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Fig. 5 in Three new species of Spongiopsyllus Johnsson, 2000 (Copepoda: Siphonostomatoida: Entomolepididae) associated with Aplysina cauliformis (Carter, 1882) (Porifera: Demospongiae) from Todos-os-Santos Bay, Northeastern Brazil
Fig. 5. Spongiopsyllus porthosi sp. nov., ♂, allotype (UFBA 3293). A. Habitus, dorsal view. B. Urosome. C. Antennule. Scale bars: A = 100 µm; B–C = 25 µm.
Fig. 2 in Three new species of Spongiopsyllus Johnsson, 2000 (Copepoda: Siphonostomatoida: Entomolepididae) associated with Aplysina cauliformis (Carter, 1882) (Porifera: Demospongiae) from Todos-os-Santos Bay, Northeastern Brazil
Fig. 2. Spongiopsyllus athosi sp. nov., ♀, holotype (UFBA 3291). A. Maxilliped. B. L1. C. L2. D. L3. E. L4. Scale bars = 50 µm.
Fig. 1 in Three new species of Spongiopsyllus Johnsson, 2000 (Copepoda: Siphonostomatoida: Entomolepididae) associated with Aplysina cauliformis (Carter, 1882) (Porifera: Demospongiae) from Todos-os-Santos Bay, Northeastern Brazil
Fig. 1. Spongiopsyllus athosi sp. nov., ♀, holotype (UFBA 3291). A. Habitus, dorsal view. B. Urosome. C. Antennule. D. Antenna. E. Mandibular palp. F. Maxillule. G. Maxilla. Scale bars: A = 200 µm; B–G = 50 µm.
Table 4 in Three new species of Spongiopsyllus Johnsson, 2000 (Copepoda: Siphonostomatoida: Entomolepididae) associated with Aplysina cauliformis (Carter, 1882) (Porifera: Demospongiae) from Todos-os-Santos Bay, Northeastern Brazil
<p><b>Table 4.</b> Comparison of species of <i>Spongiopsyllus</i> Johnsson, 2000.</p><table><tbody><tr><th></th><th><b>A1</b></th><th><b>A1</b></th><th><b>A1</b></th><th><b>A2</b></th><th><b>A2</b></th><th><b>A2</b></th><th><b>Mxll</b></th><th><b>Mxll</b></th><th><b>Mxlp</b></th></tr></tbody><tbody><tr><th></th><td><b>nº of segments</b></td><td><b>aesthetasc segment</b></td><td><b>fused segments</b></td><td><b>nº of exopod spinules</b></td><td><b>nº of segment endopod</b></td><td><b>nº of setae on 2</b> <b>nd</b> <b>endopod</b></td><td><b>nº of setae on inner lobe</b></td><td><b>nº of setae on outer lobe</b></td><td><b>endopod formula</b></td></tr><tr><th><i>S. adventici</i> us Johnsson, 2000</th><td>17</td><td>15</td><td>III–V, VII–VIII, IX–XII, XXII– XXIII, XXIV– XXVIII</td><td>4</td><td>3</td><td>1 short</td><td>3</td><td>3</td><td>0,2,1+claw</td></tr><tr><th><i>S. redactus</i> Canário <i>et al</i>., 2012</th><td>15</td><td>14</td><td>II–III, IV–VI, IX–XIII, XXII–XX- VIII</td><td>3</td><td>2</td><td>1 long 2 short</td><td>3</td><td>3</td><td>2,1,1+claw</td></tr><tr><th><i>S. atypicus</i> Canário <i>et al</i>., 2019</th><td>14</td><td>12</td><td>III–VIII, IX–XIII, XXII– XXIII, XIV– XVIII</td><td>7</td><td>2</td><td>2 long 2 short</td><td>4</td><td>4</td><td>2,0,1+claw</td></tr><tr><th><i>S. intermedius</i> Borges <i>et al</i>., 2021</th><td>16</td><td>14</td><td>II–III, IV–VI, IX–XIII, XXIII– XXVIII</td><td>5</td><td>2</td><td>1 long 1 short</td><td>2</td><td>3</td><td>1,1,1+claw</td></tr><tr><th><i>S. athosi</i> sp. nov.</th><td>16</td><td>14</td><td>III–VI, IX–XIII, XXIII– XXVIII</td><td>5</td><td>2</td><td>2 long 2 short</td><td>3</td><td>4</td><td>2,1,1+claw</td></tr><tr><th><i>S. porthosi</i> sp.nov.</th><td>16</td><td>14</td><td>III–VI, IX–XIII, XXIII– XXVIII</td><td>5</td><td>2</td><td>2 long 2 short</td><td>4</td><td>4</td><td>2,2,0+claw</td></tr><tr><th><i>S. aramisi</i> sp. nov.</th><td>16</td><td>14</td><td>III–VI, IX–XIII, XXIII– XXVIII</td><td>6</td><td>2</td><td>1 long 1 short</td><td>4</td><td>4</td><td>2,1,1+claw</td></tr></tbody></table>
