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237 results for “Periclimenaeus”
Fig. 5 in Periclimenaeus djiboutensis Bruce 1970
Fig. 5. Rhicnosthetus coriaceus (MNRJ 11625), left vulva. (a) ventral view; (b) latero-ventral view; (c) detail of the medial region, ventral view; (d) detail of the apex, ventral view. Scale bars: a = 300 µm; b = 400 µm; c–d = 100 µm. Abbreviations: EV, external valve; Op, operculum; IV, internal valve.
Fig. 4 in Fig. 1 in Fig. 10 in Periclimenaeus apomonosi Park & De Grave 2021, sp. nov.
Fig. 4. Growth in the pleon width relative to the carapace width in specimens of the porcellanid crab Petrolisthes japonicus, collected monthly from April 2008 (A) to March 2009 (K). Data are shown for females, ovigerous females and males. The data for October and November were pooled because of the small sample size in November.
Fig. 3 in Periclimenaeus djiboutensis Bruce 1970
Fig. 3. Rhicnosthetus rondoni (CZUFMT MYR 864), left gonopod. (a) mesal view; (b) detail of the acropodite and prefemoral process, mesal view; (c) ectal view; (d) detail of the acropodite and prefemoral process, ectal view. Scale bars: a, c–d = 500 µm; b = 400 µm. Abbreviations: AP, acropodital process; PfP, prefemoral process; S, solenomere; SG, seminal groove; SP, spiniform process.
Fig. 4 in Periclimenaeus djiboutensis Bruce 1970
Fig. 4. Rhicnosthetus coriaceus (MNRJ 11625), left gonopod. (a) mesal view; (b) detail of the acropodite and prefemoral process, mesal view; (c) ectal view; (d) detail of the acropodite and prefemoral process, ectal view. Scale bars: a–c = 500 µm; d = 400 µm. Abbreviations: AP, acropodital process; PfP, prefemoral process; S, solenomere; SG, seminal groove; SP, spiniform process.
Fig. 5. Carapace widths for all Minuca burgersi. A, Caribbean populations. B in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 5. Carapace widths for all Minuca burgersi. A, Caribbean populations. B, South American populations. Arrows indicate population mean CW.
Fig. 6 in Fig. 1 in Fig. 10 in Periclimenaeus apomonosi Park & De Grave 2021, sp. nov.
Fig. 6. Intrasexual size dimorphisms of the chelipeds and pleons during the breeding and non-breeding seasons of the porcellanid crab Petrolisthes japonicus, collected from April 2008 to March 2009. Intrasexual size dimorphism was represented by the coefficient estimate of the explanatory variable, including the Season (lnCW × Season), in the log-transformed allometric growth equation model: lny ~ lnCW + lnCW × Season, where CW is carapace width, y is the measurement for another body part (cheliped propodus length (PrL) and width (PrW), and pleon width (PlW)), and Season is the breeding season (May to September) or non-breeding season (October to April). The coefficient estimate of lnCW × Season was the output for the breeding season, representing the change in the response variable relative to the baseline category (non-breeding season) (Table S4), and thus also representing the degree of difference in the allometric growth coefficient between the breeding season and the non-breeding season. Vertical lines indicate standard errors. The dotted bar indicates an estimate that was not significantly different between the breeding season and non-breeding season.
Fig. 10 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 10. Relationship between carapace width and abdomen width in female Minuca burgersi from Caribbean and South American populations. Data points calculated as average AW for each 1 mm interval of CW.
Fig. 13 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 13. Relationship between carapace width (CW) and propodus to pollex (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 CW. Quadratic regression: South America y = 0.3506 + 0.0344 x – 0.00097x2, r = 0.9793; Caribbean y = 0.3506 + 0.0367 x – 0.0011 x2, r = 0.9866.
