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237 results for “Periclimenaeus”
Fig. 1 in Periclimenaeus djiboutensis Bruce 1970
Fig. 1. Live male specimen of Rhicnosthetus chagasi sp. nov., from Fazenda São Nicolau, Cotriguaçu, Mato Grosso, Brazil. Photographed by: Dr. Domingos de Jesus Rodrigues.
Fig. 4 in Fig. 17. Periclimenaeus djiboutensis Bruce, 1970, ovigerous female specimen pocl 3.7 in Two New Species and a Further Country Record of the Caridean Shrimp Genus Borradaile, 1915 from Korea (Decapoda: Palaemonidae).
Fig. 4. Distribution of the Olpiidae, Cheiridiidae, Atemnidae, Garypinidae, Geogarypidae, Cheliferidae, Chernetidae and Withiidae taxa in Albania. A, Amblyolpium dollfusi (purple colour), Apocheiridium ferum (grey colour), Atemnus syriacus (red colour), Calocheiridius libanoticus (blue colour), Geogarypus italicus (green colour), Geogarypus minor (orange colour), Withius piger (yellow colour). B, Beierochelifer peloponnesiacus (blue colour), Chelifer cancroides (red colour), Dactylochelifer latreillii (yellow colour), Hysterochelifer meridianus (green colour). C, Hysterochelifer cyprius (green colour), Rhacochelifer maculatus (yellow colour), Rhacochelifer peculiaris (red colour). D, Dendrochernes cyrneus (yellow colour), Dinocheirus panzeri (orange colour), Lamprochernes chyzeri (green colour), Lamprochernes nodosus (grey colour), Lasiochernes graecus (purple colour), Pselaphochernes lacertosus (red colour), Pselaphochernes scorpioides (blue colour). Circles indicate the published data, stars indicate the new data. For the locality codes, see table 1.
Fig. 2 in Fig. 17. Periclimenaeus djiboutensis Bruce, 1970, ovigerous female specimen pocl 3.7 in Two New Species and a Further Country Record of the Caridean Shrimp Genus Borradaile, 1915 from Korea (Decapoda: Palaemonidae).
Fig. 2. Distribution of the Chthoniidae and Neobisiidae taxa in Albania. A, Chthonius gjirokastri (red colour), Chthonius jonicus (orange colour), Chthonius rhodochelatus (green colour), Chthonius tenuis (blue colour), Globochthonius argirocastronis (yellow colour). B, Ephippiochthonius rogoi (red colour), Ephippiochthonius serbicus (green colour), Ephippiochthonius tuberculatus (yellow colour). C, Neobisium albanicum (purple colour), Neobisium doderoi (orange colour), Neobisium georgecastriotae (yellow colour), Neobisium latellai (red colour), Neobisium sylvaticum (blue colour), Neobisium valsuanii (green colour), Neobisium cf. vjetrenicae (brown colour), Neobisium sp. 1 (grey colour). D, Neobisium cephalonicum (red colour), Neobisium fuscimanum (blue colour), Neobisium hellenum (grey colour), Neobisium sublaeve (orange colour), Neobisium sp. 2 (green colour), Roncus lonai (purple colour), Roncus lubricus (brown colour), Roncus spp. (yellow colour). Circles indicate the published data, stars indicate the new data. For the locality codes, see table 1.
Fig. 5 in Fig. 1 in Fig. 10 in Periclimenaeus apomonosi Park & De Grave 2021, sp. nov.
Fig. 5. Monthly changes in the intersexual size dimorphisms of the chelipeds and pleons of the porcellanid crab Petrolisthes japonicus specimens, collected from April 2008 to March 2009. Intersexual size dimorphism was represented by the coefficient estimates for the explanatory variable, including the Sex (lnCW × Sex), in the log-transformed allometric growth equation model: lny ~ lnCW + lnCW × Sex, where CW is carapace width, y is the measurement for another body part (cheliped propodus length and width, and pleon width) and Sex is female or male. The coefficient estimate of lnCW × Sex was the output for males, representing changes in the response variable relative to the baseline category (female) (Tables S1–S3), and thus also representing the degree of difference in the allometric growth coefficient between males and females. Vertical lines indicate standard errors. The dotted bars indicates the estimates that were not significantly different between sexes. The data for October and November were pooled because of the small sample size in November.
Fig. 6 in Periclimenaeus djiboutensis Bruce 1970
Fig. 6. Rhicnosthetus chagasi sp. nov. (holotype, IBSP 7782), dorsal view of anterior (a), midbody (b) and posterior (c) body rings. Scale bars = 2 mm. Left gonopod. (d), mesal view; (e), ventral view; (f), ectal view. Scale bars: 1 mm. Abbreviations: AP, acropodital process; PfP, prefemoral process; SG, seminal groove; SP, spiniform process.