FIG. 8 in Four new scale insect species (Hemiptera: Coccomorpha) associated with coffee roots in Colombia, South America, with identification keys for genera Newsteadia Green, 1902, Distichlicoccus Ferris, 1950, and Paraputo Laing, 1929
FIG. 8. — Microphotographs of female specimens of Pseudococcus luciae n. sp. A, body; B, oral rim tubular duct with upper view (picture above) and lateral view (picture down); C, discoidal bilocular pore; D, antenna; E, eyespot with upper view (picture above) and lateral view (picture down); F, tarsal digitules; G, circulus; H, anal lobe; I, multilocular disc pore; J, oral collar tubular duct. Scale bars: A, 300 µm; B, C, H-J, 4 µm; F, µm; 10 D, E, G, 20 µm.
FIG. 6 in Four new scale insect species (Hemiptera: Coccomorpha) associated with coffee roots in Colombia, South America, with identification keys for genera Newsteadia Green, 1902, Distichlicoccus Ferris, 1950, and Paraputo Laing, 1929
FIG. 6. — Microphotographs of female specimens of Paraputo nasai Caballero n. sp.: A, body; B, cerarii; C, eyespot associated with discoidal pores; D, hind femur and hind tibia with translucent pores; E, tarsal digitules; F, circulus; G, anal lobes; H, multilocular disc pores on abdominal segment VII; I, large oral collar tubular ducts (one-tipped arrow) and small oral collar tubular duct (double-tipped arrow) on margin of abdominal segment V. Scale bars: A, 400 µm; B, 30 µm; C, E, G-I, 20 µm; D, 50 µm; F, 40 µm.
FIG. 5 in Four new scale insect species (Hemiptera: Coccomorpha) associated with coffee roots in Colombia, South America, with identification keys for genera Newsteadia Green, 1902, Distichlicoccus Ferris, 1950, and Paraputo Laing, 1929
FIG. 5. — Taxonomic illustration of Paraputo nasai n. sp. adult ♀, with enlarged details: A, cerarii; B, trilocular pore; C, smaller discoidal pore; D, larger discoidal pore; E, antenna; F, hind femur and tibia; G, multilocular disc pore; H, smaller oral collar tubular duct; I, larger oral collar tubular duct; J, trilocular pore; K, discoidal pore. Scale bars: A, D, H-J, 5 µm; B, K, 3 µm; C, L, 2 µm; E, F, 100 µm.
FIG. 4 in Four new scale insect species (Hemiptera: Coccomorpha) associated with coffee roots in Colombia, South America, with identification keys for genera Newsteadia Green, 1902, Distichlicoccus Ferris, 1950, and Paraputo Laing, 1929
FIG. 4. — Microphotographs of female specimens of Distichlicoccus takumasae n. sp.: A, body; B, oral rim tubular duct in lateral and surface views; C, antenna; D, eyespot; E, hind leg with translucent pores (arrows); F, anal lobe; G, multilocular disc pore; H, oral collar tubular duct. Scale bars: A, 300 µm; B, G, H, 5 µm; C, 30 µm; D, 10; E, 40 µm; F 20 µm.
