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FIGURE 1 in Notes on the genus Micromorphus Mik (Diptera: Dolichopodidae) and the uncertain identity of its type species, M. albipes (Zetterstedt)

FIGURE 1. Micromorphus caudatus (Aldrich): a, male postabdomen, ventral; b, male postabdomen, left lateral. M. micidus Parent: c, male postabdomen, left lateral. Legend: cer, cercus; el, epandrial lobe; epand, epandrium; hyp, hypandrium; ph, phallus; st, sternite, tg, tergite; vsur, ventral surstylus. Arrows indicate position of diagnostic setae.

opennotspecifiedApr 2022View details →
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FIGURES 6–10 in An undescribed species among Roesler's type specimens: Ancylosis palianytsia sp nov. (Lepidoptera: Pyralidae: Phycitinae) described from Afghanistan

FIGURES 6–10. Head structures of Ancylosis spp. Ancylosis palianytsia sp. nov.: 6–7. Antennae (6. Paratype, Sarobi, Prep. no. ♀629.22s; 7. Paratype, Gulbahar, Prep. no. ♂632.22g). 9–10. Labial palpi (9. Paratype, Gulbahar, Prep. no. ♀341.20s; 10. Holotype, Sarobi, Prep. no. ♂630.22s). Ancylosis monella: 8a. Antennae, 8b. Labial palpi (Paratype, Polihomri, Prep. no. ♂342.20s).

opennotspecifiedMay 2022View details →
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FIGURES 4–5 in An undescribed species among Roesler's type specimens: Ancylosis palianytsia sp nov. (Lepidoptera: Pyralidae: Phycitinae) described from Afghanistan

FIGURES 4–5. Females of Ancylosis palianytsia sp. nov. 4. Paratype, Gulbahar, Prep. no. ♀341.20s. 5. Paratype, Sarobi, Prep. no. ♀629.22s. Scale bar: 10 mm.

opennotspecifiedMay 2022View details →
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FIGURES 14–15 in An undescribed species among Roesler's type specimens: Ancylosis palianytsia sp nov. (Lepidoptera: Pyralidae: Phycitinae) described from Afghanistan

FIGURES 14–15. Female genitalia of Ancylosis palianytsia sp. nov. 14. Paratype, Gulbahar, Prep. no. ♀341.20s. 15. Paratype, Sarobi, Prep. no. ♀629.22s. Scale bar: 1 mm.

opennotspecifiedMay 2022View details →
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FIGURES 11–13 in An undescribed species among Roesler's type specimens: Ancylosis palianytsia sp nov. (Lepidoptera: Pyralidae: Phycitinae) described from Afghanistan

FIGURES 11–13. Male genitalia of Ancylosis palianytsia sp. nov. 11. Ventral view, aedeagus apart (a), aedeagus (b), culcita (c), juxta (d) (Paratype, Gulbahar, Prep. no. ♂631.22s.). 12. Ventral view, aedeagus apart (a), aedeagus (b), culcita (c), juxta (d), right valva (e), left valva (f) (Holotype, Sarobi, Prep. no. ♂630.22s.). 13. Gnathos, lateral view (a), right valva (b) (Paratype, Gulbahar, Prep. no. ♂632.22g.). Scale bar: 1 mm.

opennotspecifiedMay 2022View details →
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FIGURE 12 in Morphological types of male copulatory organs of Bicornucythere bisanensis (Ostracoda, Crustacea) and the description of a new Bicornucythere species

FIGURE 12. Bicornucythere misumiensis sp. nov. Internal lateral views of male carapace of left (A) and right (B) valves, respectively (SUM-CO-2505, paratype). Arrows indicate anterior. Scale: 100 µm.

opennotspecifiedMay 2022View details →
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FIGURE 11 in Morphological types of male copulatory organs of Bicornucythere bisanensis (Ostracoda, Crustacea) and the description of a new Bicornucythere species

FIGURE 11. Exposed soft parts and pore systems of Bicornucythere misumiensis sp. nov. A and B, soft parts of female and male, respectively. C–E, male left copulatory organ (ventral view). C, whole image; D, extension of the distal lobe; E, tip of the distal lobe. F, maxillula of male. G–J, pore systems. G and H, corolla-like pore (reported by Okada, 1982 as a Ben-type pore). I, broom-shape seta (black arrow). J, simple seta. A, SUM-CO-2510, paratype; B–F, SUM-CO-2511, paratype; G–J, SUM-CO-2508, paratype. Arrows indicate anterior (A and B). Scale: 100 μm for A and B, 50 μm for C, 30 μm for F, 20 μm for D, 10 μm for I, 2 μm for E and J, 1 μm for G and H.

