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Figures 307-316 from: Rix MG, Huey JA, Cooper SJB, Austin AD, Harvey MS (2018) Conservation systematics of the shield-backed trapdoor spiders of the nigrum-group (Mygalomorphae, Idiopidae, Idiosoma): integrative taxonomy reveals a diverse and threatened fauna from south-western Australia. ZooKeys 756: 1-121. https://doi.org/10.3897/zookeys.756.24397
Figures 307-316 Idiosoma mcnamarai sp. n., male holotype (WAM T26107) from Trayning (Western Australia; AVW), somatic morphology. 307–308 Carapace and abdomen, dorsal view 309 Carapace, lateral view 310 Eyes, dorsal view 311 Mouthparts, ventral view 312 Sternum, ventral view 313 Abdomen, posterior view 314 Leg I, prolateral view 315 Leg I tibia, clasping spurs, prolateral view 316 Leg I tibia, proventral view. Scale bars 2.0. SP2–4 = sigilla pairs 2–4.
Figures 241-249 from: Rix MG, Huey JA, Cooper SJB, Austin AD, Harvey MS (2018) Conservation systematics of the shield-backed trapdoor spiders of the nigrum-group (Mygalomorphae, Idiopidae, Idiosoma): integrative taxonomy reveals a diverse and threatened fauna from south-western Australia. ZooKeys 756: 1-121. https://doi.org/10.3897/zookeys.756.24397
Figures 241-249 Idiosoma jarrah sp. n., female paratype (WAM T44390) from Lesmurdie (Western Australia; JAF). 241–242 Carapace and abdomen, dorsal view 243 Carapace, lateral view 244 Eyes, dorsal view 245 Abdomen, posterior view 246 Sternum, ventral view 247 Leg I, prolateral view 248 Leg I, retrolateral view 249 Spermathecae, dorsal view. Scale bars 2.0 (241–242, 247–248), 0.5 (249). SP2–4 = sigilla pairs 2–4.
Figures 329-338 from: Rix MG, Huey JA, Cooper SJB, Austin AD, Harvey MS (2018) Conservation systematics of the shield-backed trapdoor spiders of the nigrum-group (Mygalomorphae, Idiopidae, Idiosoma): integrative taxonomy reveals a diverse and threatened fauna from south-western Australia. ZooKeys 756: 1-121. https://doi.org/10.3897/zookeys.756.24397
Figures 329-338 Idiosoma schoknechtorum sp. n., male holotype (WAM T139512) from Beverley (Western Australia; AVW), somatic morphology. 329–330 Carapace and abdomen, dorsal view 331 Carapace, lateral view 332 Eyes, dorsal view 333 Mouthparts, ventral view 334 Sternum, ventral view 335 Abdomen, posterior view 336 Leg I, prolateral view 337 Leg I tibia, clasping spurs, prolateral view 338 Leg I tibia, proventral view. Scale bars 2.0. SP2–4 = sigilla pairs 2–4.
Figures 167-176 from: Rix MG, Huey JA, Cooper SJB, Austin AD, Harvey MS (2018) Conservation systematics of the shield-backed trapdoor spiders of the nigrum-group (Mygalomorphae, Idiopidae, Idiosoma): integrative taxonomy reveals a diverse and threatened fauna from south-western Australia. ZooKeys 756: 1-121. https://doi.org/10.3897/zookeys.756.24397
Figures 167-176 Idiosoma gardneri sp. n., male holotype (WAM T139528) from Lesueur National Park (Western Australia; GES), somatic morphology. 167–168 Carapace and abdomen, dorsal view 169 Carapace, lateral view 170 Eyes, dorsal view 171 Mouthparts, ventral view 172 Sternum, ventral view 173 Abdomen, posterior view 174 Leg I, prolateral view 175 Leg I tibia, clasping spurs, prolateral view 176 Leg I tibia, proventral view. Scale bars 2.0. SP2–4 = sigilla pairs 2–4.
