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Fig. 19 in The Ecology And Migrations Of Sea Turtles 8. Tests Of The Developmental Habitat Hypothesis

Fig. 19. Size distribution of Chelonia mydas at Zapatilla Cays, Bocas del Toro Province, Panama. A, Captures made during 13 migratory season samples (May, June, July, and September), 1990–2005. B, Captures from one nonmigratory season sample, January, 1994. Minimum adult size, indicated by the dashed line, is based on laparoscopy of 178 C. mydas in Bocas del Toro, Panama, and size criteria developed from laparoscopy data (this study; Meylan and Meylan, unpubl. data).

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Fig. 20 in The Ecology And Migrations Of Sea Turtles 8. Tests Of The Developmental Habitat Hypothesis

Fig. 20. Carapace length (SCLmin), weight, and maturity status for 69 immature Chelonia mydas from Zapatilla Cays, Bocas del Toro Province, Panama. For explanation of maturity stages, see Methods. Maturity status is based on laparoscopy. Minimum adult size, indicated by the dashed line, is based on laparoscopy of 178 C. mydas in Bocas del Toro, Panama, and size criteria developed from laparoscopy data (this study; Meylan and Meylan, unpubl. data).

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Fig. 21 in The Ecology And Migrations Of Sea Turtles 8. Tests Of The Developmental Habitat Hypothesis

Fig. 21. Carapace length, weight, and maturity status for Eretmochelys imbricata from Zapatilla Cays, Bocas del Toro Province, Panama (n 5 29), and Mona Island, Puerto Rico (n 5 16). Maturity status was determined by laparoscopy or nesting. For explanation of maturity stages, see methods. The minimum size at maturity indicated by the dashed line (67 cm SCLmin), is based on laparoscopies and observations of ''soft plastra'' in reproductive males (Wibbels et al., 1991a; see Discussion).

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Fig. 25 in The Ecology And Migrations Of Sea Turtles 8. Tests Of The Developmental Habitat Hypothesis

Fig. 25. Size structure for Eretmochelys imbricata on four foraging grounds that represent, at least in part, benthic developmental habitat for this species. Minimum adult size, indicated by the dashed line, for A, B, and C is from this study (see discussion), minimum adult size for D is from Limpus (1992). Sources are: A, Leon and Diez (1999); B, Van Dam and Diez (1998b); C, Boulon (1994); D, Limpus (1992). Note that turtle size is given as straight carapace length (SCL) in A–C and as curved carapace length (CCL) in D. Limpus (1992) gives the following relationship for CCL and SCL, SCL 5 CCL (0.936) + 0.403.

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Fig. 26 in The Ecology And Migrations Of Sea Turtles 8. Tests Of The Developmental Habitat Hypothesis

Fig. 26. Size structure for Caretta caretta on four foraging grounds that represent, at least in part, benthic developmental habitat. Minimum adult size, indicated by the dashed line, is from Kaufmann (1975). Sources are: A, Ehrhart et al., (1996); B, Ruckdeschel and Zug (1982); C, Musick and Limpus (1996); and D, Henwood (1987).

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Fig. 17 in The Ecology And Migrations Of Sea Turtles 8. Tests Of The Developmental Habitat Hypothesis

Fig. 17. Size distribution of 81 Caretta caretta at first capture near Secretary, Panama (1987–1997). SCLmin for seven turtles calculated from standard carapace length (SCLn-t); see table 9.

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Fig. 18 in The Ecology And Migrations Of Sea Turtles 8. Tests Of The Developmental Habitat Hypothesis

Fig. 18. Carapace length (SCLmin), weight, and maturity status as determined by laparoscopy for 22 Caretta caretta from Bocas del Toro Province and the Comarca Ngöbe-Bugle´, Panama. Seventeen were captured at the Secretary study site and five at the Zapatilla Cays study site. For explanation of maturity stages, see methods. Minimum adult size, indicated by dashed line, based on Kaufmann (1975; see Discussion).

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Fig. 16 in The Ecology And Migrations Of Sea Turtles 8. Tests Of The Developmental Habitat Hypothesis

Fig. 16. International recaptures of 36 immature Chelonia. mydas and 6 immature Caretta caretta (in parentheses) tagged in the Bocas del Toro area of Panama. Turtles tagged at both the Secretary and Zapatilla Cays study sites are shown.

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Fig. 15 in The Ecology And Migrations Of Sea Turtles 8. Tests Of The Developmental Habitat Hypothesis

Fig. 15. Carapace length (SCLmin), weight, and maturity status for 56 Chelonia mydas captured at Secretary, Panama, (1989–1997). For explanation of stages of maturity status, see Methods. Minimum adult size, indicated by the dashed line, is based on laparoscopy of 178 C. mydas in Bocas del Toro, Panama, and size criteria developed from laparoscopy data (this study; Meylan and Meylan, unpubl. data).

