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Journal articles on the topic 'Dermochelys'

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1

Wilson, Laura E. "Rapid growth in Late Cretaceous sea turtles reveals life history strategies similar to extant leatherbacks." PeerJ 11 (February 10, 2023): e14864. http://dx.doi.org/10.7717/peerj.14864.

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Modern sea turtle long bone osteohistology has been surprisingly well-studied, as it is used to understand sea turtle growth and the timing of life history events, thus informing conservation decisions. Previous histologic studies reveal two distinct bone growth patterns in extant sea turtle taxa, with Dermochelys (leatherbacks) growing faster than the cheloniids (all other living sea turtles). Dermochelys also has a unique life history compared to other sea turtles (large size, elevated metabolism, broad biogeographic distribution, etc.) that is likely linked to bone growth strategies. Despit
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2

Ali, Muhammad, and Maslim Maslim. "Daya Tetas Telur Penyu Belimbing (Dermochelis Coriacea) Hasil Pemasaran Masyarakat Di Kawasan Pantai Lampuuk Kecamatan Lhoknga Kabupaten Aceh Besar." BIOTIK: Jurnal Ilmiah Biologi Teknologi dan Kependidikan 1, no. 1 (2015): 1. http://dx.doi.org/10.22373/biotik.v1i1.205.

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Tujuan penelitian adalah untuk (1) mengetahui waktu penetasan pertama dan terakhir telur penyu belimbing (Dermochelys coriacea), dan (2) mengetahui persentase penetasan telur penyu belimbing (Dermochelys coriacea) yang telah dipasarkan masyarakat kawasan Lampuuk Kecamatan Lhoknga Kabupaten Aceh Besar. Kegiatan penelitian dilakukan pada kawasan penangkaran penyu pantai Lampuuk Kecamatan Lhoknga Kabupaten Aceh Besar, pada tanggal 26 Desember 2012 pukul 10.00 WIB sampai tanggal 28 Februari 2013 pukul 21.00 Wib. Jumlah telur yang diperlakukan 20 butir, dalam sarang yang digali sedalam 75 cm. Metod
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3

Pieau, Claude, Frédérique Rimblot, Mireille Dorizzi, and Leandro Medrano. "Karyotype of the sea-turtle Dermochelys coriacea (Vandelli, 1761)." Amphibia-Reptilia 8, no. 2 (1987): 171–78. http://dx.doi.org/10.1163/156853887x00432.

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AbstractChromosomes of Dermochelys coriacea were prepared from kidney, spleen and lung cells of three neonates hatched from eggs incubated at 26.5 ± 0.5° C (a temperature yielding 100% phenotypic males). A study of the karyotype shows a diploid number of 56 chromosomes consisting of 14 meta- and submetacentrics, 10 telo- and subtelocentrics, and 32 microchromosomes. This karyotype, which is similar to those previously described for Chelonia mydas, Caretta caretta, and Eretmochelys imbricata, has been considered to be primitive for cryptodiran turtles. The implication of our results for the phy
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4

Vences Pérez, Suleima, Jhoana Díaz-Larrea, Juan Ricardo Cruz-Aviña, and Rubén Cabrera. "Análisis bibliométrico de Dermochelys coriacea en México utilizando Vosviewer y Scopus." Nexo Revista Científica 35, no. 02 (2022): 448–58. http://dx.doi.org/10.5377/nexo.v35i02.14622.

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En el presente estudio se realizó un análisis bibliométrico sobre la especie Dermochelys coriacea en la base de datos Scopus de los últimos diez años. Se utilizaron dos análisis de indagación (de co-autorias y co-presencias), a partir del software VOSviewer versión 1.6.17. Los ítems Dermochelys coriacea, y México se emplearon para la búsqueda de las publicaciones relevantes. Se encontraron un total de 7 artículos durante el periodo 2010 - 2021, en cada año se contó al menos con una publicación. El autor que más publicó sobre esta especie es García-Grajales (N=2) (Universidad del Mar) y el esta
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5

DELFINO, MASSIMO, TORSTEN M. SCHEYER, FRANCESCO CHESI, et al. "Gross morphology and microstructure of type locality ossicles of Psephophorus polygonus Meyer, 1847 (Testudines, Dermochelyidae)." Geological Magazine 150, no. 5 (2013): 767–82. http://dx.doi.org/10.1017/s001675681200091x.

