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<bibl><label>[20]</label> Pan F and Draayer J P 1999 Phys. Lett. B 451 1<lb/> </bibl>
<bibl><label>[21]</label> Morita H, Ohnishi H, da Providenica J and Nishiyama S 2006 Nucl. Phys. B 737 337<lb/> </bibl>
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<bibl><label>[23]</label> Bogoliubov N M, Bullough R K and Timonen J 1996 J. Phys. A: Math. Gen. 29 6305<lb/> </bibl>
<bibl><label>[24]</label> Amico L and Hikami K 2005 Eur Phys. J. B 43 387<lb/> </bibl>
<bibl>Amico L, Frahm H, Osterloh A and Ribeiro G A P 2007 Nucl. Phys. B 787 283<lb/> </bibl>
<bibl><label>[25] </label>Dorey P and Tateo R 1999 J. Phys. A: Math. Gen. 32 L419</bibl>
<bibl><label>[25]</label> Dorey P and Tateo R 1999 J. Phys. A: Math. Gen. 32 L419</bibl>
</listBibl>
</text>
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<listBibl>

<bibl><label>1. </label>Peek-Asa C, Ramírez MR, Shoaf K, et al. GIS mapping of<lb/> earthquake-related deaths and hospital admissions from the<lb/> 1994 Northridge, California, earthquake. Ann Epidemiol<lb/> 2000;10:5–13.<lb/> </bibl>
<bibl><label>2. </label>Blais NC, Seligson HA, Petrow AJ. Use of rapid damage as-<lb/>sessment and geographic information systems for emergency<lb/> response in the Northridge earthquake. Presented at the 11th<lb/> World Conference on Earthquake Engineering, Acapulco,<lb/> Mexico, June 23–28, 1996.<lb/> </bibl>
<bibl><label>3. </label>Davidson R. An urban earthquake disaster risk index. Stanford,<lb/> CA: The John A. Blume Earthquake Engineering Center,<lb/> 1997. (Report no. 121).<lb/> </bibl>
<bibl><label>4. </label>Zolfaghari MR. Earthquake risk assessment model for loss<lb/> estimation in Italy. Presented at the 11th European Conference<lb/> on Earthquake Engineering, Paris, France, September 6–11,<lb/> 1998.<lb/> </bibl>
<bibl><label>5. </label>HAZUS: loss estimation earthquake model. Washington, DC:<lb/> US Federal Emergency Management Agency, 2004. (http://<lb/> www.fema.gov/hazus/hz_eq.shtm).<lb/> </bibl>
<bibl><label>6. </label>Nichols JM, Beavers JE. Development and calibration of an<lb/> earthquake fatality function. Earthquake Spectra 2003;19:<lb/> 605–33.<lb/> </bibl>
<bibl><label>7. </label>Shakharamanian MA, Larionov VI, Nigmetov GM, et al.<lb/> Assessment of the seismic risk and forecasting consequences<lb/> of earthquakes while solving problems on population rescue.<lb/> Moscow, Russia: Russian Civil Defense and Disaster Man-<lb/>agement Research Institute, 2000.<lb/> </bibl>
<bibl><label>8. </label>Significant earthquakes of the world. Reston, GA: US<lb/> Geological Survey, 2004. (http://neic.usgs.gov/neis/eqlists/<lb/> significant.html).<lb/> </bibl>
<bibl><label>9. </label>LandScan: Global Population Project. Oak Ridge, TN: Oak<lb/> Ridge National Laboratory, 2004. (http://www.ornl.gov/sci/<lb/> gist/landscan/index.html).<lb/> </bibl>
<bibl><label>10. </label>Giardini D, Grünthal G, Shedlock K, et al. The global seismic<lb/> hazard assessment program (GSHAP). Ann Geofis 1999;<lb/> 42:1225–8.<lb/> </bibl>
<bibl><label>11. </label>Evernden JF, Thomson JM. Predictive model for important<lb/> ground motion parameters associated with large and great<lb/> earthquakes. Reston, VA: US Geological Survey, 1988.<lb/> (Bulletin 1838).<lb/> </bibl>
<bibl><label>12. </label>Eurocode 8 EN1998-1: design of structures for earthquake<lb/> resistance, part 1: general rules, seismic actions and rules<lb/> for buildings. Brussels, Belgium: European Committee for<lb/> Standardization, European Commission, 2004.<lb/> </bibl>