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Fig. 14 in The Ecology And Migrations Of Sea Turtles 8. Tests Of The Developmental Habitat Hypothesis

Fig. 14. Size distribution of all Chelonia mydas captured (A) at Secretary, Chiriqui Lagoon, Panama, 1989–1997, and (B) immature C. mydas captured at the Zapatilla Cays, Panama, 1990– 2005. C, Size at last capture versus time in years to foreign recapture of 26 C. mydas captured at these site (y 5 22.830x + 233.75, r 2 5 0.4996, P,0.001 Minimum adult size, indicated by the dashed line, is based on laparoscopy of 178 C. mydas in Bocas del Toro, Panama, and size criteria developed from laparoscopy data (this study; Meylan and Meylan, unpubl. data).

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Fig. 13 in The Ecology And Migrations Of Sea Turtles 8. Tests Of The Developmental Habitat Hypothesis

Fig. 13. Size distribution of Eretmochelys imbricata from Bermuda. A, Individuals captured alive by scuba, snorkeling, or in the entrapment net (1970–2005). B, Stranded individuals that were dead, injured, sick, or trapped in marine debris (1980–2005).

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Fig. 3 in The Ecology And Migrations Of Sea Turtles 8. Tests Of The Developmental Habitat Hypothesis

Fig. 3. Study site at Secretary, Chiriqui Lagoon, Ngöbe-Buglé Comarca, Panama. Set nets were deployed on all labeled banks.

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Fig. 9 in The Ecology And Migrations Of Sea Turtles 8. Tests Of The Developmental Habitat Hypothesis

Fig. 9. The time in years from first capture to last recapture for 609 Chelonia mydas recaptured in Bermuda waters through August 2005. Time elapsed was calculated as number of months divided by 12, rounded to nearest year.

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Fig. 2 in The Ecology And Migrations Of Sea Turtles 8. Tests Of The Developmental Habitat Hypothesis

Fig. 2. The islands of Bermuda and the adjacent Bermuda Platform. Labeled sites indicate localities that were regularly sampled with an entrapment net by the Bermuda Turtle Project between 1990 and 2005.

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Fig. 1 in The Ecology And Migrations Of Sea Turtles 8. Tests Of The Developmental Habitat Hypothesis

Fig. 1. Life stage model of Chelonia mydas redrawn from Carr et al. (1978: fig. 2). Terminology for the two earliest stages has been updated.

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Fig. 12 in The Ecology And Migrations Of Sea Turtles 8. Tests Of The Developmental Habitat Hypothesis

Fig. 12. Satellite transmission history of a large subadult (78.6 cm SCLmin) Chelonia mydas from Bermuda. Argos locations displayed are the highest location class per day, selected from the hybrid output of the Douglas Argos filter algorithm. This output includes points passing the minimum redundant distance filter supplemented with points passing the distance angle rate filter during periods of migration.

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Fig. 5 in The Ecology And Migrations Of Sea Turtles 8. Tests Of The Developmental Habitat Hypothesis

Fig. 5. Size composition of Chelonia mydas in Bermuda. A, All turtles captured with an entrapment net from 1968–2005 (excludes recaptures). B, A subsample of C. mydas from Bermuda for which sex and maturity status were determined using laparoscopy; all animals were immature. C, Size distribution of 141 C. mydas that stranded in Bermuda between 1992 and 2005. D, Size (SCLmin) at last capture versus time in years to foreign recapture of 53 C. mydas tagged in Bermuda. Minimum adult size, indicated by the dashed line, is based on laparoscopy of 178 C. mydas in Bocas del Toro, Panama (this study; Meylan and Meylan, unpubl. data).

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Fig. 11 in The Ecology And Migrations Of Sea Turtles 8. Tests Of The Developmental Habitat Hypothesis

Fig. 11. Geographic distribution of 88 foreign tag returns (numbers in circles) through 2005 of Chelonia mydas originally tagged in Bermuda. The star indicates the only known nesting by a C. mydas tagged in Bermuda. This turtle was tagged in November 1992 and nested near Cancun, Mexico, during the summer of 2006.

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Fig. 4 in The Ecology And Migrations Of Sea Turtles 8. Tests Of The Developmental Habitat Hypothesis

Fig. 4. Study site at Zapatilla Cays, Bocas del Toro Province, Panama. Solid circles indicate sites sampled with nets between 1990 and 2005. Point O' Reef, Peachy, and Comfort are in the Caribbean Sea and were fished with ''ocean sets.'' All remaining sites are within Chiriqui Lagoon and were fished with standard set nets (see Methods).

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Fig. 6 in The Ecology And Migrations Of Sea Turtles 8. Tests Of The Developmental Habitat Hypothesis

Fig. 6. Carapace length (SCLmin), weight, and maturity status for 131 Chelonia mydas from Bermuda that were examined laparoscopically. Minimum adult size, indicated by the dashed line, is based on laparoscopy of 178 C. mydas in Bocas del Toro, Panama (this study; Meylan and Meylan, unpubl. data). For explanation of stages, see Methods.

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International Brain Laboratory public data

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OpenNeuro

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