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AbstractPsephophorus polygonus Meyer, 1847, the first fossil leatherback turtle to be named, was described on the basis of shell ossicles from the middle Miocene (MN6–7/8?) of Slovakia. The whereabouts of this material is uncertain but a slab on display at the Naturhistorisches Museum Wien is considered the neotype. We rediscovered further type locality ossicles in four European institutions, re-evaluated their gross morphology and described for the first time their microstructure by comparing them with Dermochelys coriacea, the only living dermochelyid turtle. The gross morphology is congruen
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6

Meylan, Anne, Peter Meylan, and Argelis Ruiz. "Nesting of Dermochelys coriacea in Caribbean Panama." Journal of Herpetology 19, no. 2 (1985): 293. http://dx.doi.org/10.2307/1564186.

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7

Frazier, J. "Semantics and the Leathery Turtle, Dermochelys coriacea." Journal of Herpetology 21, no. 3 (1987): 240. http://dx.doi.org/10.2307/1564492.

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8

Pattiselanno, Freddy, Natanael Natumnea, Kuswanto Kuswanto, et al. "MENDUKUNG UPAYA PERLINDUNGAN PENYU BELIMBIMG (Dermochelys coriacea) MELALUI PENDIDIKAN (PROGRAM KKN WAU-WEYAF, ABUN)." IGKOJEI: Jurnal Pengabdian Masyarakat 2, no. 2 (2021): 51. http://dx.doi.org/10.46549/igkojei.v2i2.209.

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 Wau-Weyaf Beach is the nesting ground of six species of turtles, including the world's largest turtle, the leatherback turtle (Dermochelys coriacea). The University of Papua (UNIPA) Manokwari, since 2009 has been directly involved in the turtle nesting area protection program by involving the students of UNIPA through the Community Service Program (KKN). In 2016, students carried out the KKN Program starting from June 30th to August 16th in Kampung Wau-Weyaf, one of the leatherback turtles’ egg-laying locations in Abun. This paper is a part of the Community Service Program which
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9

Rachman, Muhammad Alif, Ulfa Hansri Ar Rasyid, and Irma Dewiyanti. "Identifikasi Jenis Penyu Di Stasiun Konservasi Penyu Rantau Sialang, Aceh Selatan." Jurnal Ilmiah Mahasiswa Pertanian 7, no. 3 (2022): 606–11. http://dx.doi.org/10.17969/jimfp.v7i3.20865.

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Abstrak. Keberadaan populasi penyu mengalami penuruan yang disebabkan oleh berbagai faktor alami dan aktifitas manusia. Di Indonesia banyak pantai yang menjadi lokasi bertelur nya penyu, salah satunya yaitu Pantai Rantau Sialang yang terletak di Desa Pasie Lembang, Kluet Selatan, Aceh Selatan. Sejak tahun 2010 pantai Rantau Sialag telah dijadikan sebagai Stasiun Konservasi Penyu. Penelitian ini bertujuan untuk mengetahui jenis penyu yang melakukan pendaratan di Stasiun Konservasi Penyu Rantau Sialang. Penelitian ini dilakukan pada bulan Desember sampai dengan Januari 2022 bertempat di Stasiun
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10

Riaux-Gobin, Catherine, Andrzej Witkowski, John Patrick Kociolek, and Damien Chevallier. "Navicula dermochelycola sp. nov., presumably an exclusively epizoic diatom on sea turtles Dermochelys coriacea and Lepidochelys olivacea from French Guiana." Oceanological and Hydrobiological Studies 49, no. 2 (2020): 132–39. http://dx.doi.org/10.1515/ohs-2020-0012.