Fig. 18. A in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 18. A, Genealogical network for the COI haplotypes observed within the clades of Minuca burgersi. Unlabelled nodes indicate inferred haplotypes not found in the sampled population. Sizes of circles and squares are proportional to the frequency of the haplotype. For haplotype names, see table 1.
Fig. 16 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 16. Think-plate spline deformation plots showing the variation described by PC 1 (left) and PC 2 (right) shown in figure 15D–F.
Fig. 15 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 15. Size distributions and principal components analysis of the landmark data. Size was measured as the natural log of the centroid size of the carapace. Boxplots (A–C) show median and interquartile range of size for each group, with whiskers extending 1.5 times the interquartile, and dots representing outliers beyond this range. Panels D–F show the first two principal components with different codings for each group. (A, D) Region. (B, E) Substrate. (C, F) Salinity.
Fig. 14 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 14. Relationship between LCL and PPR ratio in male Minuca burgersi in both Caribbean and South American populations. Composite data calculated as average PPR ratio for each 1 mm interval of LCL. Quadratic regression: South America y = 0.5516 + 0.0068 x – 0.00010 x2, r = 0.8900; Caribbean y = 0.4604 + 0.01431 x – 0.00026 x2, r = 0.9746.
Fig. 11 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 11. Relationship between carapace width (CW) and length (CL) in male Minuca burgersi from both Caribbean (N = 521) and South American (N = 401) populations. Data points calculated as average CL for each 1 mm interval of CW.
Fig. 12 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 12. Relationship between carapace width (CW) and large cheliped length (LCL) in male Minuca burgersi in both Caribbean and South American populations. Data points calculated as average LCL for each 1 mm interval of CW.
Fig. 8 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 8. Relationship between CW and CL in female Minuca burgersi in both Caribbean (N = 96) and South American (N = 108) populations. Data points calculated as average CL for each 1 mm interval of CW.
Fig. 7 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 7. Comparison of carapace width (CW) in male Minuca burgersi. A, Caribbean populations (N = 526), B, South American (N = 401). Arrows indicate average CW.
Fig. 3. First pseudoscorpion records for Albania from the families Chthoniidae and Garypinidae. A in Fig. 17. Periclimenaeus djiboutensis Bruce, 1970, ovigerous female specimen pocl 3.7 in Two New Species and a Further Country Record of the Caridean Shrimp Genus Borradaile, 1915 from Korea (Decapoda: Palaemonidae).
Fig. 3. First pseudoscorpion records for Albania from the families Chthoniidae and Garypinidae. A, Chthonius jonicus (female). B, Chthonius rhodochelatus (female). C, Chthonius tenuis (male). D, Ephippiochthonius serbicus (female). E, Ephippiochthonius tuberculatus (female). F, Amblyolpium dollfusi (male). Scale bars = 1 mm.
Fig. 6 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 6. Comparison of carapace width (CW) in female Minuca burgersi. A, Caribbean populations (N = 96); B, South American populations (N = 108). Arrows indicate mean values.
Fig. 1 in Fig. 17. Periclimenaeus djiboutensis Bruce, 1970, ovigerous female specimen pocl 3.7 in Two New Species and a Further Country Record of the Caridean Shrimp Genus Borradaile, 1915 from Korea (Decapoda: Palaemonidae).
Fig. 1. Map of all studied localities in Albania. Red circles indicate the published data, yellow stars indicate the new data. For the locality codes, see table 1.
Fig. 9 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 9. Relationship between carapace width and small cheliped length in female Minuca burgersi from Caribbean and South American populations. Data points calculated as average SCL for each 1 mm interval of CW.
Fig. 3 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 3. Structure of major cheliped in Minuca burgersi. A, Relationship of pollex (PoL) and manus to total propodus length (PrL). B, General cheliped states: leptochelous (upper) and brachychelous (lower). Scale bar = 5.0 mm.
Fig. 1 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 1. Approximate location (●) of 105 sample sites for Minuca burgersi in the USA, Mexico, Caribbean and eastern South America. At some dots cover several locations. See table S1a and S1b for exact locations.
Fig. 17. A in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 17. A Bayesian inference (BI) tree for populations of Minuca burgersi, based on the combined 16S rDNA and cytochrome oxidase I. Probability values at the nodes represent support values for BI and maximum likelihood (ML). For haplotype names, see table 1.
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