Habitat partitioning between prey soldier crab Mictyris brevidactylus and predator fiddler crab Uca perplexa
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[1] D. Hughes. Behavioural and ecological investigations of the crabOcypode ceratophthalmus (Crustacea: Ocypodidae) , 2009 .
[2] T. Detto,et al. Hunting and predation in a fiddler crab , 2009, Journal of Ethology.
[3] N. O’Connor,et al. Adult fiddler crabs Uca pugnax (Smith) enhance sediment-associated cues for molting of conspecific megalopae , 2006 .
[4] S. Takeda. Behavioural evidence for body colour signaling in the fiddler crab Uca perplexa (Brachyura: Ocypodidae) , 2006 .
[5] M. Murai,et al. Predation and cannibalism by the male fiddler crabUca tetragonon , 1995, Journal of Ethology.
[6] Satoshi Takeda,et al. Sexual differences in behaviour during the breeding season in the soldier crab (Mictyris brevidactylus) , 2005 .
[7] M. Murai,et al. Adaptations for feeding on rock surfaces and sandy sediment by the fiddler crabs (Brachyura: Ocypodidae) Uca tetragonon(Herbst, 1790) and Uca vocans(Linnaeus, 1758) , 2004, Hydrobiologia.
[8] Minoru Murai,et al. MICROHABITAT USE BY THE SOLDIER CRAB MICTYRIS BREVIDACTYLUS (BRACHYURA: MICTYRIDAE): INTERCHANGEABILITY OF SURFACE AND SUBSURFACE FEEDING THROUGH BURROW STRUCTURE ALTERATION , 2004 .
[9] R. Altevogt. Untersuchungen zur biologie, ökologie und physiologie indischer winkerkrabben , 2004, Zeitschrift für Morphologie und Ökologie der Tiere.
[10] D. McLain,et al. Predation by red-jointed fiddler crabs on congeners: interaction between body size and positive allometry of the sexually selected claw , 2003 .
[11] O. Iribarne,et al. The SW Atlantic burrowing crab Chasmagnathus granulatus Dana affects the distribution and survival of the fiddler crab Uca uruguayensis Nobili , 2003 .
[12] M. Murai,et al. Morphological and behavioural adaptations to the rocky substrate by the fiddler crab Uca panamensis (Stimpson, 1859) : Preference for feeding substratum and feeding mechanism , 2003 .
[13] M. Nobbs. Effects of vegetation differ among three species of fiddler crabs (Uca spp.) , 2003 .
[14] M. Rosenberg. Fiddler crab claw shape variation : a geometric morphometric analysis across the genus Uca (Crustacea : Brachyura : Ocypodidae) , 2002 .
[15] D. McLain,et al. INTRAGENERIC PREDATION BY FIDDLER CRABS IN SOUTH CAROLINA , 2002 .
[16] M. Chapman,et al. Effect of boardwalks on the semaphore crab Heloecius cordiformis in temperate urban mangrove forests , 1998 .
[17] M. Nishida,et al. Molecular phylogeny and evolution of unique mud-using territorial behavior in ocypodid crabs (Crustacea: Brachyura: Ocypodidae). , 1998, Molecular biology and evolution.
[18] M. Murai,et al. MATING BEHAVIOR OF UCA LACTEA PERPLEXA (DECAPODA: OCYPODIDAE) , 1998 .
[19] J. Levinton,et al. Functional differences between the major and minor claws of fiddler crabs (Uca, family Ocypodidae, Order Decapoda, Subphylum Crustacea): A result of selection or developmental constraint? , 1995 .
[20] R. Kneib,et al. Effects of biogenic structure on prey consumption by the xanthid crabs Eurytium limosum and Panopeus herbstii in a salt marsh , 1994 .
[21] J. Levinton,et al. The relationship of closing force to body size for the major claw of Uca pugnax (Decapoda: Ocypodidae) , 1993 .
[22] B. Wolfrath. Field experiments on feeding of European fiddler crab ilea tangeri , 1992 .
[23] Y. Henmi. Factors influencing drove formation and foraging efficiency in Macrophthalmus japonicus (De Haan) (Crustacea: Ocypodidae). , 1989 .
[24] Y. Kurihara,et al. Factors affecting the burrowing behaviour of Helice tridens (Grapsidae) and Macrophthalmus japonicus (Ocypodidae) in an estuary of northeast Japan , 1989 .
[25] Y. Kurihara,et al. The distribution and abundance of Helice tridens (De Haan) burrows and substratum conditions in a northeastern Japan salt marsh (Crustacea: Brachyura) , 1987 .
[26] T. Lasiak,et al. Microbenthos, meiobenthos and fiddler crabs: trophic interactions in a tropical mangrove sediment , 1986 .
[27] F. Vogel. COMPARATIVE AND FUNCTIONAL MORPHOLOGY OF THE SPOON-TIPPED SETAE ON THE SECOND MAXILLIPEDS IN DOTILLA STIMPSON, 1858 (DECAPODA, BRACHYURA, OCYPODIDAE)1) , 1984 .
[28] M. Bertness,et al. The distribution and dynamics of Uca pugnax (Smith) burrows in a new England salt marsh , 1984 .
[29] S. Y. Newell,et al. A study of particle ingestion by three fiddler crab species foraging on sandy sediments , 1982 .
[30] M. Murai,et al. Some beavioral characteristics related to food supply and soil texture of burrowing habitats observed on Uca vocans vocans and U. lactea perplexa , 1982 .
[31] K. Wada. Substratum preference and feeding activity in Scopimera globosa DE HAAN and Ilyoplax pusillus (DE HAAN) (Crustacea : Ocypodidae). , 1982 .
[32] C. Montague. A natural history of temperate western Atlantic fiddler crabs (genus Uca) with reference to their impact on the salt marsh [Uca pugnax, Uca pugilator, Uca minax] , 1980 .
[33] P. Ringold. Burrowing, root mat density, and the distribution of fiddler crabs in the eastern United States , 1979 .
[34] D. Jones,et al. Factors affecting the distribution of the genus Uca (Crustacea: Ocypodidae) on an East African shore , 1978 .
[35] T. Wolcott,et al. Ecological rôle of ghost crabs, Ocypode quadrata (Fabricius) on an ocean beach: Scavengers or predators? , 1978 .
[36] Y. Nakasone. CRAB ZONATION IN THE YUHI RIVER, OKINAWA ISLAND , 1977 .
[37] J. Crane. Crustaceans. (Book Reviews: Fiddler Crabs of the World. Ocypodidae: Genus Uca) , 1975 .
[38] A. Sasekumar. Distribution of macrofauna on a Malayan mangrove shore , 1974 .
[39] W. Macnae. A General Account of the Fauna and Flora of Mangrove Swamps and Forests in the Indo-West-Pacific Region , 1969 .
[40] J. Teal. Energy Flow in the Salt Marsh Ecosystem of Georgia , 1962 .
[41] J. Teal. DISTRIBUTION OF FIDDLER CRABS IN GEORGIA SALT MARSHES , 1958 .
[42] F. McNeill. Studies in Australian carcinology. No. 2 , 1926 .