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AbstractEpizoic diatom communities were studied on four turtle species (Chelonia mydas L., Eretmochelys imbricata L., Lepidochelys olivacea Eschscholtz and Dermochelys coriacea Vandelli) from the Eastern Caribbean, the Equatorial West Atlantic and the South Pacific. In the present study, we focused on one taxon of Navicula Bory de Saint-Vincent, described here as a new taxon, which was found on seven individuals of Dermochelys coriacea and one individual of Lepidochelys olivacea in French Guiana. The new Navicula taxon was found neither on Chelonia mydas (83 specimens examined) nor Eretmochely
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11

Godley, B. J., M. J. Gaywood, R. J. Law, et al. "Patterns of Marine Turtle Mortality in British Waters (1992–1996) with Reference to Tissue Contaminant Levels." Journal of the Marine Biological Association of the United Kingdom 78, no. 3 (1998): 973–84. http://dx.doi.org/10.1017/s002531540004491x.

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Mortality patterns of marine turtles entangled in fishing gear, found dead at sea or stranded dead on and around the coast of Britain in the period 1992–1996 are described. Of a total of 38 dead turtles identified, 35 were leatherback turtles (Dermochelys coriacea) and three were loggerhead turtles (Caretta caretta). All D. coriacea were considered adults or subadults nearing sexual maturity. Six individuals were assessed as females, ten were classified as males and 19 were not sexed. Dermochelys coriacea (N=20 measured) ranged from 120 to 210 cm in curved carapace length (mean, 152 cm). The t
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12

Georges, JY, and S. Fossette. "Estimating body mass in leatherback turtles Dermochelys coriacea." Marine Ecology Progress Series 318 (August 3, 2006): 255–62. http://dx.doi.org/10.3354/meps318255.

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13

Eckert, Karen Lind. "Twinning in Leatherback Sea Turtle (Dermochelys coriacea) Embryos." Journal of Herpetology 24, no. 3 (1990): 317. http://dx.doi.org/10.2307/1564404.

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14

Dutton, Peter H., Brian W. Bowen, David W. Owens, Ana Barragan, and Scott K. Davis. "Global phylogeography of the leatherback turtle (Dermochelys coriacea)." Journal of Zoology 248, no. 3 (1999): 397–409. http://dx.doi.org/10.1111/j.1469-7998.1999.tb01038.x.

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15

Harms, C. A., S. A. Eckert, S. A. Kubis, M. Campbell, D. H. Levenson, and M. A. Crognale. "Field anaesthesia of leatherback sea turtles (Dermochelys coriacea)." Veterinary Record 161, no. 1 (2007): 15–21. http://dx.doi.org/10.1136/vr.161.1.15.

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16

Mizobe Alcívar, Cyntia, and Manuel Contreras López. "Anidación de tortugas marinas en la provincia de Manabí, Ecuador." La Técnica: Revista de las Agrociencias. ISSN 2477-8982, no. 12 (June 2, 2014): 38. http://dx.doi.org/10.33936/la_tecnica.v0i12.592.

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A partir de una interpretación de imágenes satelitales se identifican 69 playas de arena que reúnen las condiciones para la anidación de tortugas marinas a lo largo del litoral continental de la provincia de Manabí. Posteriormente se realizó una búsqueda bibliográfica extendida a información gris sobre antecedentes de anidación en el área de estudio, desde 1968 a enero de 2014. Los antecedentes bibliográficos se complementan con avistamientos inéditos de arribos y el registro de más de 500 nidos. Fue necesario confeccionar un listado con los nombres de las playas de arena del litoral de Manabí
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17

Frazier, J., Melitta D. Meneghel, and F. Achaval. "A Clarification on the Feeding Habits of Dermochelys coriacea." Journal of Herpetology 19, no. 1 (1985): 159. http://dx.doi.org/10.2307/1564430.

