802 R. Freire Filho and J. M. Palmeirim
IBGE (INSTITUTO BRASILEIRO DE GEOGRAFIA E ESTATÍSTICA) (2015) Bases cartográficas continuas, transporte. Http://geoftp.
ibge.gov.br/cartas_e_mapas/bases_cartograficas_continuas/bc250/ [accessed 12 September 2018].
KRAMER-SCHADT, S., NIEDBALLA, J., PILGRIM, J.D., SCHRÖDER, B., LINDENBORN, J., REINFELDER,
V.etal. (2013) The importance of correcting for sampling bias in MaxEnt species distribution models. Diversity and Distributions, 19, 1366–1379.
KUKKALA, A.S. & MOILANEN,A.(2013) Core concepts of spatial prioritisation in systematic conservation planning. Biological Reviews, 88, 443–464.
LEAL, I.R., SILVA, J.M.C., TABARELLI,M.&LACHER,JR, T.E. (2005) Changing the course of biodiversity conservation in the Caatinga of northeastern Brazil. Conservation Biology, 19, 701–706.
MILLER,J.(2010) Species distribution modeling. Geography Compass, 4, 490–509.
MMA (MINISTÉRIO DO MEIO AMBIENTE)(2016) Sistema Nacional de Unidades Conservação—SNUC.
Http://www.mma.gov.br/areas- protegidas/sistema-nacional-de-ucs-snuc [accessed 20 June 2017].
MOILANEN, A., FRANCO, A.M.A., EARLY, R.I., FOX, R.,WINTLE,B.& THOMAS, C.D. (2005) Prioritizing multiple-use landscapes for conservation: methods for large multi-species planning problems. Proceedings of the Royal Society B, 272, 1885–1891.
MOILANEN, A., ANDERSON, B.J., EIGENBROD, F., HEINEMEYER, A., ROY, D.B., GILLINGS, S. et al. (2011) Balancing alternative land uses in conservation prioritization. Ecological Applications, 21, 1419–1426.
MOILANEN, A., POUZOLS, F.M., MELLER, L., VEACH, V., ARPONEN, A., LEPPÄNEN,J.&KUJALA,H.(2017) Spatial Conservation Planning Methods and Software: Zonation Version 4 User Manual. Biodiversity Conservation Informatics Group, Department of Biosciences, University of Helsinki, Helsinki, Finland.
OLIVEIRA, M.M.&KIERULFF, M.C.M. (2008) Alouatta
ululata.In The IUCN Red List of Threatened Species 2008: e.T918A13094890.
Http://dx.doi.org/10.2305/IUCN.UK.2008.RLTS.T918A13094890.en [accessed 20 June 2017].
OLIVEIRA, M.M., FERREIRA, J.G.,MOTA, G.L.S.&SOARES, S.G. (2007) Mapeamento das áreas de ocorrência de Alouatta ululata—Etapa Ceará. In A Primatologia do Brasil, Volume 10 (ed. J.C. Bicca-Marques), pp. 151–161. Sociedade Brasileira de Primatologia, Porto Alegre, Brazil.
PBMC (PAINEL BRASILEIRO DE MUDANÇAS CLIMÁTICAS)(2013) Executive Summary: ScientificBasis of ClimateChange—Contribution from theWorking Group 1 to the First National Assessment Report of the Brazilian Panel on Climate Change (GT1 RAN1 PBMC). Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.
PHILLIPS,S.(2008) A Brief Tutorial on Maxent.
Https://biodiversityinformatics.amnh.org/open_source/maxent/ Maxent_tutorial2017.pdf [accessed 12 September 2018].
PHILLIPS, S.J., ANDERSON, R.P. & SCHAPIRE, R.E. (2006) Maximum entropy modeling of species geographic distributions. Ecological Modelling, 190, 231–259.
PRESSEY, R.L., CABEZA, M.,WATTS, M.E., COWLING, R.M. & WILSON, K.A. (2007) Conservation planning in a changing world. Trends in Ecology & Evolution, 22, 583–592.
PRESSEY, R.L.,WATTS, M.E., BARRETT,T.W.&RIDGES, M.J. (2009). The C-Plan conservation planning system: origins, applications, and possible futures. In Spatial Conservation Prioritization (eds A. Moilanen, K.A. Wilson & H. Possingham), pp. 211–234. Oxford University Press, Oxford, UK.
QGIS DEVELOPMENT TEAM (2016) QGIS: A Free and Open Source Geographic Information System. Open Source Geospatial Foundation.
Http://www.qgis.org [accessed 24 May 2017].
RAINHO,A. & PALMEIRIM, J.M. (2013) Prioritizing conservation areas around multispecies bat colonies using spatial modeling. Animal Conservation, 16, 438–448.
RILEY, S.J., DEGLORIA, S.D. & ELLIOT,R. (1999) A terrain ruggedness index that quantifies topographic heterogeneity. Intermountain Journal of Sciences, 5, 23–27.
SDAT (SPATIAL DATA ACCESS TOOL)(2011) Global 1km Forest Canopy Height.
Https://webmap.ornl.gov/wcsdown/dataset.jsp?dg_ id=10023_1 [accessed 12 September 2018].
SEDAC (SOCIOECONOMIC DATA AND APPLICATIONS CENTER) (2011) Global Rural-Urban Mapping Project (GRUMP), v1: Population Density Grid.
Http://dx.doi.org/10.7927/H4R20Z93 [accessed 12 September 2018].
SIMARD, M., PINTO, N., FISHER, J.B. & BACCINI,A.(2011) Mapping forest canopy height globally with spaceborne lidar. Journal of Geophysical Research, 116, 1–12.
TORRES, R.R., LAPOLA, D.M. & GAMARRA, N.L.R. (2017) Future climate change in the Caatinga. In Caatinga: The Largest Tropical Dry Forest Region in South America (eds J.M.C. da Silva, I.R. Leal & M Tabarelli), pp. 383–410. Springer, Cham, Switzerland.
USGS (UNITED STATES GEOLOGICAL SURVEY)(2000) Shuttle Radar Topography Mission 3 (SRTM3).
Https://earthexplorer.usgs.gov [accessed 12 September 2018].
VIANA, M.C., BONVICINO, C.R., FERREIRA, J.G., JERUSALINSKY, L., LANGGUTH,A. & SEUÁNEZ,H.(2015) Understanding the relationship between Alouatta ululata and Alouatta belzebul (Primates: Atelidae) based on cytogenetics and molecular phylogeny. Oecologia Australis, 19, 173–182.
WATTS, M.E., BALL, I.R., STEWART, R.S., KLEIN, C.J.,WILSON, K., STEINBACK, C. et al. (2009) Marxan with Zones: software for optimal conservation based land- and sea-use zoning. Environmental Modelling & Software, 24, 1513–1521.
WIENS,J.A., STRALBERG,D., JONGSOMJIT,D., HOWELL,C.A.& SNYDER,M.A. (2009) Niches, models, and climate change: assessing the assumptions and uncertainties. Proceedings of the National Academy of Sciences of the United States ofAmerica, 106, 19729–19736.
ZOMER, R.J., TRABUCCO, A., BOSSIO, D.A. & VERCHOT, L.V. (2008) Climate change mitigation: a spatial analysis of global land suitability for clean development mechanism afforestation and reforestation. Agriculture, Ecosystems & Environment, 126, 67–80.
Oryx, 2020, 54(6), 794–802 © 2019 Fauna & Flora International doi:10.1017/S0030605318001084
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