chile: Implications for coseismic rupture processes of the 1960 and 2010 megathrust earthquakes, Tectonics, vol.29, 2010.

F. Corbi, F. Funiciello, S. Brizzi, S. Lallemand, and M. Rosenau, Control of asperities size and spacing on seismic behavior of subduction megathrusts, Geophysical Research Letters, vol.44, pp.8227-8235, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01685546

F. Corbi, F. Funiciello, C. Faccenna, G. Ranalli, and A. Heuret, Seismic variability of subduction thrust faults: Insights from laboratory models, Journal of Geophysical Research, vol.116, 2011.

S. Das and A. B. Watts, Effect of subducting seafloor topography on the rupture characteristics of great subduction zone earthquakes, Subduction Zone Geodynamics, pp.103-118, 2009.

A. Deschamps and S. Lallemand, The west Philippine Basin: A Paleocene-Oligocene backarc basin opened between two opposed subduction zones, Journal of Geophysical Research, vol.107, issue.B12, 2002.

A. E. Deschamps, S. E. Lallemand, and J. Collot, A detailed study of the Gagua Ridge: A fracture zone ridge uplifted during a plate reorganisation in the mid-Eocene, Marine Geophysical Researches, vol.20, issue.5, pp.403-423, 1998.

S. Dominguez, S. Lallemand, J. Malavieille, and P. Schnürle, Oblique subduction of the Gagua ridge beneath the Ryukyu accretionary wedge system: Insights from marine observations and sandbox experiments, Marine Geophysical Researches, vol.20, issue.5, pp.383-402, 1998.

S. Dominguez, S. E. Lallemand, J. Malavieille, and R. Huene, Upper plate deformation associated with seamount subduction, Tectonophysics, vol.293, issue.3-4, pp.86-95, 1998.

S. Dominguez, J. Malavieille, and S. E. Lallemand, Deformation of accretionary wedges in response to seamount subduction: Insights from sandbox experiments, Tectonics, vol.19, pp.182-196, 2000.
URL : https://hal.archives-ouvertes.fr/hal-01261523

E. M. Dunham, D. Belanger, L. Cong, and J. E. Kozdon, Earthquake ruptures with strongly rate-weakening friction and off-fault plasticity, part 2: Nonplanar faults, Bulletin of Seismological Society of America, vol.101, issue.5, pp.2308-2322, 2011.

M. A. Fisher, J. Collot, and E. L. Geist, Structure of the collision zone between Bougainville Guyot and the accretionary wedge of the new Hebrides island arc, Southwest Pacific. Tectonics, vol.10, pp.887-903, 1991.

C. G. Fox and D. E. Hayes, Quantitative methods for analyzing the roughness of the seafloor, Reviews of Geophysics, vol.23, pp.1-48, 1985.

X. Gao and K. Wang, Strength of stick-slip and creeping subduction megathrusts from heat flow observations, Science, vol.345, issue.6200, pp.1038-1041, 2014.

J. Geersen, C. R. Ranero, U. Barckhausen, and C. Reichert, Subducting seamounts control interpolate coupling and seismic rupture in the 2014 Iquique earthquake area, Nature Communications, vol.6, issue.1, 2015.

B. Gutenberg and C. F. Richter, Frequency of earthquakes in California, Bulletin of the Seismological Society of America, vol.34, pp.185-188, 1944.

M. Gutscher, J. Malavieille, S. Lallemand, and J. Collot, Tectonic segmentation of the north Andean margin: Impact of the Carnegie ridge collision, Earth and Planetary Science Letters, vol.168, issue.3-4, pp.60-66, 1999.

M. Gutscher, W. Spakman, H. Bijwaard, and E. R. Engdahl, Geodynamics of flat subduction: Seismicity and tomographic constraints from the Andean margin, Tectonics, vol.9, pp.814-833, 2000.

M. Gutscher and G. K. Westbrook, Great earthquakes in slow-subduction, low-taper margins, Subduction Zone Geodynamics, pp.119-133, 2009.
URL : https://hal.archives-ouvertes.fr/insu-00404898

T. J. Henstock, L. C. Mcneill, J. M. Bull, B. J. Cook, P. S. Gulick et al., Downgoing plate topography stopped rupture in the A.D. 2005 Sumatra earthquake, Geology, vol.44, issue.1, pp.71-74, 2016.