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18

Eckert, SA. "Distribution of juvenile leatherback sea turtle Dermochelys coriacea sightings." Marine Ecology Progress Series 230 (2002): 289–93. http://dx.doi.org/10.3354/meps230289.

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19

Stacy, B. A., C. J. Innis, P. Y. Daoust, et al. "Solitary Large Intestinal Diverticulitis in Leatherback Turtles (Dermochelys coriacea)." Veterinary Pathology 52, no. 4 (2014): 712–15. http://dx.doi.org/10.1177/0300985814549211.

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20

Kaplan, I. C. "A risk assessment for Pacific leatherback turtles (Dermochelys coriacea)." Canadian Journal of Fisheries and Aquatic Sciences 62, no. 8 (2005): 1710–19. http://dx.doi.org/10.1139/f05-121.

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Leatherback turtles (Dermochelys coriacea) are critically endangered in the eastern and western Pacific Ocean. Here, I estimate the magnitude of two likely causes of their decline: (i) bycatch by longline fishing vessels and (ii) coastal sources of mortality. I calculate point estimates of longline bycatch based on turtle catch rates from the US Hawaii-based fleet and effort data for the international Pacific longline fleet. I estimate the intrinsic growth rate of the population and the magnitude of coastal mortality by fitting a simple logistic model. In the western and central Pacific, coast
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21

Brudenall, Denise K., Ivan R. Schwab, and Kerstin A. Fritsches. "Ocular morphology of the Leatherback sea turtle (Dermochelys coriacea)." Veterinary Ophthalmology 11, no. 2 (2008): 99–110. http://dx.doi.org/10.1111/j.1463-5224.2008.00607.x.

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22

Lutcavage, Molly E., Peter G. Bushnell, and David R. Jones. "Oxygen Transport in the Leatherback Sea Turtle Dermochelys coriacea." Physiological Zoology 63, no. 5 (1990): 1012–24. http://dx.doi.org/10.1086/physzool.63.5.30152626.

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23

Edmonds, J. S., Y. Shibata, R. I. T. Prince, K. A. Francesconi, and M. Morita. "Arsenic compounds in tissues of the leatherback turtle, Dermochelys coriacea." Journal of the Marine Biological Association of the United Kingdom 74, no. 2 (1994): 463–66. http://dx.doi.org/10.1017/s0025315400039503.

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Examination of extracts of tissues of a leatherback turtle, Dermochelys coriacea (L.) (Reptilia: Dermochelyidae) by high-performance liquid chromatography inductively coupled plasma-mass spectrometry has demonstrated the presence of arsenobetaine, arsenocholine and inorganic arsenate in heart muscle and liver, and arsenobetaine and inorganic arsenate in pectoral muscle. Although arsenobetaine was the major form in all tissues, inorganic arsenate and arsenocholine accounted for 50% and 15% respectively of arsenic in aqueous extracts of the liver.
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24

Fretey, Jacques, Alexis Billes, and Manjula Tiwari. "Leatherback, Dermochelys coriacea, Nesting Along the Atlantic Coast of Africa." Chelonian Conservation and Biology 6, no. 1 (2007): 126–29. http://dx.doi.org/10.2744/1071-8443(2007)6[126:ldcnat]2.0.co;2.

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25

Hudson, David M., and Peter L. Lutz. "Salt Gland Function in the Leatherback Sea Turtle, Dermochelys coriacea." Copeia 1986, no. 1 (1986): 247. http://dx.doi.org/10.2307/1444922.

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26

Chua, Tock H., and J. I. Furtado. "Nesting Frequency and Clutch Size in Dermochelys coriacea in Malaysia." Journal of Herpetology 22, no. 2 (1988): 208. http://dx.doi.org/10.2307/1563999.

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27

Tucker, Anton D., and Nat B. Frazer. "Seasonal Variation in Clutch Size of the Turtle, Dermochelys coriacea." Journal of Herpetology 28, no. 1 (1994): 102. http://dx.doi.org/10.2307/1564689.

