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237 results for “Periclimenaeus”
Fig. 5. Pholas campechiensis. A−G, Pholas candeana d in Fig. 13 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 5. Pholas campechiensis. A−G, Pholas candeana d'Orbigny 1853 (in 1841, 1842, 1846, 1853), NHMUK 1854.10.4.493, syntypes. H, original description of Pholas campechiensis from Lister, 1685−1695. I−K, examined material, MACN 11444. Scale bars: A−F, H, I−J = 1 cm; G = 5 mm.
Fig. 1 in Periclimenaeus djiboutensis Bruce 1970
Fig. 1. (A) Map of Pakistan, illustrating the study area, the Margalla Hills National Park (MHNP), Islamabad. (B) Enlarged map of study area, illustrating the 23 transects and trails surveyed during the study period. (C) Map showing spatial distribution of the leopard cat in Margalla Hills National Park Islamabad, Pakistan Islamabad during the present study.
Fig. 3 in Fig. 1. Majella brevipes Ortmann, 1893 in Periclimenaeus djiboutensis Bruce 1970
Fig. 3. Mean number of rove beetles consumed (± SE) by Ocypode gaudichaudii in each treatment. Treatment 1, high density of diatoms and high density of beetles; Treatment 2, high density of diatoms and low density of beetles; Treatment 3, high density of diatoms only; Treatment 4, low density of diatoms and high density of beetles; Treatment 5, low density of diatoms and low density of beetles; Treatment 6, low density of diatoms only; Treatment 7, high density of beetles only; Treatment 8, low density of beetles only and Treatment 9, no diatoms and no beetles.
Fig. 2 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 2. Jaw of Heliocidaris crassispina under ultraviolet illumination with A) calcein blue tag, B) calcein tag. Measurements showing increment of jaw length (ΔJ), jaw length at the time of tagging with calcein (Jt) and jaw length at the time of recapture after one year (Jt+1). C) 1-year growth increment (sea urchins collected 376 d after tagging) or Season 1 growth (sea urchins collected 176 d after tagging); marked with calcein. D) Season 2 growth, marked with calcein blue. E) Merged pictures of sequential marking showing seasonal growth over 1 year (376 d); distance between the calcein blue mark and calcein mark is also the Season 1 growth (sea urchins collected 376 d after tagging). A–B: magnification 8.5x. C–E: magnification of 50x.
Fig. 4. Cyrtopleura lanceolata. A−H in Fig. 13 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 4. Cyrtopleura lanceolata. A−H, probable lectotypes, MNHN-IM unnumbered. I−N, examined material, MACN 9361-39. Scale bars: A−M = 1 cm; N = 1 cm.
Fig. 6 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 6. Seasonal (solid lines) and non-seasonal (dash lines) growth for Heliocidaris crassispina described by the von Bertalanffy model (n = 67) for jaw length (a) and test diameter (b).
Fig. 3 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 3. Size-frequency distribution of Heliocidaris crassispina tagged with calcein and calcein blue (n = 1630). Solid bars represent recaptured individuals with tags at the end of the experiment (n = 57). The mean test diameter (TD) of the tagged and recaptured individuals with tags was 33.0 and 34.0 mm, respectively.
Fig. 4 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 4. Live specimen of Macrostomum itai Reyes and Brusa n. sp. (A) Dorsal view of a mature individual. (B) Detail of the anterior body region. (C) Detail of the testes and ovary. (D) A free-swimming specimen. (E) Posterior body region with details of the copulatory organs. (F1–2) Detail of the penis stylet in two different focal planes (black arrowhead indicating the penis stylet opening).
Fig. 3 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 3. Live specimens of Stenostomidae and Macrostomidae. (A–C) Stenostomum cf. pegephilum: (A) chain with two zooids, (B) schematic representation, (C) detail of the muscular pharynx. (D1–2) Stenostomum saliens: (D1) detail of the anterior region of the body and (D2) dorsal view of the habitus of a specimen. (E) Stenostomum simplex (scale bar not available). (F–G) Stenostomum tuberculosum: (F) individual with three zooids, (G) schematic representation. (H–I) Macrostomum quiritium: (H) dorsal view of a mature specimen, (I) detail of the penis stylet. (J) Macrostomum tuba, detail of the penis stylet.