FIG. 1 in Four new scale insect species (Hemiptera: Coccomorpha) associated with coffee roots in Colombia, South America, with identification keys for genera Newsteadia Green, 1902, Distichlicoccus Ferris, 1950, and Paraputo Laing, 1929
FIG. 1. — Taxonomic illustration of Newsteadia andreae n. sp. adult ♀: A, section of wax plate; B, spine; C, flagellate seta; D, type I quadrilocular pore; E, simple pore; F, type II quadrilocular pore; G, anal ring; H, antenna; I, labium in dorsal (left side) and ventral (right side) view; J, fore leg; K, trochanter with two spine-like setae (arrows); L, thoracic spiracle; M, abdominal spiracle; N, longitudinal section of ovisac band. Scale bars: A, M, N, 20 µm; B-D, F, 5 µm; E, 3 µm; G, K, L, 30 µm; H-J, 100 µm.
FIG. 3 in Four new scale insect species (Hemiptera: Coccomorpha) associated with coffee roots in Colombia, South America, with identification keys for genera Newsteadia Green, 1902, Distichlicoccus Ferris, 1950, and Paraputo Laing, 1929
FIG. 3. — Taxonomic illustration of Distichlicoccus takumasae n. sp. adult ♀: enlarged details with measurements correspond to: A, cerarius; B, dorsal trilocular pore; C, dorsal oral rim tubular duct; D, dorsal simple discoidal pore; E, dorsal bilocular discoidal pore; F, antenna; G, hind femur and tibia; H, ventral trilocular pore; I*, multilocular disc pore, present in only one paratype; J, ventral simple discoidal pore; K, ventral bilocular pore; L, ventral oral rim tubular duct; M, ventral oral collar tubular duct. Scale bars: B, D, H, J, K, 3 µm; A, C, E, I, L, M, 5 µm; F, G, 50 µm.
FIG. 7 in Four new scale insect species (Hemiptera: Coccomorpha) associated with coffee roots in Colombia, South America, with identification keys for genera Newsteadia Green, 1902, Distichlicoccus Ferris, 1950, and Paraputo Laing, 1929
FIG. 7. — Taxonomic illustration of Pseudococcus luciae n. sp. adult ♀, enlarged details: A, cerarius; B, tritubular pore; C, oral rim tubular duct; D, dorsal large discoidal pore; E, dorsal small discoidal pore; F, discoidal bilocular pore; G, antenna; H, hind femur and tibia; I, trilocular pore; J, multilocular disc pore; K, ventral discoidal pore; L, ventral discoidal bilocular pore; M, oral rim tubular duct; N, oral collar tubular duct. Scale bars: A-F, H-K, 5 µm; G, 100 µm; M, N, 6 µm.
FIG. 2 in Four new scale insect species (Hemiptera: Coccomorpha) associated with coffee roots in Colombia, South America, with identification keys for genera Newsteadia Green, 1902, Distichlicoccus Ferris, 1950, and Paraputo Laing, 1929
FIG. 2. — Microphotographs of female specimens of Newsteadia andreae n. sp.: A, body; B, quadrilocular pores in singles and pairs (single-headed arrows) and simple pores (double-headed arrows); C, anal ring; D, apex of antenna with apical longer fleshy setae (ls), subapical fleshy setae (sa), and apical shorter setae (ss); E, distal fleshy setae (ds) and flagellate setae (fs); F, eyespot separate from antennal base; G, mid-leg trochanter with spine-like setae (double-head arrows) and placoid sensilla (single-headed arrows); H, thoracic spiracle; I, abdominal spiracle. Scale bars: A, 400 µm; B, 4 µm; C, H, 30 µm; D, F, 40 µm; E, G, I, 20 µm.
Figure 3-5. Acanthoscelides sauli and host pod. 3 in Seed beetles (Coleoptera: Bruchidae) associated with Acacia cornigera (L.) Willd., with description of a new species of Acanthoscelides Schilsky
Figure 3-5. Acanthoscelides sauli and host pod. 3) Pod with a clump of Acanthoscelides sauli eggs and exit hole for adult. 4) Magnified egg clump of Acanthoscelides sauli. 5) Inside wall of the pod, showing the entrance hole for the larvae.
