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13 results for “Orchomenella”
Figure 13 in A new Antarctic species of Orchomenella G.O. Sars, 1890 (Amphipoda: Lysianassoidea: Tryphosidae): is phase-contrast micro-tomography a mature technique for digital holotypes?
Figure 13. Rooted maximum likelihood tree of the Orchomene s.l. complex COI. Bootstrap support is shown for each branch. Hirondellea gigas was used as the outgroup. Ŋe position of Orchomenella rinamontiae is shown in yellow.
Figure 11 in A new Antarctic species of Orchomenella G.O. Sars, 1890 (Amphipoda: Lysianassoidea: Tryphosidae): is phase-contrast micro-tomography a mature technique for digital holotypes?
Figure 11. Orchomenella rinamontiae. Holotype, ♀, 24.4 mm. Less uropods (U1, U2, and U3) and telson (T) in dorsal view. Scale bars: 0.5 mm.
Figure 12 in A new Antarctic species of Orchomenella G.O. Sars, 1890 (Amphipoda: Lysianassoidea: Tryphosidae): is phase-contrast micro-tomography a mature technique for digital holotypes?
Figure 12. Unrooted non-redundant maximum likelihood tree of the Lysianassoidea COI. Leaves represent individual specimens, coloured by genus where this information was available in the NCBI database. Our samples of Orchomenella rinamontiae, from both RNA sequencing and DNA sequencing, are coloured in red. Ŋe area of the tree illustrated in Figure 13 is enclosed by a grey doưed line. A complete list of sequences in each genus group can be found in the Supporting Information (Table S1).
Figure 9. Synchrotron radiation X in A new Antarctic species of Orchomenella G.O. Sars, 1890 (Amphipoda: Lysianassoidea: Tryphosidae): is phase-contrast micro-tomography a mature technique for digital holotypes?
Figure 9. Synchrotron radiation X-ray phase-contrast micro-tomography (A, B) and scanning electron microscopy (C–F) of gnathopods of Orchomenella rinamontiae. Paratypes, ♂♂, 11.3 mm (A, B) and 11.3 and 15.4 mm (C–F). A, lateral view of right gnathopod 2. B, medial view of right gnathopod 2. C, lateral view of less gnathopod 1. D, medial view of right gnathopod 1. E, lateral view of less gnathopod 2. F, medial view of right gnathopod 2. Abbreviations: a, gnathopod 1 lateral spine; b, gnathopod 1 medial spine; c, gnathopod 2 tip of dactyl. Scale bars: 200 µm.
Figure 10 in A new Antarctic species of Orchomenella G.O. Sars, 1890 (Amphipoda: Lysianassoidea: Tryphosidae): is phase-contrast micro-tomography a mature technique for digital holotypes?
Figure 10. Orchomenella rinamontiae. Holotype, ♀, 24.4 mm. Medial view of less gnathopod 2 (Gn2). Scale bars: 1 mm.
Figure 8 in A new Antarctic species of Orchomenella G.O. Sars, 1890 (Amphipoda: Lysianassoidea: Tryphosidae): is phase-contrast micro-tomography a mature technique for digital holotypes?
Figure 8. Orchomenella rinamontiae. Holotype, ♀, 24.4 mm. Right maxilliped (Mxpd) and less inner plate (L inner pl). Scale bars: 0.1 mm for L inner pl; 0.5 mm for Mxpd.
Figure 7 in A new Antarctic species of Orchomenella G.O. Sars, 1890 (Amphipoda: Lysianassoidea: Tryphosidae): is phase-contrast micro-tomography a mature technique for digital holotypes?
Figure 7. Scanning electron microscopy of maxillipeds of Orchomenella rinamontiae. Paratypes, ♂♂, 15.4 and 16.8 mm. A, anterior/dorsal view. B, less dorsal view. C, dorsal view of outer and inner plates. D, higher magnification of the tip of the right outer plate. E, dorsal view of right palp. Scale bars: 200 µm in A–C; 20 µm in D; 100 µm in E.
