George RA, Shuy JP, Cauquil E (2003) Deep-water AUV logs 25,000 km under the sea—
technology provides high-quality remote sensing data for deep-water seabed engineering
projects in half the time. Sea Technol 44:10–15
George RA (2006) Advances in AUV remote-sensing technology for imaging deep-water
geohazards. Lead Edge 25:1478–1483
Grasmueck M, Eberli GP, Viggiano DA, Correa TBS, Rathwell G, Luo JG (2006) Autonomous
Underwater Vehicle (AUV) mapping reveals coral mound distribution, morphology, and
oceanography in deep water of the straits of Florida. Geophy Res Lett, vol 33. doi:10.1029/
2006GL027734
Guinan J, Grehan AJ, Dolan MFJ, Brown C (2009) Quantifying relationships between video
observations of cold-water coral cover and seafloor features in Rockall Trough, west of
Ireland. Mar Ecol Prog Ser 375:125–138
Hovland M, Croker PF, Martin M (1994) Fault-associated seabed mounds (carbonate knolls?) off
Western Ireland and Northwest Australia. Mar Pet Geol 11:232–246
Hovland M (1990) Do carbonate reefs form due to fluid seepage? Terra 2:8–18
Hurley RJ, Fink LK (1963) Ripple marks show that countercurrent exists in Florida straits.
Science 139:603–605
Huvenne VAI, Blondel P, Henriet JP (2002) Textural analyses of sidescan sonar imagery from
two mound provinces in the Porcupine Seabight. Mar Geol 189:323–341
Huvenne VAI, De Mol B, Henriet JP (2003) A 3D seismic study of the morphology and spatial
distribution of buried coral banks in the porcupine basin, SW of Ireland. Marine Geol
198:5–25
Jalving B, Gade K, Hagen OK, Vestgård K (2003) A Toolbox of aiding techniques for the
HUGIN AUV integrated inertial navigation system. In: Proceedings from Oceans, San Diego,
pp 1146–1153
Lurton X (2002) An introduction to underwater acoustics: principle and application. Springer,
Chichester, p 347
Kenyon NH, Akhmetzhanov AM, Wheeler AJ, van Weering TCE, de Haas H, Ivanov MK (2003)
Giant carbonate mud mounds in the Southern Rockall Trough. Mar Geol 195:5–30
Kongsberg (2005) 12 KHz multi-beam echo sounder—seabed mapping to full Ocean depth,
http://www.kongsberg-simrad.de, Kongsberg Newsletter. Accessed November 2010
Messing CG, Neumann AC, Lang JC (1990) Biozonation of deep-water lithoherms and
associated hardgrounds in the Northeastern Straits of Florida. Palaios 5:15–33
Mienis F, van Weering T, de Haas H, de Stigter H, Huvenne VAI, Wheeler AJ (2006) Carbonate
699 mound development at the SW Rockall Trough margin based on high resolution TOBI
and 700 seismic recording. Mar Geol 233:1–19
Mienis F, de Stigter HC, White M, Dulneveldc G, de Haas H, van Weering TCE (2007)
Hydrodynamic controls on cold-water coral growth and carbonate-mound development at the
SW and SE Rockall Trough margin, NE Atlantic Ocean. Deep-Sea Research Part
I-Oceanographic Research Papers 54:1655–1674
Mullins HT, Newton CR, Heath K, Vanburen HM (1981) Modern deep-water coral mounds
North of Little Bahama Bank—criteria for recognition of deep-water coral bioherms in the
rock record. J Sediment Petrol 51:999–1013
Mullins HT, Heath KC, Van Buren HM, Newton CR (1984) Anatomy of a modern open ocean
carbonate slope: Northern Little Bahama Bank. Sedimentology 31:141–168
Neumann AC, Ball MM (1970) Submersible observations in straits of Florida—geology and
bottom currents. Geol Soc Am Bull 81:2861–2873
Neumann AC, Kofoed JW, Keller GH (1977) Lithoherms in straits of Florida. Geology 5:4–10
Northcutt JG, Kleiner AA, Chance TS, Lee J (2000) Cable route surveys utilizing autonomous
underwater vehicles (AUVs). Mar Technol Soc J 34:11–16
Opderbecke J (1997) At-sea calibration of a USBL underwater vehicle positioning system,
Oceans 1997 MTS/IEEE 1:721–726
Paull CK, Neumann AC, Ende BAA, Ussler W, Rodriguez NM (2000) Lithoherms on the
Florida-Hatteras slope. Mar Geol 166:83–101
10 Deep Acoustic Applications
281
technology provides high-quality remote sensing data for deep-water seabed engineering
projects in half the time. Sea Technol 44:10–15
George RA (2006) Advances in AUV remote-sensing technology for imaging deep-water
geohazards. Lead Edge 25:1478–1483
Grasmueck M, Eberli GP, Viggiano DA, Correa TBS, Rathwell G, Luo JG (2006) Autonomous
Underwater Vehicle (AUV) mapping reveals coral mound distribution, morphology, and
oceanography in deep water of the straits of Florida. Geophy Res Lett, vol 33. doi:10.1029/
2006GL027734
Guinan J, Grehan AJ, Dolan MFJ, Brown C (2009) Quantifying relationships between video
observations of cold-water coral cover and seafloor features in Rockall Trough, west of
Ireland. Mar Ecol Prog Ser 375:125–138
Hovland M, Croker PF, Martin M (1994) Fault-associated seabed mounds (carbonate knolls?) off
Western Ireland and Northwest Australia. Mar Pet Geol 11:232–246
Hovland M (1990) Do carbonate reefs form due to fluid seepage? Terra 2:8–18
Hurley RJ, Fink LK (1963) Ripple marks show that countercurrent exists in Florida straits.