<bibl><label>13. </label>Digital soil map of the world and derived properties. Land<lb/> and water digital media series no. 1. Rome, Italy: Food and<lb/> Agriculture Organization of the United Nations/United<lb/> Nations Educational, Scientific and Cultural Organization<lb/> (FAO/UNESCO), 1998. (http://www.fao.org/catalog/<lb/> book_review/giii/w7189-e.htm).<lb/> </bibl>
<bibl><label>14. </label>The world factbook 2004. Washington, DC: Central Intelligence<lb/> Agency. (http://www.cia.gov/cia/publications/factbook/).<lb/> </bibl>
<bibl><label>15. </label>Peduzzi P, Dao H, Herold C. Global risk and vulnerability<lb/> index trends per year (GRAVITY), phase II: development,<lb/> analysis and results. Geneva, Switzerland: United Nations<lb/> Development Programme, 2002. (Scientific report UNDP/<lb/> BCPR).<lb/> </bibl>
<bibl><label>16. </label>Gutiérrez E, Taucer F, De Groeve A, et al. Prediction of mortality<lb/> after an earthquake based on a multivariate analysis of demo-<lb/>graphic and seismic data. Ispra, Italy: Directorate General, Joint<lb/> Research Centre, Institute for the Protection and Security of the<lb/> Citizen, Commission of the European Communities, 2004.<lb/> (European Commission report no. EUR 21059 EN).<lb/> </bibl>
<bibl><label>17. </label>Krzanowski W. Principles of multivariate analysis. Oxford,<lb/> United Kingdom: Oxford University Press, 2000.<lb/> </bibl>
<bibl><label>18. </label>Iyengar RN, Prodhan KC. Classification and rating of strong-<lb/>motion earthquake records. Earthquake Eng Struct Dyn<lb/> 1983;11:415–26.<lb/> </bibl>
<bibl><label>1.</label> Peek-Asa C, Ramírez MR, Shoaf K, et al. GIS mapping of<lb/> earthquake-related deaths and hospital admissions from the<lb/> 1994 Northridge, California, earthquake. Ann Epidemiol<lb/> 2000;10:5–13.<lb/> </bibl>
<bibl><label>2.</label> Blais NC, Seligson HA, Petrow AJ. Use of rapid damage as-<lb/>sessment and geographic information systems for emergency<lb/> response in the Northridge earthquake. Presented at the 11th<lb/> World Conference on Earthquake Engineering, Acapulco,<lb/> Mexico, June 23–28, 1996.<lb/> </bibl>
<bibl><label>3.</label> Davidson R. An urban earthquake disaster risk index. Stanford,<lb/> CA: The John A. Blume Earthquake Engineering Center,<lb/> 1997. (Report no. 121).<lb/> </bibl>
<bibl><label>4.</label> Zolfaghari MR. Earthquake risk assessment model for loss<lb/> estimation in Italy. Presented at the 11th European Conference<lb/> on Earthquake Engineering, Paris, France, September 6–11,<lb/> 1998.<lb/> </bibl>
<bibl><label>5.</label> HAZUS: loss estimation earthquake model. Washington, DC:<lb/> US Federal Emergency Management Agency, 2004. (http://<lb/> www.fema.gov/hazus/hz_eq.shtm).<lb/> </bibl>
<bibl><label>6.</label> Nichols JM, Beavers JE. Development and calibration of an<lb/> earthquake fatality function. Earthquake Spectra 2003;19:<lb/> 605–33.<lb/> </bibl>
<bibl><label>7.</label> Shakharamanian MA, Larionov VI, Nigmetov GM, et al.<lb/> Assessment of the seismic risk and forecasting consequences<lb/> of earthquakes while solving problems on population rescue.<lb/> Moscow, Russia: Russian Civil Defense and Disaster Man-<lb/>agement Research Institute, 2000.<lb/> </bibl>
<bibl><label>8.</label> Significant earthquakes of the world. Reston, GA: US<lb/> Geological Survey, 2004. (http://neic.usgs.gov/neis/eqlists/<lb/> significant.html).<lb/> </bibl>
