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237 results for “Periclimenaeus”
Fig. 1 in Fig. 6 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 1. Leftover of a Mangifera indica fruit by the focal group of P. femoralis; where they mostly consumed only skin and pulp and left the seed out.
Fig. 13 in Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 13. Myrmeleon taiwanensis Miller and Stange, 1999, 3rd instar larva. A, dorsal view; B, ventral view; C, lateral view.
Fig. 10 in Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 10. Myrmeleon littoralis Miller and Stange, 1999, 3rd instar larva. A, dorsal view; B, ventral view; C, lateral view.
Fig. 6 in Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 6. Myrmeleon alticolus Miller and Stange, 1999, 3rd instar larva. A, dorsal view; B, ventral view; C, lateral view.
Fig. 4. IX in Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 4. IX abdominal sternite of 3rd instar larvae of Myrmeleontini of Taiwan, ventral view; A, Baliga asakurae; B, Myrmeleon alticolus; C, Myrmeleon bimaculatus; D, Myrmeleon heppneri; E, Myrmeleon littoralis; F, Myrmeleon persimilis; G, Myrmeleon punctinervis; H, Myrmeleon taiwanensis; I, Myrmeleon wangi. Scale bar = 1 mm.
Fig. 3 in Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 3. Head of 3rd instar larvae of Myrmeleontini of Taiwan, ventral view; A, Baliga asakurae; B, Myrmeleon alticolus; C, Myrmeleon bimaculatus; D, Myrmeleon heppneri; E, Myrmeleon littoralis; F, Myrmeleon persimilis; G, Myrmeleon punctinervis; H, Myrmeleon taiwanensis; I, Myrmeleon wangi. Scale bar = 1 mm.
Fig. 1 in Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 1. Habitats of the Myrmeleontini larvae, A, Underneath trunks of giant woods (M. alticolus). B, On open sand dunes (M. persimilis). C, Underneath rock overhangs (M. taiwanensis). D, Underneath artificial buildings (M. wangi).
Fig. 12. Myrmeleon punctinervis Banks, 1937, 3 in Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 12. Myrmeleon punctinervis Banks, 1937, 3rd instar larva. A, dorsal view; B, ventral view; C, lateral view.
Fig. 9 in Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 9. Myrmeleon heppneri Miller and Stange, 1999, 3rd instar larva. A, dorsal view; B, ventral view; C, lateral view.
Fig. 11 in Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 11. Myrmeleon persimilis Miller and Stange, 1999, 3rd instar larva. A, dorsal view; B, ventral view; C, lateral view.
Fig. 7. Myrmeleon bimaculatus Yang, 1999, 3 in Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 7. Myrmeleon bimaculatus Yang, 1999, 3rd instar larva. A, dorsal view; B, ventral view; C, lateral view.
Fig. 5 in Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 5. Baliga asakurae (Okamoto, 1910), 3rd instar larva. A, dorsal view; B, ventral view; C, lateral view.
Fig. 14 in Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 14. Myrmeleon wangi Miller and Stange, 1999, 3rd instar larva. A, dorsal view; B, ventral view; C, lateral view.
Fig. 5 in Fig. 1. Majella brevipes Ortmann, 1893 in Periclimenaeus djiboutensis Bruce 1970
Fig. 5. Regression tree showing the mean number of rove beetles that were eaten by Ocypode gaudichaudii in set-ups with different densities of rove beetles. The mean number of beetles that were eaten under each category of treatment are in bold.
Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 5. Heliocidaris crassispina annual (n = 15) and seasonal growth: Season 1 (n = 8) and Season 2 (n = 39). Relationship between increment in jaw length after 1 year in the field and jaw length at the time of tagging.
Fig. 7. Martesia fragilis. A−C, USNM 614180, lectoype. D−H in Fig. 13 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 7. Martesia fragilis. A−C, USNM 614180, lectoype. D−H, Pholadidea minuscula Dall, 1908, USNM 122946, syntypes. I−L, Martesia (Diploplax) bahamensis Bartsch and Rehder, 1945, USNM 573549, holotype. M−P, Martesia (Diploplax) exquisita Bartsch and Rehder, 1945, USNM 573548, holotype. Scale bars: A−C, E = 2 mm; D = 1 mm; F−G, I−P = 5 mm; H = 500 µm.
Fig. 2 in Fig. 12. Gieysztoria hermes Reyes and Brusa n in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 2. Photographs of juveniles of Scombrops boops of different sizes. The upper and middle specimens were 4.6 cm and 7.3 cm total length (TL) collected from the Sargassum beds; the lower specimen was 10.1 cm TL collected from a rocky reef.
Fig. 6. Netastoma darwinii. A−D in Fig. 13 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 6. Netastoma darwinii. A−D, NHMUK without numeration, holotype. E−F, external sculpture showing the three differentiated zones. G, detail of calcareous siphonoplax. H, detail of protoplax. I, pedal gape. J−L, general view of the siphons. M−O, general aspect of visceral mass. Scale bars: A−F, J = 5 mm; G−I = 2.5 mm; K−L = 1 µm; MN = 2 mm; O = 4 mm.
Fig. 2 in Fig. 1. Majella brevipes Ortmann, 1893 in Periclimenaeus djiboutensis Bruce 1970
Fig. 2. Kite diagrams showing the distribution of isopods and rove beetles at Culebra Beach and Playa Venao during the day.
Fig. 3 in Fig. 13 in Fig. 12. Majella pristis n in Periclimenaeus djiboutensis Bruce 1970
Fig. 3. Barnea (Anchomasa) lamellosa. A, external view right valve. B, internal view right valve. C, external view of living specimen. D, anterior view showing pedal gape and foot. E, detail of calcareous protoplax. F−G, detail of siphons. H, general aspect of mantle cavity organs. I, detail of food groove over the distal edge of the outer demibranch. J, detail of left labial palps and apophysis. Scale bars: A−B, D−E, H−J = 5 mm; C = 1 cm; F−G: 2.5 mm.
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