R. Herrendörfer, Y. Van-dinther, T. Gerya, and L. A. Dalguer, Earthquake supercycle in subduction zones controlled by the width of the seismogenic zone, Nature Geoscience, vol.8, issue.6, pp.471-474, 2015.

A. Heuret, C. P. Conrad, F. Funiciello, S. Lallemand, and L. Sandri, Relation between subduction megathrust earthquakes, trench sediment thickness and upper plate strain, Geophysical Research Letters, vol.39, p.5304, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00745636

A. Heuret and S. Lallemand, Plate motions, slab dynamics and back-arc deformation, Physics of the Earth and Planetary Interiors, vol.149, issue.1-2, pp.31-51, 2005.

A. Heuret, S. Lallemand, F. Funiciello, C. Piromallo, and C. Faccenna, Physical characteristics of subduction interface type seismogenic zones revisited, Geochemistry, Geophysics, Geosystems, vol.12, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00617681

J. Huang and D. L. Turcotte, Fractal mapping of digitized images: Application to the topography of Arizona and comparisons with synthetic images, Journal of Geophysical Research, vol.94, pp.7491-7495, 1989.

J. Huang and D. L. Turcotte, Are earthquakes an example of deterministic chaos?, Geophysical Research Letters, vol.17, pp.223-226, 1990.

S. Ide, Striations, duration, migration and tidal response in deep tremor, Nature, vol.466, issue.7304, pp.356-359, 2010.

O. Ishizuka, R. N. Taylor, Y. Ohara, and M. Yuasa, Upwelling, rifting, and age-progressive magmatism from the Oki-Daito mantle plume, Geology, vol.41, issue.9, pp.1011-1014, 2013.

R. D. Jarrard, Relations among subduction parameters, Reviews of Geophysics, vol.24, pp.217-284, 1986.

J. Kelleher and W. Mccann, Buoyant zones, great earthquakes, and unstable boundaries of subduction, Journal of Geophysical Research, vol.81, pp.4885-4896, 1976.

S. Kim and P. Wessel, New global seamount census from altimetry-derived gravity data, Geophysical Journal International, vol.186, issue.2, pp.615-631, 2011.

G. Geochemistry and G. ,

S. Kodaira, N. Takahashi, A. Nakanishi, S. Miura, and Y. Kaneda, Subducted seamount imaged in the rupture zone of the 1946 Nankaido earthquake, Science, vol.289, issue.5476, pp.104-106, 2000.

A. O. Konca, J. Avouac, A. Sladen, A. J. Meltzner, K. Sieh et al., Partial rupture of a locked patch of the Sumatra megathrust during the 2007 earthquake sequence, Nature, vol.456, issue.7222, pp.631-635, 2008.
URL : https://hal.archives-ouvertes.fr/hal-00407873

H. Kopp, Invited review paper: The control of subduction zone structural complexity and geometry on margin segmentation and seismicity, Tectonophysics, vol.589, pp.1-16, 2013.

M. Laigle, A. Becel, B. De-voogd, M. Sachpazi, G. Bayrakci et al., Along-arc segmentation and interactions of subducting ridges with the Lesser Antilles subduction forearc crust revealed by MCS imaging, Tectonophysics, vol.603, pp.32-54, 2013.

S. Lallemand, Philippine Sea plate inception, evolution and consumption with special emphasis on the early stages of Izu-Bonin-Mariana subduction, Progress in Earth and Planetary Science, vol.3, issue.1, pp.1-27, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01689951

S. Lallemand, J. Collot, B. Pelletier, C. Rangin, and J. Cadet, Impact of oceanic asperities on the tectogenesis of modern convergent margins, Oceanologica Acta, vol.10, pp.17-30, 1990.

S. Lallemand, R. Culotta, and R. Huene, Subduction of the Daiichi Kashima seamount in the Japan trench, Tectonophysics, vol.160, issue.1-4, pp.231-247, 1989.

S. E. Lallemand, J. Malavieille, and S. Calassou, Effects of oceanic ridge subduction on accretionary wedges: Experimental modeling and marine observations, Tectonics, vol.11, pp.1301-1313, 1992.
URL : https://hal.archives-ouvertes.fr/hal-01261549

S. E. Lallemand, P. Schnurle, and J. Malavieille, Coulomb theory applied to accretionary and non-accretionary wedges: Possible causes for tectonic erosion and/or frontal accretion, Journal of Geophysical Research, vol.99, pp.33-45, 1994.