<bibl><label>9.</label> LandScan: Global Population Project. Oak Ridge, TN: Oak<lb/> Ridge National Laboratory, 2004. (http://www.ornl.gov/sci/<lb/> gist/landscan/index.html).<lb/> </bibl>
<bibl><label>10.</label> Giardini D, Grünthal G, Shedlock K, et al. The global seismic<lb/> hazard assessment program (GSHAP). Ann Geofis 1999;<lb/> 42:1225–8.<lb/> </bibl>
<bibl><label>11.</label> Evernden JF, Thomson JM. Predictive model for important<lb/> ground motion parameters associated with large and great<lb/> earthquakes. Reston, VA: US Geological Survey, 1988.<lb/> (Bulletin 1838).<lb/> </bibl>
<bibl><label>12.</label> Eurocode 8 EN1998-1: design of structures for earthquake<lb/> resistance, part 1: general rules, seismic actions and rules<lb/> for buildings. Brussels, Belgium: European Committee for<lb/> Standardization, European Commission, 2004.<lb/> </bibl>
<bibl><label>13.</label> Digital soil map of the world and derived properties. Land<lb/> and water digital media series no. 1. Rome, Italy: Food and<lb/> Agriculture Organization of the United Nations/United<lb/> Nations Educational, Scientific and Cultural Organization<lb/> (FAO/UNESCO), 1998. (http://www.fao.org/catalog/<lb/> book_review/giii/w7189-e.htm).<lb/> </bibl>
<bibl><label>14.</label> The world factbook 2004. Washington, DC: Central Intelligence<lb/> Agency. (http://www.cia.gov/cia/publications/factbook/).<lb/> </bibl>
<bibl><label>15.</label> Peduzzi P, Dao H, Herold C. Global risk and vulnerability<lb/> index trends per year (GRAVITY), phase II: development,<lb/> analysis and results. Geneva, Switzerland: United Nations<lb/> Development Programme, 2002. (Scientific report UNDP/<lb/> BCPR).<lb/> </bibl>
<bibl><label>16.</label> Gutiérrez E, Taucer F, De Groeve A, et al. Prediction of mortality<lb/> after an earthquake based on a multivariate analysis of demo-<lb/>graphic and seismic data. Ispra, Italy: Directorate General, Joint<lb/> Research Centre, Institute for the Protection and Security of the<lb/> Citizen, Commission of the European Communities, 2004.<lb/> (European Commission report no. EUR 21059 EN).<lb/> </bibl>
<bibl><label>17.</label> Krzanowski W. Principles of multivariate analysis. Oxford,<lb/> United Kingdom: Oxford University Press, 2000.<lb/> </bibl>
<bibl><label>18.</label> Iyengar RN, Prodhan KC. Classification and rating of strong-<lb/>motion earthquake records. Earthquake Eng Struct Dyn<lb/> 1983;11:415–26.<lb/> </bibl>
<bibl>Analysis of Worldwide Earthquake Mortality<lb/></bibl>
<bibl><label>19. </label>Trevisan M, Jossa F, Farinaro E, et al. Earthquake and coro-<lb/>nary heart disease risk factors: a longitudinal study. Am J<lb/> Epidemiol 1992;135:632–7.<lb/> </bibl>
<bibl><label>20. </label>Armenian HK, Melkonian AK, Hovanesian AP. Long term<lb/> mortality and morbidity related to degree of damage following<lb/> the 1988 earthquake in Armenia. Am J Epidemiol 1998;<lb/> 148:1077–84.<lb/> </bibl>
<bibl><label>21. </label>Bland SH, Farinaro E, Krogh V, et al. Long term relations<lb/> between earthquake experiences and coronary heart disease<lb/> risk factors. Am J Epidemiol 2000;151:1086–90.<lb/> </bibl>
<bibl><label>19.</label> Trevisan M, Jossa F, Farinaro E, et al. Earthquake and coro-<lb/>nary heart disease risk factors: a longitudinal study. Am J<lb/> Epidemiol 1992;135:632–7.<lb/> </bibl>
<bibl><label>20.</label> Armenian HK, Melkonian AK, Hovanesian AP. Long term<lb/> mortality and morbidity related to degree of damage following<lb/> the 1988 earthquake in Armenia. Am J Epidemiol 1998;<lb/> 148:1077–84.<lb/> </bibl>