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28

Keinath, J. A., and J. A. Musick. "Movements and Diving Behavior of a Leatherback Turtle, Dermochelys coriacea." Copeia 1993, no. 4 (1993): 1010. http://dx.doi.org/10.2307/1447078.

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29

Davenport, J., V. Plot, J. Y. Georges, T. K. Doyle, and M. C. James. "Pleated turtle escapes the box - shape changes in Dermochelys coriacea." Journal of Experimental Biology 214, no. 20 (2011): 3474–79. http://dx.doi.org/10.1242/jeb.057182.

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30

Kinzelbach, Ragnar. "First record of the Leatherback Turtle,Dermochelys coriacea, from Jordan." Zoology in the Middle East 1, no. 1 (1986): 87–88. http://dx.doi.org/10.1080/09397140.1986.10637520.

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31

Al-Mohanna, Salim Y., and Robin H. Meakins. "First record of the Leatherback Turtle,Dermochelys coriacea,from Kuwait." Zoology in the Middle East 21, no. 1 (2000): 27–29. http://dx.doi.org/10.1080/09397140.2000.10637830.

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32

James, Michael C., Scott A. Eckert, and Ransom A. Myers. "Migratory and reproductive movements of male leatherback turtles (Dermochelys coriacea)." Marine Biology 147, no. 4 (2005): 845–53. http://dx.doi.org/10.1007/s00227-005-1581-1.

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33

Almeida, AP, SA Eckert, SC Bruno, et al. "Satellite-tracked movements of female Dermochelys coriacea from southeastern Brazil." Endangered Species Research 15, no. 1 (2011): 77–86. http://dx.doi.org/10.3354/esr00359.

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34

Obendorf, D. L., J. Carson, and T. J. McManus. "Vibrio damsela Infection in a Stranded Leatherback Turtle (Dermochelys coriacea)." Journal of Wildlife Diseases 23, no. 4 (1987): 666–68. http://dx.doi.org/10.7589/0090-3558-23.4.666.

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35

Crim, J. L., L. D. Spotila, J. R. Spotila, et al. "The leatherback turtle, Dermochelys coriacea, exhibits both polyandry and polygyny." Molecular Ecology 11, no. 10 (2002): 2097–106. http://dx.doi.org/10.1046/j.1365-294x.2002.01591.x.

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36

Eckert, Scott A., Karen L. Eckert, P. Ponganis, and G. L. Kooyman. "Diving and foraging behavior of leatherback sea turtles (Dermochelys coriacea)." Canadian Journal of Zoology 67, no. 11 (1989): 2834–40. http://dx.doi.org/10.1139/z89-399.

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Remote time–depth recorders (TDR) were deployed on six gravid leatherbacks nesting on Sandy Point, St. Croix. Dive behavior was monitored continuously for each turtle during internesting intervals ranging from 9 to 11 days. Dive duration averaged 9.9 min/dive (SD = 5.3, n = 5096); mean depth was 61.6 m (SD = 59.1, n = 5096). One turtle dived twice beyond the range of her TDR to depths we estimate >1000 m. Postdive surfacing intervals averaged 4.9 min/dive (SD = 13.1, n = 5090). Differences in mean dive depth, dive duration, and surface intervals among turtles were not attributable to differ
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37

Carriol, René-Pierre, and Wim Vader. "Occurrence of Stomatolepas elegans (Cirripedia: Balanomorpha) on a leatherback turtle from Finnmark, northern Norway." Journal of the Marine Biological Association of the United Kingdom 82, no. 6 (2002): 1033–34. http://dx.doi.org/10.1017/s0025315402006604.