Figure 1. Synchrotron radiation X in A new Antarctic species of Orchomenella G.O. Sars, 1890 (Amphipoda: Lysianassoidea: Tryphosidae): is phase-contrast micro-tomography a mature technique for digital holotypes?
Figure 1. Synchrotron radiation X-ray phase-contrast micro-tomography of Orchomenella rinamontiae. Paratype, ♂, 11.3 mm. Volume renderings of lateral less view (A) and ventral view (B). Abbreviations: A1, antenna 1; A2, antenna 2; Gn1, gnathopod 1; Gn2, gnathopod 2. Scale bar: 4.0 mm.
Figure 5 in A new Antarctic species of Orchomenella G.O. Sars, 1890 (Amphipoda: Lysianassoidea: Tryphosidae): is phase-contrast micro-tomography a mature technique for digital holotypes?
Figure 5. Scanning electron microscopy of mandibles of Orchomenella rinamontiae. Paratypes, ♂♂, 15.4 and 16.8 mm. A, B, less palp in median view (A) and lateral view (B). C, D, less mandible in median view (C) and dorsal view (D). Abbreviations: i, incisor; l, lacinia mobilis; m, molar process. Scale bars: 200 µm in A, B; 50 µm in C; 40 µm in D.
Figure 4. Synchrotron radiation X in A new Antarctic species of Orchomenella G.O. Sars, 1890 (Amphipoda: Lysianassoidea: Tryphosidae): is phase-contrast micro-tomography a mature technique for digital holotypes?
Figure 4. Synchrotron radiation X-ray phase-contrast micro-tomography of Orchomenella rinamontiae. Paratype, ♂, 11.3 mm. Volume renderings of the mouth in ventral view (A), higher magnification of the right mouthparts in ventral view (B), right mouthparts in median view (C), and mouth in dorsal view with the observation point inside the animal (D). Abbreviations: a, outer plate maxilliped; b, inner plate maxilliped; c, outer plate maxilla 2; d, inner plate maxilla 2; e, palp maxilla 1; f, outer plate maxilla 1; g, inner plate maxilla 1. Scale bars: 200 µm.
Figure 6 in A new Antarctic species of Orchomenella G.O. Sars, 1890 (Amphipoda: Lysianassoidea: Tryphosidae): is phase-contrast micro-tomography a mature technique for digital holotypes?
Figure 6. Scanning electron microscopy of maxillae of Orchomenella rinamontiae. Paratypes, ♂♂, 15.4 and 16.8 mm. A, right maxilla 2 in median view. B, right maxilla 1 in median view. C, less maxilla 1 in median view. D, right maxilla 1 inner plate in median view. E, F, outer plates of right maxilla 1 (E) and less maxilla 1 (F) in median view. G, tip of maxillular palp. Scale bars: 100 µm in A–C; 40 µm in D–G.
Figure 3 in A new Antarctic species of Orchomenella G.O. Sars, 1890 (Amphipoda: Lysianassoidea: Tryphosidae): is phase-contrast micro-tomography a mature technique for digital holotypes?
Figure 3. Scanning electron microscopy of antenna 1 of Orchomenella rinamontiae. Paratype, ♂, 11.3 mm. Calceoli (white arrows) are present on each flagellar article. A–C, neighbouring calceoli are orientated the same on the proximal part of the flagellum (A, B) and rotated by ~90° on the distal part (C). D, a higher magnification of a lateral view of a calceolus. Abbreviation: a, callynophore. Scale bars: 100 µm in A; 20 µm in B, C; 10 µm in D.
Figure 2 in A new Antarctic species of Orchomenella G.O. Sars, 1890 (Amphipoda: Lysianassoidea: Tryphosidae): is phase-contrast micro-tomography a mature technique for digital holotypes?
Figure 2. Scanning electron microscopy of antenna 1 of Orchomenella rinamontiae. Paratype, ♂, 11.3 mm. Scale bar: 200 µm.
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