opennotspecifiedMay 2022View details →
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FIGURE 9 in Morphological types of male copulatory organs of Bicornucythere bisanensis (Ostracoda, Crustacea) and the description of a new Bicornucythere species

FIGURE 9. Appendages of Bicornucythere misumiensis sp. nov. A, antennule. B, antenna. C, mandibula. D, maxillula. E, male right 5th limb. E1, segment boundary in male right 5th limb. E2, faint segment boundary in male right 5th limb. F, female right 5th limb. G, left 5th limb. H, 6th limb. I, 7th limb. J, brush-shaped organ. K, left furca. A, C, J, K SUM-CO-2501, male holotype; B, E, G–I, L, M, SUM-CO-2502, male paratype; D, SUM-CO-2503, paratype; B, F, SUM-CO-2504, female paratype. Scale: 100 μm for A-K, 125 μm for E1, E2.

opennotspecifiedMay 2022View details →
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FIGURE 8 in Morphological types of male copulatory organs of Bicornucythere bisanensis (Ostracoda, Crustacea) and the description of a new Bicornucythere species

FIGURE 8. Male copulatory organs of Bicornucythere misumiensis sp. nov. (SUM-CO-2501, holotype). ca, clasping apparatus; cd, copulatory duct; dl, distal lobe. Scale: 100 μm.

opennotspecifiedMay 2022View details →
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FIGURE 5 in Morphological types of male copulatory organs of Bicornucythere bisanensis (Ostracoda, Crustacea) and the description of a new Bicornucythere species

FIGURE 5. Size distribution of male carapace of Bicornucythere species. Circles = Bicornucythere bisanensis from Aburatsubo Cove; Rhombuses = Bicornucythere bisanensis from Ushimad; Squares = Bicornucythere bisanensis from Misumi-cho; Triangles = B. misumiensis sp. nov. from Misumi-cho.

opennotspecifiedMay 2022View details →
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FIGURE 4 in Morphological types of male copulatory organs of Bicornucythere bisanensis (Ostracoda, Crustacea) and the description of a new Bicornucythere species

FIGURE 4. Diagram of the four Types of male copulatory organs identified in the Aburatsubo Cove samples. Each Type consists of a combination of right and left distal lobes that is, R, r, L, and l.

opennotspecifiedMay 2022View details →
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FIGURE 6 in Morphological types of male copulatory organs of Bicornucythere bisanensis (Ostracoda, Crustacea) and the description of a new Bicornucythere species

FIGURE 6. Morphological variation in the extension degree of the tip of Shape r in Type D and difference from Shape R in Type A. A, specimens from Aburatsubo Cove. B, specimens from Ushimado. The Aburatsubo Cove samples included some specimens from Shape R group, and they were distinguished from Shape r samples based on their elongated sub-triangular outline and tapering curved tip, which differed from the spindle-shaped outline and pointed tip observed in Shape r samples. Each number correlates with a specific specimen from each locality.

opennotspecifiedMay 2022View details →
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FIGURE 7 in Morphological types of male copulatory organs of Bicornucythere bisanensis (Ostracoda, Crustacea) and the description of a new Bicornucythere species

FIGURE 7. Male copulatory organs of Bicornucythere bisanensis. A, after Kajiyama (1913). B, after Okubo (1975). C, modified from Schornikov & Shaitarov (1979). Kajiyama 1913's description did not include a description of the position of the hemipenis. Permission was granted for Okubo (1975). For Schornikov & Shaitarov (1979), the figure has been replaced by a traced version due to difficulties in contacting the journal's editorial office. Scale: 100 μm.

opennotspecifiedMay 2022View details →
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FIGURE 2 in Morphological types of male copulatory organs of Bicornucythere bisanensis (Ostracoda, Crustacea) and the description of a new Bicornucythere species