T. C. Landgrebe and R. D. Müller, Uncovering the relationship between subducting bathymetric ridges and volcanic chains with significant earthquakes using geophysical data mining, Australian Journal of Earth Sciences, vol.62, issue.2, pp.171-180, 2015.

K. Lewis, S. Lallemand, and L. Carter, Evidence for passage of a subducted seamount inboard of the Ruatoria giant avalanche, New Zealand Journal of Geology and Geophysics, vol.47, issue.3, pp.415-429, 2004.

K. B. Lewis, J. Collot, and S. E. Lallemand, The dammed Hikurangi trough: A channel-fed trench blocked by subducting seamounts and their wake avalanches (New Zealand-France GeodyNZ project), Basin Research, vol.10, issue.4, pp.441-468, 1998.

W. Lin, M. Conin, J. C. Moore, F. M. Chester, Y. Nakamura et al., Stress state in the largest displacement area of the 2011 Tohoku-Oki earthquake, Science, vol.339, pp.687-690, 2013.

B. Marcaillou, J. Collot, A. Ribodetti, E. Acremont, A. Mahamat et al., Seamount subduction at the north-Ecuadorian convergent margin: Effects on structures, inter-seismic coupling and seismogenesis, Earth and Planetary Science Letters, vol.433, pp.146-158, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01256399

R. Mccaffrey, Global frequency of magnitude 9 earthquakes, Geology, vol.36, issue.3, pp.263-266, 2008.

M. Métois, A. Socquet, and C. Vigny, Interseismic coupling, segmentation and mechanical behavior of the Central Chile subduction zone, Journal of Geophysical Research, vol.117, 2012.

K. Mochizuki, T. Yamada, M. Shinohara, Y. Yamanaka, and T. Kanazawa, Weak interplate coupling by seamounts and repeating M-7 earthquakes, vol.321, pp.1195-1197, 2008.

R. E. Moeremans and S. C. Singh, Seismic evidence of continental margin influence on the NinetyEast ridge in the bay of Bengal, Geophysical Research Letters, vol.41, pp.7143-7150, 2014.

E. C. Morgan, B. G. Mcadoo, and L. G. Baise, Quantifying geomorphology associated with large subduction zone earthquakes, Basin Research, vol.20, issue.4, pp.531-542, 2008.

R. D. Müller and T. C. Landgrebe, The link between great earthquakes and the subduction of oceanic fracture zones, Solid Earth, vol.3, issue.2, pp.447-465, 2012.

T. Nishikawa and S. Ide, Earthquake size distribution in subduction zones linked to slab buoyancy, Nature Geoscience, vol.7, issue.12, pp.904-908, 2014.

J. Nocquet, P. Jarrin, M. Vallée, P. A. Mothes, R. Grandin et al., Supercycle at the Ecuadorian subduction zone revealed after the 2016 Pedernales earthquake, Nature Geoscience, vol.10, issue.2, pp.145-149, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01737651

J. O. Park, T. Hori, and Y. Kaneda, Seismotectonic implications of the Kyushu-Palau ridge subducting beneath the westernmost Nankai forearc. Earth, Planets and Space, pp.1013-1018, 2009.

K. L. Pedley, P. M. Barnes, J. R. Pettinga, and K. B. Lewis, Seafloor structural geomorphic evolution of the accretionary frontal wedge in response to seamount subduction, poverty indentation, Marine Geology, vol.270, issue.1-4, pp.119-138, 2010.

B. Pelletier, S. Calmant, and R. Pillet, Current tectonics of the Tonga-new Hebrides region, Earth and Planetary Science Letters, vol.164, issue.1-2, pp.263-276, 1998.

B. Pelletier and J. Dupont, Effets de la subduction de la Ride de Louisville sur l'arc des Tonga-Kermadec, Oceanologica Acta, vol.10, pp.56-76, 1990.

J. T. Perron, J. W. Kirchner, and W. E. Dietrich, Spectral signature of characteristic spatial scales and nonfractal structures in landscapes, Journal of Geophysical Research, vol.113, 2008.