Science 139:603–605
Huvenne VAI, Blondel P, Henriet JP (2002) Textural analyses of sidescan sonar imagery from
two mound provinces in the Porcupine Seabight. Mar Geol 189:323–341
Huvenne VAI, De Mol B, Henriet JP (2003) A 3D seismic study of the morphology and spatial
distribution of buried coral banks in the porcupine basin, SW of Ireland. Marine Geol
198:5–25
Jalving B, Gade K, Hagen OK, Vestgård K (2003) A Toolbox of aiding techniques for the
HUGIN AUV integrated inertial navigation system. In: Proceedings from Oceans, San Diego,
pp 1146–1153
Lurton X (2002) An introduction to underwater acoustics: principle and application. Springer,
Chichester, p 347
Kenyon NH, Akhmetzhanov AM, Wheeler AJ, van Weering TCE, de Haas H, Ivanov MK (2003)
Giant carbonate mud mounds in the Southern Rockall Trough. Mar Geol 195:5–30
Kongsberg (2005) 12 KHz multi-beam echo sounder—seabed mapping to full Ocean depth,
http://www.kongsberg-simrad.de, Kongsberg Newsletter. Accessed November 2010
Messing CG, Neumann AC, Lang JC (1990) Biozonation of deep-water lithoherms and
associated hardgrounds in the Northeastern Straits of Florida. Palaios 5:15–33
Mienis F, van Weering T, de Haas H, de Stigter H, Huvenne VAI, Wheeler AJ (2006) Carbonate
699 mound development at the SW Rockall Trough margin based on high resolution TOBI
and 700 seismic recording. Mar Geol 233:1–19
Mienis F, de Stigter HC, White M, Dulneveldc G, de Haas H, van Weering TCE (2007)
Hydrodynamic controls on cold-water coral growth and carbonate-mound development at the
SW and SE Rockall Trough margin, NE Atlantic Ocean. Deep-Sea Research Part
I-Oceanographic Research Papers 54:1655–1674
Mullins HT, Newton CR, Heath K, Vanburen HM (1981) Modern deep-water coral mounds
North of Little Bahama Bank—criteria for recognition of deep-water coral bioherms in the
rock record. J Sediment Petrol 51:999–1013
Mullins HT, Heath KC, Van Buren HM, Newton CR (1984) Anatomy of a modern open ocean
carbonate slope: Northern Little Bahama Bank. Sedimentology 31:141–168
Neumann AC, Ball MM (1970) Submersible observations in straits of Florida—geology and
bottom currents. Geol Soc Am Bull 81:2861–2873
Neumann AC, Kofoed JW, Keller GH (1977) Lithoherms in straits of Florida. Geology 5:4–10
Northcutt JG, Kleiner AA, Chance TS, Lee J (2000) Cable route surveys utilizing autonomous
underwater vehicles (AUVs). Mar Technol Soc J 34:11–16
Opderbecke J (1997) At-sea calibration of a USBL underwater vehicle positioning system,
Oceans 1997 MTS/IEEE 1:721–726
Paull CK, Neumann AC, Ende BAA, Ussler W, Rodriguez NM (2000) Lithoherms on the
Florida-Hatteras slope. Mar Geol 166:83–101
10 Deep Acoustic Applications
281