<bibl><label>21.</label> Bland SH, Farinaro E, Krogh V, et al. Long term relations<lb/> between earthquake experiences and coronary heart disease<lb/> risk factors. Am J Epidemiol 2000;151:1086–90.<lb/> </bibl>
<bibl>1158 Gutié rrez et al.<lb/> Am J Epidemiol 2005;161:1151–1158<lb/> at European Patent Office on May 27, 2011<lb/> aje.oxfordjournals.org<lb/></bibl>
</listBibl>
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<text xml:lang="en">
<listBibl>
R E F E R E N C E S
<bibl>Bacon R. et al., 2010, in McLean I. S., Ramsay S. K., Takami H., eds, Proc. SPIE Conf. Ser. Vol. 7735, SPIE, Bellingham p. 773508</bibl>
<bibl>Bertin E., Arnouts S., 1996, A&amp;AS, 117, 393</bibl>
<bibl>Christensen L. et al., 2012, MNRAS, 427, 1953</bibl>
<bibl>Ebeling H., Edge A. C., Henry J. P., 2001, ApJ, 553, 668</bibl>
<bibl>Ebeling H., Edge A. C., Mantz A., Barrett E., Henry J. P., Ma C. J., van Speybroeck L., 2010, MNRAS, 407, 83</bibl>
<bibl>Elíasdó A. et al., 2007, preprint (arXiv:0710.5636)</bibl>
<bibl>Grillo C. et al., 2014, preprint (arXiv:1407.7866)</bibl>
<bibl>Jauzac M. et al., 2014a, MNRAS, 443, 1549</bibl>
<bibl>Jauzac M. et al., 2014b, MNRAS, preprint (arXiv:1406.3011)</bibl>
<bibl>Johnson T. L., Sharon K., Bayliss M. B., Gladders M. D., Coe D., Ebeling H., 2014, ApJ, preprint (arXiv:1405.0222)</bibl>
<bibl>Jullo E., Kneib J.-P., Limousin M., Elíasdó A., Marshall P. J., Verdugo T., 2007, New J. Phys., 9, 447</bibl>
<bibl>Jullo E., Natarajan P., Kneib J.-P., D'Aloisio A., Limousin M., Richard J., Schimd C., 2010, Science, 329, 924</bibl>
<bibl>Kneib J.-P., Natarajan P., 2011, A&amp;AR, 19, 47</bibl>
<bibl>Koekemoer A. M., Fruchter A. S., Hook R. N., Hack W., 2002, in Arribas S., Koekemoer A., Whitmore B., eds, Proc. 2002 HST Cali- bration Workshop, Hubble After the Installation of the ACS and the NICMOS Cooling System. STScI, Baltimore, p. 337</bibl>
<bibl>Limousin M. et al., 2007, ApJ, 668, 643</bibl>
<bibl>Limousin M. et al., 2012, A&amp;A, 544, A71</bibl>
<bibl>Richard J., Pei L., Limousin M., Jullo E., Kneib J. P., 2009, A&amp;A, 498, 37</bibl>
<bibl>Richard J. et al., 2010, MNRAS, 404, 325</bibl>
<bibl>Richard J. et al., 2014, MNRAS, 444, 268</bibl>
<bibl>Zitrin A., Broadhurst T., Barkana R., Rephaeli Y., Bení N., 2011, MNRAS, 410, 1939</bibl>
<bibl>Zitrin A. et al., 2012, ApJ, 749, 97</bibl>
R E F E R E N C E S
<bibl>Bacon R. et al., 2010, in McLean I. S., Ramsay S. K., Takami H., eds, Proc. SPIE Conf. Ser. Vol. 7735, SPIE, Bellingham p. 773508</bibl>
<bibl>Bertin E., Arnouts S., 1996, A&amp;AS, 117, 393</bibl>
<bibl>Christensen L. et al., 2012, MNRAS, 427, 1953</bibl>
<bibl>Ebeling H., Edge A. C., Henry J. P., 2001, ApJ, 553, 668</bibl>
<bibl>Ebeling H., Edge A. C., Mantz A., Barrett E., Henry J. P., Ma C. J., van Speybroeck L., 2010, MNRAS, 407, 83</bibl>
<bibl>Elíasdó A. et al., 2007, preprint (arXiv:0710.5636)</bibl>
<bibl>Grillo C. et al., 2014, preprint (arXiv:1407.7866)</bibl>
<bibl>Jauzac M. et al., 2014a, MNRAS, 443, 1549</bibl>
<bibl>Jauzac M. et al., 2014b, MNRAS, preprint (arXiv:1406.3011)</bibl>
<bibl>Johnson T. L., Sharon K., Bayliss M. B., Gladders M. D., Coe D., Ebeling H., 2014, ApJ, preprint (arXiv:1405.0222)</bibl>
<bibl>Jullo E., Kneib J.-P., Limousin M., Elíasdó A., Marshall P. J., Verdugo T., 2007, New J. Phys., 9, 447</bibl>