E. T. Peterson and T. Seno, Factors affecting seismic moment release rates in subduction zones, Journal of Geophysical Research, vol.89, pp.233-243, 1984.

C. Ranero and R. Huene, Subduction erosion along the middle America convergent margin, Nature, vol.404, issue.6779, pp.748-752, 2000.

C. R. Ranero, I. Grevemeyer, H. Sahling, U. Barckhausen, C. Hensen et al., Hydrogeological system of erosional convergent margins and its influence on tectonics and interplate seismogenesis, Geochemistry, Geophysics, Geosystems, vol.9, 2008.

F. Renard, T. Candela, and E. Bouchaud, Constant dimensionality of fault roughness from the scale of micro-fractures to the scale of continents, Journal of Geophysical Research, vol.40, pp.83-87, 2013.

D. P. Robinson, S. Das, and A. B. Watts, Earthquake rupture stalled by a subducting fracture zone, Science, issue.5777, p.1203, 2006.

M. Rodriguez, N. Chamot-rooke, M. Fournier, P. Huchon, and M. Delescluse, Mode of opening of an oceanic pull-apart: The 20°N Basin along the Owen Fracture Zone, Tectonics, vol.32, pp.1343-1357, 2013.
URL : https://hal.archives-ouvertes.fr/hal-01436514

L. Ruff, Do trench sediments affect great earthquake occurrence in subduction zones?, Pure and Applied Geophysics, vol.129, issue.1-2, pp.263-282, 1989.

L. Ruff and H. Kanamori, Seismic coupling and uncoupling at subduction zones, Tectonophysics, vol.99, issue.2-4, pp.99-117, 1983.

L. J. Ruff, Asperity distributions and large earthquake occurrence in subduction zones, Tectonophysics, vol.211, issue.1-4, pp.61-83, 1992.

D. M. Saffer and H. J. Tobin, Hydrogeology and mechanics of subduction zone forearcs: Fluid flow and pore pressure, Annual Review of Earth and Planetary Sciences, vol.39, issue.1, pp.157-186, 2011.

F. Sage, J. Collot, and C. R. Ranero, Interplate patchiness and subduction-erosion mechanisms: Evidence from depth-migrated seismic images at the Central Ecuador convergent margin, Geology, vol.34, issue.12, pp.997-1000, 2006.
URL : https://hal.archives-ouvertes.fr/hal-00407623

M. Saillard, L. Audin, B. Rousset, J. Avouac, M. Chlieh et al., From the seismic cycle to long-term deformation: Linking seismic coupling and quaternary coastal geomorphology along the Andean megathrust, Tectonics, vol.36, pp.241-256, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01524436

D. T. Sandwell, S. T. Gille, and W. Smith, Bathymetry from space: Oceanography, geophysics, and climate, geoscience professional services, p.24, 2002.

W. P. Schellart and N. Rawlinson, Global correlations between maximum magnitudes of subduction zone interface thrust earthquakes and physical parameters of subduction zones, Physics of the Earth and Planetary Interiors, vol.225, pp.41-67, 2013.

D. Schlaphorst, J. Kendall, S. Collier, J. P. Verdon, J. Blundy et al., Water, oceanic fracture zones and the lubrication of subducting plate boundaries-Insights from seismicity, Geophysical Journal International, vol.204, issue.3, pp.1405-1420, 2016.

D. W. Scholl, S. H. Kirby, R. Von-huene, H. Ryan, R. E. Wells et al., Great (Mw8.0) megathrust earthquakes and the subduction of excess sediment and bathymetrically smooth seafloor, Geosphere, vol.11, issue.2, pp.236-265, 2015.

C. H. Scholz, Earthquakes and friction laws, Nature, issue.6662, pp.37-42, 1998.

C. H. Scholz and C. Small, The effect of seamount on seismic coupling, Geology, vol.25, issue.6, pp.487-490, 1997.

S. C. Singh, N. Hananto, M. Mukti, D. P. Robinson, S. Das et al., Aseismic zone and earthquake segmentation associated with a deep subducted seamount in Sumatra, Nature Geoscience, vol.4, issue.5, pp.308-311, 2011.

W. H. Smith and D. T. Sandwell, Global Sea floor topography from satellite altimetry and ship depth soundings, Science, vol.277, pp.1957-1962, 1997.