Fig. 1 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 1. Maps showing the collection sites in the Taim nature reserve (ESEC Taim), Rio Grande do Sul, Brazil.
Fig. 2 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 2. Live specimens of Catenulida. (A) Catenula lemnae, chain two zooids. (B–D) Myostenostomum vanderlandi: (B) habitus of whole-mounted individual, (C) detail of the anterior brain lobe and (D) detail of the posterior brain lobe. (E–F) Stenostomum glandulosum: (E) live individual, (F) free-hand schematic representation. (G) Stenostomum grande, a single zooid. (H) Stenostomum paraguayense, intestine with some food items. (I) Stenostomum hemisphericum, free-hand schematic representation.
Fig. 6 in Fig. 4 in Periclimenaeus apomonosi Park & De Grave 2021, sp. nov.
Fig. 6. Gymnothorax pseudokidako sp. nov.. lateral view of head marks with cephalic sensory pores: red for supraorbital pores; green for infraorbital pores; blue for preoperculo-mandibular pores; yellow for branchial pores. Photo of DOS 07961, paratype, 651+ mm TL.
Fig. 12 in Fig. 4 in Periclimenaeus apomonosi Park & De Grave 2021, sp. nov.
Fig. 12. Relationship of selected characteristics of Gymnothorax pseudokidako sp. nov. and G. kidako. (A) tail length in % of TL to TL; (B) number of dentary teeth to TL; (C) frequency distribution of total vertebrae. Black for G. pseudokidako; white for G. kidako. Teeth counted from each side of the jaw, two counts for each individual.
Fig. 7 in Fig. 4 in Periclimenaeus apomonosi Park & De Grave 2021, sp. nov.
Fig. 7. Dentition of Gymnothorax pseudokidako sp. nov., FRIP21962, paratype, 757 mm TL, female. Dotted lines represent the sockets of missing teeth. The aberrant distribution of preoperculo-mandibular pores is shown on the right side of lower jaw. Upper jaw (left) and lower jaw (right).
Fig. 2 in Fig. 4 in Periclimenaeus apomonosi Park & De Grave 2021, sp. nov.
Fig. 2. Diaphenchelys laimospila sp. nov., lateral view of head marks with cephalic sensory pores: red for supraorbital pores; green for infraorbital pores; blue for preoperculo-mandibular pores; yellow for branchial pores. Photo of NMMB-P26218, holotype, 290 mm TL.
Fig. 10 in Fig. 4 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 10. Phylogenetic analysis trees showing the specific classification of L. yarabamba sp. nov. (red), and its position among L. montanus species group lineages. (A) Total evidence phylogenetic analysis; (B) Molecular phylogenetic analysis using Maximum likelihood, the percentage of replicate trees in which the associated taxa clustered together in the bootstrap test (1000 replicates) are shown above the branches; (C) Morphology phylogenetic analysis. Morphology and total evidence analyses under parsimony criteria; the values correspond to the support measure (symmetric resampling).
Fig. 9 in Fig. 4 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 9. Plot of principal components scores to meristic characters for L. balagueri (black stars, n = 12), L. chiribaya (green circles, n = 10), L. insolitus (red triangles, n = 15), L. nazca (blue triangles, n = 7) y L. yarabamba sp. nov. (beige squares, n = 13). Eigenvectors, eigenvalues, and percent variation explained for the principal components are summarized in table 3.
Fig. 8 in Fig. 4 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 8. Plot of principal components scores to continuous characters for L. balagueri (black stars, n = 12), L. chiribaya (green circles, n = 10), L. insolitus (red triangles, n = 15), L. nazca (blue triangles, n = 7) y L. yarabamba sp. nov. (beige squares, n = 13). Eigenvectors, eigenvalues, and percent variation explained for the principal components are summarized in table 2.
Fig. 6 in Fig. 4 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 6. Geographical distribution of all formally described species of the L. reichei clade presents in Peru, including L. yarabamba sp. nov. The symbols with a black dot in the middle represent the type localities of each species.
Fig. 3 in Fig. 4 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 3. Male specimen of L. yarabamba sp. nov., from the type locality. Shows detail of coloration pattern and dorsolateral scales. Photographed by A. J. Quiroz.
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