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Stomatolepas elegans on a Dermochelys coriacea is reported at Seiland, Finnmark, northern Norway at the highest latitude recorded for this species or for any members of its subfamily (Platylepadidae), as well as for its turtle host. The distribution of the species of Stomatolepas is given and their taxonomy is briefly discussed. A recording of data on the different species of Stomatolepas gives the distribution on the host as well as the identity and the collecting locality of the latter.
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38

Mrosovsky, Nicholas, Jacques Fretey, Jean Lescure, Claude Pieau, and Frédérique Rimblot. "Sexual differentiation as a function of the incubation temperature of eggs in the sea-turtle Dermochelys coriacea (Vandelli, 1761)." Amphibia-Reptilia 6, no. 1 (1985): 83–92. http://dx.doi.org/10.1163/156853885x00218.

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AbstractEggs of Dermochelys coriacea were incubated in the laboratory at different constant temperatures between 27 and 32°C up to hatching. The genital system of 72 neonates and 11 embryos was dissected and processed for histological study. All the individuals from the 27, 28 and 28.75°C incubations were phenotypic males. In the testes, the medulla was voluminous and very dense, composed of many epithelial cords, some enclosing germ cells, whereas the surface was covered by a thin layer of epithelial cells between which germ cells were still visible. The Müllerian ducts were in the process of
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39

Northmore, D. P. M., and A. M. Granda. "Ocular dimensions and schematic eyes of freshwater and sea turtles." Visual Neuroscience 7, no. 6 (1991): 627–35. http://dx.doi.org/10.1017/s0952523800010415.

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AbstractMeasurements were made of the ocular dimensions from living and frozen eyes of one species of freshwater turtle, Pseudemys scripta elegans, and of three species of marine turtles, Chelonia mydas, Dermochelys cariacea, and Eretmochelys imbricata. Estimates of refractive error by retinoscopy were also obtained with eyes in air and under water. The results suggest that unaccommodated eyes of all four species are approximately emmetropic in air but strongly hyperopic in water. Schematic eyes were calculated for each species in both air and water.
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Retawimbi, Aditano Yani. "PENGARUH TRADISI TABOB TERHADAP PENYU BELIMBING DI KEPULAUAN KEI, MALUKU TENGGARA." Sabda : Jurnal Kajian Kebudayaan 6, no. 1 (2011): 40. http://dx.doi.org/10.14710/sabda.v6i1.13299.

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One of the traditions of the society of Nu Fit The Kei, Southeast Maluku, which is Tabob to perform a ritual to hunt and consume the meat of the species of leatherbacks Dermochelys coriacea (leatherback turtle). More recently, the tradition of tabob examined became one of the causes of the declining population of leatherbacks, so this turtle species need protection to keep it from extinction. In this article in question is, does the ritual of tabob significantly affect a decrease in the number of population of leatherbacks.
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41

Chua, Tock H. "Nesting Population and Frequency of Visits in Dermochelys coriacea in Malaysia." Journal of Herpetology 22, no. 2 (1988): 192. http://dx.doi.org/10.2307/1563998.

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KAMEZAKI, NAOKI, KATSUKI OKI, KOUJIRO MIZUNO, TAICHIRO TOJI, and OSAMU DOI. "First Nesting Record of the Leatherback Turtle, Dermochelys coriacea, in Japan." Current herpetology 21, no. 2 (2002): 95–97. http://dx.doi.org/10.5358/hsj.21.95.

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43

Binckley, Christopher A., James R. Spotila, Kathryne S. Wilson, and Frank V. Paladino. "Sex Determination and Sex Ratios of Pacific Leatherback Turtles, Dermochelys coriacea." Copeia 1998, no. 2 (1998): 291. http://dx.doi.org/10.2307/1447425.

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44

James, Michael C., Ransom A. Myers, and C. Andrea Ottensmeyer. "Behaviour of leatherback sea turtles, Dermochelys coriacea , during the migratory cycle." Proceedings of the Royal Society B: Biological Sciences 272, no. 1572 (2005): 1547–55. http://dx.doi.org/10.1098/rspb.2005.3110.

