Clark AH (1939) Echinoderms (other than holothurians) collected on the Presidential Cruise of
1938. Smithson Miscell Collec 98:1–22
Clark HL (1940) Eastern Pacific expeditions of the New York Zoological Society. XXI. Notes on
Echinoderms from the west coast of Central America. Zoologica 25:331–352
Clark HL (1948) A report on the Echini of the warmer eastern Pacific, based on the collections of
the Velero III. Allan Hancock Pac Exp 8:225–352
Coello D, Prado M (1999) Variabilidad del fitoplancton y microzooplancton frente a la costa
ecuatoriana durante 1995–1999. Bol Esp INP, Ecuador, pp 72–108
Conand C (2004) Present status of world sea cucumber resources and utilization: an international
overview. In: Lovatelli A, Conand C, Purcell S, Uthicke S, Hamel JF, Mercier A (eds)
Advances in sea cucumber aquaculture and management. FAO Technical Paper 463, Rome,
pp 13–24
Cox A (1983) Ages of the Galápagos Islands: patterns of evolution in Galápagos organisms. In:
Bowman RI, Berson M, Leviton AE (eds) Patterns of evolution in Galápagos organisms. Am
Ass Advan Sci, San Francisco, pp 11–24
Cruz M, Gaibor N, Mora E, Jimenez R, Mair J (2003) The known and unknown about marine
biodiversity in Ecuador (continental and insular). Gayana 7:232–260
De Miras C, Andrade M, Carranza C (1996) Evaluación socioeconómica de la pesca experimental
de pepino de mar en Galápagos. Fundación Charles Darwin para las Islas Galápagos/
ORSTOM, Quito
De Paco C, Hurtado M, McFarland C, Martínez P, Reck G, Richmond R (1993) Evaluación de la
pesquería de pepinos de mar en las Islas Galápagos, Ecuador. Informe para la Unión Mundial
para la Naturaleza (UICN) como resultado de la Misión realizada a solicitud de la Fundación
Charles Darwin para las Islas Galápagos, Santa Cruz, Galápagos, Ecuador
Deichmann E (1938) Holothurians from the western coast of Lower California and Central
America, and from the Galápagos Islands; Eastern Pacific Expeditions of the New York
Zoological Society XVI. Zoologica 23:361–387
Deichmann E (1941) Deichmann E (1941) The Holothuroidea collected by the Velero III during
the years 1932 to 1938. Part I. Dendrochirota. Allan Hancock Pac Exp 8:61–195
Deichmann E (1958) The Holothuroidea collected by theVelero III and IV during the years 1932
to 1954. Part II. Aspidochirota. Allan Hancock Pac Exp 11:253–349
Denny M, Gaylord B (1996) Why the urchin lost its spines: hydrodynamic forces and
survivorship in three echinoids. J Exp Biol 199:717–729
Ebert TA (1971) A preliminary quantitative survey of the echinoid fauna of Kealakekua and
Honaunau Bays. Hawaii. Pac Sci 25:112–131
Ebert TA (1980) Relative growth of sea urchin jaws: an example of plastic resources allocation.
Bull Mar Sci 30:467–474
Edgar GJ, Kerrison L, Shepherd S, Toral-Granda V (2002a) Impacto del derrame del Jessica en la
plantas y animales intermareales y submareales someros. In: Edgar GJ (ed) Impactos
biológicos del derrame del Jessica en los ambientes de Galápagos. SPNG/CDRS, Santa Cruz,
Galápagos, pp 13–14
Edgar GJ, Kerrison L, Shepherd S, Toral-Granda V (2002a) Impacto del derrame del Jessica en la
plantas y animales intermareales y submareales someros. In: Edgar GJ (ed) Impactos
biológicos del derrame del Jessica en los ambientes de Galápagos. SPNG/CDRS, Santa Cruz,
Galápagos, pp 13–14
Edgar GJ, Banks SA, Fariña JM, Calvopiña M, Martínez C (2004) Regional biogeography of
shallow reef fish and macro-invertebrate communities in the Galápagos Archipelago.
J Biogeogr 31:1107–1124
Edgar G, Banks SA, Brandt M, Bustamante RH, Chiriboga A, Earle SA, Garske LE, Glynn PW,
Grove JS, Henderson S, Hickman CP, Miller KA, Rivera F, Wellington GM (2010) El Niño,
grazers and fisheries interact to greatly elevate extinction risk for Galápagos marine species.