Figure 2. Acanthoscelides oblongoguttatus. a in Seed beetles (Coleoptera: Bruchidae) associated with Acacia cornigera (L.) Willd., with description of a new species of Acanthoscelides Schilsky
Figure 2. Acanthoscelides oblongoguttatus. a) Male dorsal view. b) Male lateral view. c) Female head. d) Male genitalia. e) Female genitalia. f) Stylets of female genitalia.
Figure 1. Acanthoscelides sauli. a in Seed beetles (Coleoptera: Bruchidae) associated with Acacia cornigera (L.) Willd., with description of a new species of Acanthoscelides Schilsky
Figure 1. Acanthoscelides sauli. a) Male dorsal view. b) Male lateral view. c) Female head. d) Male genitalia. e) Female genitalia.
Figures 6–9 in Studies on Palaearctic Onthophagus associated with burrows of small mammals. V. A new species of the semicornis group from south-central Iran (Coleoptera: Scarabaeidae: Scarabaeinae: Onthophagini)
Figures 6–9. Onthophagus (Palaeonthophagus) sacharovskii Olsoufieff, 1918 [male: TR-Kayseri, Bünyan, 1300 m]. 6) Habitus. 7) Pronotum. 8) Parameres, dorsolateral view. 9) Lamella copulatrix, ventral view. Photographs by A. Degiovanni.
Figures 1–5 in Studies on Palaearctic Onthophagus associated with burrows of small mammals. V. A new species of the semicornis group from south-central Iran (Coleoptera: Scarabaeidae: Scarabaeinae: Onthophagini)
Figures 1–5. Onthophagus (Palaeonthophagus) roessneri n. sp. 1) Holotype, habitus. 2) Holotype, pronotum. 3) Allotype, habitus. 4) Parameres, dorsolateral view. 5) Lamella copulatrix, ventral view. Photographs by A. Degiovanni.
Figures 11–19. Aleochara castaneipennis Mannerheim. 11 in A new cryptic species of Aleochara Gravenhorst associated with Marmota monax (Linnaeus) burrows and caves in North America (Coleoptera: Staphylinidae: Aleocharinae)
Figures 11–19. Aleochara castaneipennis Mannerheim. 11) Habitus in dorsal view. 12) Enlarged fragment of pronotum showing pubescence and microsculpture.13) Median lobe of aedeagus in lateral view. 14) Median lobe of aedeagus in dorsal view. 15) Male tergite VIII. 16) Male sternite VIII. 17) Female tergite VIII. 18) Female sternite VIII. 19) Spermatheca. Scale bar for habitus = 1 mm, remaining scale bars = 0.2 mm.
Figures 20–28. Aleochara fumata Gravenhorst. 20 in A new cryptic species of Aleochara Gravenhorst associated with Marmota monax (Linnaeus) burrows and caves in North America (Coleoptera: Staphylinidae: Aleocharinae)
Figures 20–28. Aleochara fumata Gravenhorst. 20) Habitus in dorsal view. 21) Enlarged fragment of pronotum showing pubescence and microsculpture. 22) Median lobe of aedeagus in lateral view. 23) Median lobe of aedeagus in dorsal view. 24) Male tergite VIII. 25) Male sternite VIII. 26) Female tergite VIII. 27) Female sternite VIII. 28) Spermatheca. Scale bar for habitus = 1 mm, remaining scale bars = 0.2 mm.
Figures 1–9 in A new cryptic species of Aleochara Gravenhorst associated with Marmota monax (Linnaeus) burrows and caves in North America (Coleoptera: Staphylinidae: Aleocharinae)
Figures 1–9. Aleochara castaneimarmotae Klimaszewski, Webster, and Brunke, sp. nov. 1) Habitus in dorsal view. 2) Enlarged fragment of pronotum showing pubescence and microsculpture. 3) Median lobe of aedeagus in lateral view. 4) Median lobe of aedeagus in dorsal view. 5) Male tergite VIII. 6) Male sternite VIII. 7) Female tergite VIII. 8) Female sternite VIII. 9) Spermatheca. Scale bar for habitus = 1 mm, remaining scale bars = 0.2 mm.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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.
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.