Brock J, Palaseanu-Lovejoy M, Wright CW, Nayegandhi A (2008) Patch-reef morphology as a
proxy for Holocene sea-level variability, Northern Florida Keys, USA. Coral Reefs
27:555–568
Brock JC, Purkis SJ (2009) The emerging role of LiDAR remote sensing in coastal research and
resource management. J Coast Res SI 53:1–5
Brown BE, Suharsono (1990) Damage and recovery of coral reefs affected by El Nino related
seawater warming in the Thousand Islands, Indonesia. Coral Reefs 8:163–170
Chust G, Galparsoro I, Borja Á, Franco J, Uriarte A (2008) Coastal and estuarine habitat
mapping, using LiDAR height and intensity and multi-spectral imagery. Estuar Coast Shelf
Sci 78:633–643
Chust G, Grande M, Galparsoro I, Uriarte A, Borja A (2010) Capabilities of the bathymetric
Hawk Eye LiDAR for coastal habitat mapping: a case study within a Basque estuary. Estuar
Coast Shelf Sci 89(3):200–213
Cochran-Marquez SA (2005) Moloka’i benthic habitat mapping. US geological survey open file
report 2005-1070. Available online: http://pubs.usgs.gov/of/2005/1070/index.html. Visited 27
Sep 2010
Conger CL, Hochberg EJ, Fletcher CH, Atkinson MJ (2006) Decorrelating remote sensing color
bands from bathymetry in optically shallow waters. Trans Geosci Remote Sens 44(6):
1655–1660
Conger CL, Fletcher CH, Barbee M (2009a) Artificial neural network classification of sand in all
visible submarine and subaerial regions of a digital image. J Coastal Res 21(6):1173–1177
Conger CL, Fletcher CH, Hochberg EH, Frazer N, Rooney J (2009b) Remote sensing of sand
distribution patterns across an insular shelf: Oahu, Hawaii. Mar Geol 267:175–190
Costa BM, Battista TA, Pittman SJ (2009) Comparative evaluation of airborne LiDAR and shipbased multibeam sonar bathymetry and intensity for mapping coral reef ecosystems. Remote
Sens Environ 113:1082–1100
Douvere F (2008) The importance of marine spatial planning in advancing ecosystem-based sea
use management. Mar Policy 32:762–771
Engel-Cox JA, Hoff RM, Rogers R, Dimmick F, Rush AC, Szykman JJ, Al-Saadi J, Chu DA, Zell
ER (2006) Integrating LiDAR and satellite optical depth with ambient monitoring for 3dimensional particulate characterization. Atmos Environ 40:8056–8067
Field ME, Logan JB, Chavez Jr PS, Storlazzi CD, Cochran SA (2008) Views of the South
Moloka’i Watershed-to-Reef System. In: Field ME, Cochran SA, Logan JB, Storlazzi CD
(eds) The coral reef of South Moloka‘i, Hawai‘i: portrait of a sediment-threatened fringing
reef. U.S. Geological survey scientific investigation report 2007-5101, pp 17–32
Finkl CW, Benedet L, Andrews JL (2005) Submarine geomorphology of the continental shelf off
Southeast Florida based on interpretation of airborne laser bathymetry. J Coastal Res
21:1178–1190
Finkl CW, Becerra JE, Achatz V, Andrews JL (2008) Geomorphological mapping along the
Upper Southeast Florida Atlantic Continental Platform. J Coastal Res 1388–1417
Friedlander AM, Parrish JD (1998) Habitat characteristics affecting fish assemblages on a
Hawaiian coral reef. J Exp Mar Biol Ecol 224:1–30
Friedlander A, Sladek-Nowlis J, Sanchez JA, Appeldoorn R, Usseglio P, McCormick C, Bejarno
S, Mitchel-Chui A (2003) Designing effective marine protected areas in Seaflower Biosphere
Reserve, Columbia, based on biological and sociological information. Conserv Biol 17:1–16
Friedlander AM, Brown E, Monaco ME, Clark A (2006) Fish habitat utilization patterns and
evaluation of the efficacy of marine protected areas in Hawaii: integration of NOAA digital
benthic habitat mapping and coral reef ecological studies. NOAA Technical Memorandum
NOS NCCOS 23:217
Friedlander AM, Brown E, Monaco ME (2007a) Defining reef fish habitat utilization patterns in
Hawaii: comparisons between marine protected areas and areas open to fishing. Mar Ecol
Prog Ser 351:221–233
Friedlander AM, Brown EK, Monaco ME (2007b) Coupling ecology and GIS to evaluate efficacy