<bibl>Jullo E., Natarajan P., Kneib J.-P., D'Aloisio A., Limousin M., Richard J., Schimd C., 2010, Science, 329, 924</bibl>
<bibl>Kneib J.-P., Natarajan P., 2011, A&amp;AR, 19, 47</bibl>
<bibl>Koekemoer A. M., Fruchter A. S., Hook R. N., Hack W., 2002, in Arribas S., Koekemoer A., Whitmore B., eds, Proc. 2002 HST Cali- bration Workshop, Hubble After the Installation of the ACS and the NICMOS Cooling System. STScI, Baltimore, p. 337</bibl>
<bibl>Limousin M. et al., 2007, ApJ, 668, 643</bibl>
<bibl>Limousin M. et al., 2012, A&amp;A, 544, A71</bibl>
<bibl>Richard J., Pei L., Limousin M., Jullo E., Kneib J. P., 2009, A&amp;A, 498, 37</bibl>
<bibl>Richard J. et al., 2010, MNRAS, 404, 325</bibl>
<bibl>Richard J. et al., 2014, MNRAS, 444, 268</bibl>
<bibl>Zitrin A., Broadhurst T., Barkana R., Rephaeli Y., Bení N., 2011, MNRAS, 410, 1939</bibl>
<bibl>Zitrin A. et al., 2012, ApJ, 749, 97</bibl>
</listBibl>
</text>
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<text xml:lang="en">
<listBibl>
References
<bibl> A. Abeille, Y. Schabes. and A. K. Joshi. 1990. Using Lexicalized Tags for Machine Transla- tion. In COLING90.</bibl>
<bibl> M. Farach, T. M. Przytycka, and M. Thorup. 1995. On the agreement of many trees. Infor- mation Processing Letters, 55:297-301.</bibl>
<bibl>O. Furuse and H. lida. 1994. Constituent Boundary Parsing for Example-Based Ma- chine Translation. In COLING94.</bibl>
<bibl>R. Grishman. 1994. lterative Alignment of Syn- tactic Structures for a Bilingual Corpus: In Proceedings of the Second Annual Workshop for Very Large Corpora, Tokyo.</bibl>
<bibl>H. Kaji, Y. Kida, and Y. Morimoto. 1992. Learning Translation Templates fi'om Bilin- gual Text. In COLING92.</bibl>
<bibl>M. Kitamura and Y. Matsumoto. 1995. A Ma- chine Translation System based on Transla- tion Rules Acquired from Parallel Corpora. In RANLP95.</bibl>
<bibl>Y. Matsumoto, H. Ishimoto. T. Utsuro, and M. Nagao. 1993. Structural Matching of Par- allel Texts. In ACL93.</bibl>
<bibl>A. Meyers, R. Yangarber, and R. Grishman. 1996. Alignment of Shared Forests for Bilin- gual Corpora. In COLING96, pages 460-465.</bibl>
<bibl>S. Sato and M. Nagao. 1990. Toward Memory- based Translation. In COLING90, volume 3, pages 247-252.</bibl>
References
<bibl>A. Abeille, Y. Schabes. and A. K. Joshi. 1990. Using Lexicalized Tags for Machine Transla- tion. In COLING90.</bibl>
<bibl>M. Farach, T. M. Przytycka, and M. Thorup. 1995. On the agreement of many trees. Infor- mation Processing Letters, 55:297-301.</bibl>
<bibl>O. Furuse and H. lida. 1994. Constituent Boundary Parsing for Example-Based Ma- chine Translation. In COLING94.</bibl>
<bibl>R. Grishman. 1994. lterative Alignment of Syn- tactic Structures for a Bilingual Corpus: In Proceedings of the Second Annual Workshop for Very Large Corpora, Tokyo.</bibl>
<bibl>H. Kaji, Y. Kida, and Y. Morimoto. 1992. Learning Translation Templates fi'om Bilin- gual Text. In COLING92.</bibl>
<bibl>M. Kitamura and Y. Matsumoto. 1995. A Ma- chine Translation System based on Transla- tion Rules Acquired from Parallel Corpora. In RANLP95.</bibl>
<bibl>Y. Matsumoto, H. Ishimoto. T. Utsuro, and M. Nagao. 1993. Structural Matching of Par- allel Texts. In ACL93.</bibl>
<bibl>A. Meyers, R. Yangarber, and R. Grishman. 1996. Alignment of Shared Forests for Bilin- gual Corpora. In COLING96, pages 460-465.</bibl>
<bibl>S. Sato and M. Nagao. 1990. Toward Memory- based Translation. In COLING90, volume 3, pages 247-252.</bibl>
</listBibl>
</text>
</tei>
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