FIGURE 2. Map showing the locations evaluated in this study. A, Aburatsubo Cove. B, Ushimado. C, Misumi-cho. Misumi-cho is the type locality for Bicornucythere misumiensis sp. nov. and the description of each of these Types and/or species are linked to the type of male copulatory organ and their classification as either B. bisanensis or the new species in this study. Based on a map from CraftMAP (2006).

opennotspecifiedMay 2022View details →
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FIGURE 3 in Morphological types of male copulatory organs of Bicornucythere bisanensis (Ostracoda, Crustacea) and the description of a new Bicornucythere species

FIGURE 3. Typology of the distal lobes of male copulatory organs of Bicornucythere bisanensis from Aburatsubo Cove. Typology is based on the outline and shape of the tip and the right and left distal lobes, and were identified as R and r or L and l, respectively. Scale: 100 μm.

opennotspecifiedMay 2022View details →
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FIGURE 10 in Morphological types of male copulatory organs of Bicornucythere bisanensis (Ostracoda, Crustacea) and the description of a new Bicornucythere species

FIGURE 10. Carapace of Bicornucythere misumiensis sp. nov. A and B, male left and right valves in the external lateral view, respectively (SUM-CO-2501, holotype). C and D, male left and right valves in the internal lateral view, respectively (SUM-CO-2505, paratype). E and F, female left and right valves in the external lateral view, respectively (SUM-CO-2504, paratype). G, male dorsal view (SUM-CO-2506, paratype). H, male anterior view (SUM-CO-2507, paratype). I, process of left valve (SUM-CO-2508, paratype). J, muscle scars of right valve including adductor, frontal (black arrow), and mandibula scars (gray arrow) (SUM-CO-2509, paratype). K, hingement on male right valve (SUM-CO-2509, paratype). L and M, teeth and socket of hingement on male right valve (SUM-CO-2509, paratype). L, anterior element of right hingement. M, posterior element of right hingement. White arrows indicate anterior. Scale: 100 μm for A–H, K, 20 μm for I, J, L, M.

opennotspecifiedMay 2022View details →
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FIGURE 1 in Morphological types of male copulatory organs of Bicornucythere bisanensis (Ostracoda, Crustacea) and the description of a new Bicornucythere species

FIGURE 1. Map showing the locations of previous studies on Bicornucythere bisanensis from the seas around Japan. Locality numbers (1–23) and letters (X, Y) correspond to the list of reports in Table 1. The white map was taken from CraftMAP (2006).

opennotspecifiedMay 2022View details →
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FIGURES 1–2 in The Giordani Soika collection of Eumeninae at the Natural History Museum of Venice Giancarlo Ligabue: catalogue of species and type specimens (Insecta, Hymenoptera, Vespidae)

FIGURES 1–2. The collection AGS before reorganization and restoration. Details of drawers with genitalia mounts detached from the glass and mixed at the bottom. FIGURES 3–4. A step in the process of genitalia restoration: associating detached fragments of mounting medium to their original coverslip by matching margins of the damaged mount. FIGURE 5. Genitalia remounted in DMHF after restoration.

opennotspecifiedMay 2022View details →
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FIGURES 10–11. Two drawers from the collection AGS after the reorganization. 10 in The Giordani Soika collection of Eumeninae at the Natural History Museum of Venice Giancarlo Ligabue: catalogue of species and type specimens (Insecta, Hymenoptera, Vespidae)

FIGURES 10–11. Two drawers from the collection AGS after the reorganization. 10: Palaearctic fauna, drawer 59; 11: Afrotropical fauna, drawer 49.

opennotspecifiedMay 2022View details →
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FIGURES 6–9. The collection AGS before reorganization. 6 in The Giordani Soika collection of Eumeninae at the Natural History Museum of Venice Giancarlo Ligabue: catalogue of species and type specimens (Insecta, Hymenoptera, Vespidae)

FIGURES 6–9. The collection AGS before reorganization. 6: a well-ordered drawer; 7–8: well-ordered drawers, with large empty areas and labels as placeholders for missing specimens; 9: drawer with miscellaneous unsorted identified specimens.

opennotspecifiedMay 2022View details →

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Allen Brain Atlas

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Last verified 2026-04-30Open record

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DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.

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electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

International Brain Laboratory public data

The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.

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behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

OpenNeuro

OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.

openneuro
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Last verified 2026-04-29Open record