R. Sparkes, F. Tilmann, N. Hovius, and J. Hillier, Subducted seafloor relief stops rupture in south American great earthquakes: Implications for rupture behaviour in the 2010 Maule, Chile earthquake, Earth and Planetary Science Letters, vol.298, issue.1-2, pp.89-94, 2010.

D. L. Turcotte, Fractals, chaos, self-organized criticality and tectonics, Terra Nova, vol.4, issue.1, pp.4-12, 1992.

D. L. Turcotte, Fractals and chaos in geology and geophysics, 1997.

S. Uyeda, Chilean vs. Mariana type subduction zones with remarks on arc volcanism and collision tectonics, Int. Lith. Pr. Contrib, vol.18, pp.1-7, 1987.

E. Van-rijsingen, S. Lallemand, M. Peyret, A. Heuret, D. Arcay et al., How subduction interface roughness influences the occurrence of large interplate earthquakes. Geochemistry, Geophysics, Geosystems, vol.19, 2018.

R. Von-huene, J. Bialas, E. Flueh, B. Cropp, T. Csernok et al., Morphotectonic features of the Costa Rican Pacific margin surveyed during the Sonne 76 cruise, vol.295, pp.291-307, 1995.

R. Von-huene, C. R. Ranero, and P. Vannucchi, Generic model of subduction erosion, Geology, vol.10, pp.913-916, 2004.

R. Von-huene, C. R. Ranero, and W. Weinrebe, Quaternary convergent margin tectonics of Costa Rica, segmentation of the Cocos plate, and central American volcanism, Tectonics, vol.19, pp.314-334, 2000.

R. Von-huene and D. W. Scholl, Observations at convergent margins concerning sediment subduction, subduction erosion, and the growth of continental crust, Reviews of Geophysics, vol.29, pp.279-316, 1991.

R. F. Voss, Fractals in nature: From characterization to simulation, The science of fractal images, pp.21-70, 1988.
DOI : 10.1007/978-1-4612-3784-6_1

L. M. Wallace, S. Ellis, and P. Mann, Collisional model for rapid fore-arc block rotations, arc curvature, and episodic back-arc rifting in subduction settings, Geochemistry, Geophysics, Geosystems, vol.10, 2009.
DOI : 10.1029/2008gc002220

URL : http://onlinelibrary.wiley.com/doi/10.1029/2008GC002220/pdf

K. Wang and S. L. Bilek, Do subducting seamounts generate or stop large earthquakes?, Geology, vol.39, issue.9, pp.819-822, 2011.
DOI : 10.1130/g31856.1

K. Wang and S. L. Bilek, Fault creep caused by subduction of rough seafloor relief, Tectonophysics, vol.610, pp.1-24, 2014.
DOI : 10.1016/j.tecto.2013.11.024

P. Weatherall, K. M. Marks, M. Jakobsson, T. Schmitt, S. Tani et al., A new digital bathymetric model of the world's oceans. Earth and Space Science, vol.2, pp.331-345, 2015.

P. Wessel, Global distribution of seamounts inferred from gridded Geosat/ERS-1 altimetry, Journal of Geophysical Research, vol.106, pp.431-450, 2001.
DOI : 10.1029/2000jb000083

URL : http://onlinelibrary.wiley.com/doi/10.1029/2000JB000083/pdf

H. Yang, Y. Liu, and J. Lin, Effects of subducted seamounts on megathrust earthquake nucleation and rupture propagation, Geophysical Research Letters, vol.39, p.24302, 2012.
DOI : 10.1029/2012gl053892

URL : https://agupubs.onlinelibrary.wiley.com/doi/pdf/10.1029/2012GL053892

L. Ye, H. Kanamori, and T. Lay, Global variations of large megathrust earthquake rupture characteristics, Science Advances, vol.4, pp.1-8, 2018.
DOI : 10.1126/sciadv.aao4915

URL : http://advances.sciencemag.org/content/4/3/eaao4915.full.pdf

Y. Yokota, T. Ishikawa, S. Watanabe, T. Tashiro, and A. Asada, Seafloor geodetic constraints on interplate coupling of the Nankai Trough megathrust zone, Nature, vol.534, issue.7607, pp.374-377, 2016.
DOI : 10.1038/nature17632

URL : http://arxiv.org/pdf/1802.04508