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Leatherback sea turtles, Dermochelys coriacea , undertake broad oceanic movements. While satellite telemetry has been used to investigate the post-nesting behaviour of female turtles tagged on tropical nesting beaches, long-term behavioural patterns of turtles of different sexes and sizes have not been described. Here we investigate behaviour for 25 subadult and adult male and female turtles satellite-tagged in temperate waters off Nova Scotia, Canada. Although sex and reproductive condition contributed to variation in migratory patterns, the migratory cycle of all turtles included movement be
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45

Burns, Thomas J., Dominic J. McCafferty, and Malcolm W. Kennedy. "Core and body surface temperatures of nesting leatherback turtles (Dermochelys coriacea)." Journal of Thermal Biology 51 (July 2015): 15–22. http://dx.doi.org/10.1016/j.jtherbio.2015.03.001.

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46

Oliver-Guimerá, A., M. Lourdes Abarca, M. Cuvertoret-Sanz, and M. Domingo. "Fatal Photobacterium damselae-induced enteritis in a leatherback turtle Dermochelys coriacea." Diseases of Aquatic Organisms 135, no. 2 (2019): 151–56. http://dx.doi.org/10.3354/dao03388.

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47

Donnelly, Kyle, Thomas B. Waltzek, James F. X. Wellehan, Nicole I. Stacy, Maria Chadam, and Brian A. Stacy. "Mycobacterium haemophilum infection in a juvenile leatherback sea turtle (Dermochelys coriacea)." Journal of Veterinary Diagnostic Investigation 28, no. 6 (2016): 718–21. http://dx.doi.org/10.1177/1040638716661746.

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48

Mello Fonseca, Juliana, Fabio Soares Cruz, Mariana Soares, Pedro Mattos Pereira de Souza, Thiago Leal Tavares, and Raquel De Azeredo Muniz. "Evidence of Leatherback Turtles (Dermochelys coriacea) in Brazilian subtropical coastal waters." Reptiles & Amphibians 30, no. 1 (2023): e18263. http://dx.doi.org/10.17161/randa.v30i1.18263.

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49

Kaczyńska, Elwira. "Fauna wyspy Taprobane i Oceanu Indyjskiego w relacji Klaudiusza Eliana (NA XVI 17–18)." Zoophilologica, no. 2 (14) (September 6, 2024): 1–14. https://doi.org/10.31261/zoophilologica.2024.14.07.

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Artykuł zawiera opatrzony komentarzem polski przekład dwóch kolejnych rozdziałów dzieła Klaudiusza Eliana pt. O właściwościach zwierząt (De natura animalium XVI 17–18), poświęconych wyspie Sri Lanka (w starożytności zwanej Taprobane, potem Cejlon), Rozdział XVI 17 opisuje olbrzymie żółwie morskie, identyfikowane z żółwiami skórzastymi (Dermochelys coriacea Vandelli), zabijane przez miejscową ludność. Rozdział XVI 18 przedstawia wielkie słonie cejlońskie (Elephas maximus maximus L.), a także potwory morskie, żyjące w Oceanie Indyjskim. Zawarty w tym rozdziale zwięzły opis diugonia przybrzeżnego
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50

Lescure, Jean, Sabine Renous, Jean-Pierre Gasc, and Vincent Bels. "Intervention des membres dans la locomotion et le creusement du nid chez la tortue luth." Amphibia-Reptilia 10, no. 4 (1989): 355–69. http://dx.doi.org/10.1163/156853889x00016.

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AbstractLa tortue luth (Dermochelys coriacea) adaptée à la vie pélagique, possède aussi un déplacement terrestre tout à fait original qui implique un système économique de traction du corps. Un répertoire précis de mouvements est utilisé: mouvements périodiques et synchrones des membres antérieurs et postérieurs. Les mouvements qui interviennent dans le balayage de l'aire de ponte appartiennent également à ce même répertoire. Par contre, les mouvements de creusement du nid, qui correspondent à une alternance d'activité des membres postérieurs suggèrent la réactivation du patron moteur utilisé
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