of marine protected areas in Hawaii. Ecol Appl 17:715–730
170
S. J. Pittman et al.
proxy for Holocene sea-level variability, Northern Florida Keys, USA. Coral Reefs
27:555–568
Brock JC, Purkis SJ (2009) The emerging role of LiDAR remote sensing in coastal research and
resource management. J Coast Res SI 53:1–5
Brown BE, Suharsono (1990) Damage and recovery of coral reefs affected by El Nino related
seawater warming in the Thousand Islands, Indonesia. Coral Reefs 8:163–170
Chust G, Galparsoro I, Borja Á, Franco J, Uriarte A (2008) Coastal and estuarine habitat
mapping, using LiDAR height and intensity and multi-spectral imagery. Estuar Coast Shelf
Sci 78:633–643
Chust G, Grande M, Galparsoro I, Uriarte A, Borja A (2010) Capabilities of the bathymetric
Hawk Eye LiDAR for coastal habitat mapping: a case study within a Basque estuary. Estuar
Coast Shelf Sci 89(3):200–213
Cochran-Marquez SA (2005) Moloka’i benthic habitat mapping. US geological survey open file
report 2005-1070. Available online: http://pubs.usgs.gov/of/2005/1070/index.html. Visited 27
Sep 2010
Conger CL, Hochberg EJ, Fletcher CH, Atkinson MJ (2006) Decorrelating remote sensing color
bands from bathymetry in optically shallow waters. Trans Geosci Remote Sens 44(6):
1655–1660
Conger CL, Fletcher CH, Barbee M (2009a) Artificial neural network classification of sand in all
visible submarine and subaerial regions of a digital image. J Coastal Res 21(6):1173–1177
Conger CL, Fletcher CH, Hochberg EH, Frazer N, Rooney J (2009b) Remote sensing of sand
distribution patterns across an insular shelf: Oahu, Hawaii. Mar Geol 267:175–190
Costa BM, Battista TA, Pittman SJ (2009) Comparative evaluation of airborne LiDAR and shipbased multibeam sonar bathymetry and intensity for mapping coral reef ecosystems. Remote
Sens Environ 113:1082–1100
Douvere F (2008) The importance of marine spatial planning in advancing ecosystem-based sea
use management. Mar Policy 32:762–771
Engel-Cox JA, Hoff RM, Rogers R, Dimmick F, Rush AC, Szykman JJ, Al-Saadi J, Chu DA, Zell
ER (2006) Integrating LiDAR and satellite optical depth with ambient monitoring for 3dimensional particulate characterization. Atmos Environ 40:8056–8067
Field ME, Logan JB, Chavez Jr PS, Storlazzi CD, Cochran SA (2008) Views of the South
Moloka’i Watershed-to-Reef System. In: Field ME, Cochran SA, Logan JB, Storlazzi CD
(eds) The coral reef of South Moloka‘i, Hawai‘i: portrait of a sediment-threatened fringing
reef. U.S. Geological survey scientific investigation report 2007-5101, pp 17–32
Finkl CW, Benedet L, Andrews JL (2005) Submarine geomorphology of the continental shelf off
Southeast Florida based on interpretation of airborne laser bathymetry. J Coastal Res
21:1178–1190
Finkl CW, Becerra JE, Achatz V, Andrews JL (2008) Geomorphological mapping along the
Upper Southeast Florida Atlantic Continental Platform. J Coastal Res 1388–1417
Friedlander AM, Parrish JD (1998) Habitat characteristics affecting fish assemblages on a
Hawaiian coral reef. J Exp Mar Biol Ecol 224:1–30
Friedlander A, Sladek-Nowlis J, Sanchez JA, Appeldoorn R, Usseglio P, McCormick C, Bejarno
S, Mitchel-Chui A (2003) Designing effective marine protected areas in Seaflower Biosphere
Reserve, Columbia, based on biological and sociological information. Conserv Biol 17:1–16
Friedlander AM, Brown E, Monaco ME, Clark A (2006) Fish habitat utilization patterns and
evaluation of the efficacy of marine protected areas in Hawaii: integration of NOAA digital
benthic habitat mapping and coral reef ecological studies. NOAA Technical Memorandum
NOS NCCOS 23:217
Friedlander AM, Brown E, Monaco ME (2007a) Defining reef fish habitat utilization patterns in
Hawaii: comparisons between marine protected areas and areas open to fishing. Mar Ecol
Prog Ser 351:221–233
Friedlander AM, Brown EK, Monaco ME (2007b) Coupling ecology and GIS to evaluate efficacy
of marine protected areas in Hawaii. Ecol Appl 17:715–730
170
S. J. Pittman et al.