Fig. 5 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. 5. First pseudoscorpion records for Albania from the families Geogarypidae, Cheiridiidae, Atemnidae and Cheliferidae. A, Geogarypus italicus (female). B, Apocheiridium ferum (female). C, Atemnus syriacus (male). D, Beierochelifer peloponnesiacus (female). E, Hysterochelifer cyprius (female). F, Hysterochelifer meridianus (male). Scale bars = 1 mm.
Fig. 3 in Fig. 1 in Fig. 10 in Periclimenaeus apomonosi Park & De Grave 2021, sp. nov.
Fig. 3. Growth of the cheliped propodus width relative to the carapace width in specimens of the porcellanid crab Petrolisthes japonicus, collected monthly from April 2008 (A) to March 2009 (K). Data are shown for females, ovigerous females and males. The data for October and November were pooled because of the small sample size in November.
Fig. 2 in Fig. 1 in Fig. 10 in Periclimenaeus apomonosi Park & De Grave 2021, sp. nov.
Fig. 2. Growth in the cheliped propodus length relative to the carapace width in specimens of the porcellanid crab Petrolisthes japonicus, collected monthly from April 2008 (A) to March 2009 (K). Data are shown for females, ovigerous females and males. The data for October and November were pooled because of the small sample size in November.
Fig. 6 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. 6. First pseudoscorpion records for Albania from the families Cheliferidae, Chernetidae and Withiidae. A, Rhacochelifer peculiaris (male). B, Dinocheirus panzeri (male). C, Lamprochernes chyzeri (male). D, Withius piger (female). Scale bars = 1 mm.
Fig. 4 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 4. Landmarks (total 23) chosen to summarize the shape of the carapace. A, Schematic of carapace showing anatomical features and landmarks. B, Photograph of Minuca burgersi specimen from Grote Knip, Curaçao. Scale above - white hatch marks are 1 mm apart.
Fig. 11 in Fig. 10 in Periclimenaeus apomonosi Park & De Grave 2021, sp. nov.
Fig. 11. Geometric morphometrics variation of Fannia pusio head landmarks based on Canonical Variable Analysis. Individuals from the colony reared under laboratory conditions are compared against wildcaught individuals.
Fig. 10 in Fig. 10 in Periclimenaeus apomonosi Park & De Grave 2021, sp. nov.
Fig. 10. Transformation Grid (left) and Wireframe (right) representation of shape variations between a laboratory bred colony versus wild samples of Fannia pusio based on Canonical Variate Analysis. *In the wireframe the turquoise outline characterizes the position of consensus landmarks, while the blue outline represents landmarks configurations.
Fig. 8 in Fig. 10 in Periclimenaeus apomonosi Park & De Grave 2021, sp. nov.
Fig. 8. Geographical differences among Fannia pusio populations based on Canonical Variate Analysis.
Fig. 9. Variation between a in Fig. 10 in Periclimenaeus apomonosi Park & De Grave 2021, sp. nov.
Fig. 9. Variation between a laboratory bred colony versus wild sample of Fannia pusio based on Principal Component Analysis.
Fig. 4 in Fig. 10 in Periclimenaeus apomonosi Park & De Grave 2021, sp. nov.
Fig. 4. Transformation Grid (left) and Wireframe (right) representation of shape variations between Fannia species based on Canonical Variate Analysis. *In the wireframe the turquoise outline characterizes the position of consensus landmarks, while the blue outline represents landmarks configurations.
Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 5. Mismatch distributions of Penaeus semisulcatus in COI (a & b) and CR (c & d) for both Lineages I and II and goodnesss fit tests were tested using raggedness index.
Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 12. Majella pristis n. sp., holotype male (cl 7.0 mm, cw 4.4 mm) (MNHN-IU-2010-78). A, left third maxilliped; B, pleon; C, pleonal somite 1 (in dorsal view); D, left G1 (ventral view); E, left G1 (dorsal view); F, left G2. Scale bars: A, B = 0.5 mm; D–F = 0.25 mm.
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OpenNeuro
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