Global Change Biol 16:2876–2890
Ellers O (1993) A mechanical model of growth in regular sea urchins: predictions of shape and a
developmental morphospace. Proc R Soc Lond B 254:123–129
226
J. Sonnenholzner et al.
1938. Smithson Miscell Collec 98:1–22
Clark HL (1940) Eastern Pacific expeditions of the New York Zoological Society. XXI. Notes on
Echinoderms from the west coast of Central America. Zoologica 25:331–352
Clark HL (1948) A report on the Echini of the warmer eastern Pacific, based on the collections of
the Velero III. Allan Hancock Pac Exp 8:225–352
Coello D, Prado M (1999) Variabilidad del fitoplancton y microzooplancton frente a la costa
ecuatoriana durante 1995–1999. Bol Esp INP, Ecuador, pp 72–108
Conand C (2004) Present status of world sea cucumber resources and utilization: an international
overview. In: Lovatelli A, Conand C, Purcell S, Uthicke S, Hamel JF, Mercier A (eds)
Advances in sea cucumber aquaculture and management. FAO Technical Paper 463, Rome,
pp 13–24
Cox A (1983) Ages of the Galápagos Islands: patterns of evolution in Galápagos organisms. In:
Bowman RI, Berson M, Leviton AE (eds) Patterns of evolution in Galápagos organisms. Am
Ass Advan Sci, San Francisco, pp 11–24
Cruz M, Gaibor N, Mora E, Jimenez R, Mair J (2003) The known and unknown about marine
biodiversity in Ecuador (continental and insular). Gayana 7:232–260
De Miras C, Andrade M, Carranza C (1996) Evaluación socioeconómica de la pesca experimental
de pepino de mar en Galápagos. Fundación Charles Darwin para las Islas Galápagos/
ORSTOM, Quito
De Paco C, Hurtado M, McFarland C, Martínez P, Reck G, Richmond R (1993) Evaluación de la
pesquería de pepinos de mar en las Islas Galápagos, Ecuador. Informe para la Unión Mundial
para la Naturaleza (UICN) como resultado de la Misión realizada a solicitud de la Fundación
Charles Darwin para las Islas Galápagos, Santa Cruz, Galápagos, Ecuador
Deichmann E (1938) Holothurians from the western coast of Lower California and Central
America, and from the Galápagos Islands; Eastern Pacific Expeditions of the New York
Zoological Society XVI. Zoologica 23:361–387
Deichmann E (1941) Deichmann E (1941) The Holothuroidea collected by the Velero III during
the years 1932 to 1938. Part I. Dendrochirota. Allan Hancock Pac Exp 8:61–195
Deichmann E (1958) The Holothuroidea collected by theVelero III and IV during the years 1932
to 1954. Part II. Aspidochirota. Allan Hancock Pac Exp 11:253–349
Denny M, Gaylord B (1996) Why the urchin lost its spines: hydrodynamic forces and
survivorship in three echinoids. J Exp Biol 199:717–729
Ebert TA (1971) A preliminary quantitative survey of the echinoid fauna of Kealakekua and
Honaunau Bays. Hawaii. Pac Sci 25:112–131
Ebert TA (1980) Relative growth of sea urchin jaws: an example of plastic resources allocation.
Bull Mar Sci 30:467–474
Edgar GJ, Kerrison L, Shepherd S, Toral-Granda V (2002a) Impacto del derrame del Jessica en la
plantas y animales intermareales y submareales someros. In: Edgar GJ (ed) Impactos
biológicos del derrame del Jessica en los ambientes de Galápagos. SPNG/CDRS, Santa Cruz,
Galápagos, pp 13–14
Edgar GJ, Kerrison L, Shepherd S, Toral-Granda V (2002a) Impacto del derrame del Jessica en la
plantas y animales intermareales y submareales someros. In: Edgar GJ (ed) Impactos
biológicos del derrame del Jessica en los ambientes de Galápagos. SPNG/CDRS, Santa Cruz,
Galápagos, pp 13–14
Edgar GJ, Banks SA, Fariña JM, Calvopiña M, Martínez C (2004) Regional biogeography of
shallow reef fish and macro-invertebrate communities in the Galápagos Archipelago.
J Biogeogr 31:1107–1124
Edgar G, Banks SA, Brandt M, Bustamante RH, Chiriboga A, Earle SA, Garske LE, Glynn PW,
Grove JS, Henderson S, Hickman CP, Miller KA, Rivera F, Wellington GM (2010) El Niño,
grazers and fisheries interact to greatly elevate extinction risk for Galápagos marine species.
Global Change Biol 16:2876–2890
Ellers O (1993) A mechanical model of growth in regular sea urchins: predictions of shape and a
developmental morphospace. Proc R Soc Lond B 254:123–129
226
J. Sonnenholzner et al.