Figures 238-240 from: Rix MG, Huey JA, Cooper SJB, Austin AD, Harvey MS (2018) Conservation systematics of the shield-backed trapdoor spiders of the nigrum-group (Mygalomorphae, Idiopidae, Idiosoma): integrative taxonomy reveals a diverse and threatened fauna from south-western Australia. ZooKeys 756: 1-121. https://doi.org/10.3897/zookeys.756.24397
Figures 238-240 Idiosoma jarrah sp. n., male holotype (WAM T124143) from Lesmurdie (Western Australia; JAF), pedipalp. 238 Retrolateral view 239 Retroventral view 240 Prolateral view. Note that the tip of the embolus has broken off this specimen. Scale bar 2.0.
Figures 193-202 from: Rix MG, Huey JA, Cooper SJB, Austin AD, Harvey MS (2018) Conservation systematics of the shield-backed trapdoor spiders of the nigrum-group (Mygalomorphae, Idiopidae, Idiosoma): integrative taxonomy reveals a diverse and threatened fauna from south-western Australia. ZooKeys 756: 1-121. https://doi.org/10.3897/zookeys.756.24397
Figures 193-202 Idiosoma incomptum sp. n., male holotype (WAM T99997) from Carnarvon (Western Australia; CAR), somatic morphology. 193–194 Carapace and abdomen, dorsal view 195 Carapace, lateral view 196 Eyes, dorsal view 197 Mouthparts, ventral view 198 Sternum, ventral view 199 Abdomen, posterior view 200 Leg I, prolateral view 201 Leg I tibia, clasping spurs, prolateral view 202 Leg I tibia, proventral view. Scale bars 2.0. SP2–3 = sigilla pairs 2–3.
Figures 263-271 from: Rix MG, Huey JA, Cooper SJB, Austin AD, Harvey MS (2018) Conservation systematics of the shield-backed trapdoor spiders of the nigrum-group (Mygalomorphae, Idiopidae, Idiosoma): integrative taxonomy reveals a diverse and threatened fauna from south-western Australia. ZooKeys 756: 1-121. https://doi.org/10.3897/zookeys.756.24397
Figures 263-271 Idiosoma kopejtkaorum sp. n., female (WAM T108519) from Charles Darwin Nature Reserve (Western Australia; AVW). 263–264 Carapace and abdomen, dorsal view 265 Carapace, lateral view 266 Eyes, dorsal view 267 Abdomen, posterior view 268 Sternum, ventral view 269 Leg I, prolateral view 270 Leg I, retrolateral view 271 Spermathecae, dorsal view. Scale bars 2.0 (263–264, 269–270), 0.5 (271). SP3–4 = sigilla pairs 3–4.
Figure 3 from: Fagan-Jeffries EP, Cooper SJB, Austin AD (2018) Three new species of Dolichogenidea Viereck (Hymenoptera, Braconidae, Microgastrinae) from Australia with exceptionally long ovipositors. Journal of Hymenoptera Research 64: 177-190. https://doi.org/10.3897/jhr.64.25219
Figure 3 Dolichogenidea mediocaudata (holotype): a dorsal habitus b anteromesoscutum, mesoscutellum and metanotum c head d lateral habitus e propodeum and tergites.
Figure 2 from: Fagan-Jeffries EP, Cooper SJB, Austin AD (2018) Three new species of Dolichogenidea Viereck (Hymenoptera, Braconidae, Microgastrinae) from Australia with exceptionally long ovipositors. Journal of Hymenoptera Research 64: 177-190. https://doi.org/10.3897/jhr.64.25219
Figure 2 Dolichogenidea finchi (holotype): a metasoma b lateral habitus c dorsal habitus d mesosoma e head.
Figure 4 from: Fagan-Jeffries EP, Cooper SJB, Austin AD (2018) Three new species of Dolichogenidea Viereck (Hymenoptera, Braconidae, Microgastrinae) from Australia with exceptionally long ovipositors. Journal of Hymenoptera Research 64: 177-190. https://doi.org/10.3897/jhr.64.25219
Figure 4 Dolichogenidea xenomorph: a head (paratype) b lateral habitus (paratype) c anteromesoscutum, mesoscutellum and metanotum (holotype) d propodeum and tergites (holotype) e dorsal habitus (holotype).
Figure 1 from: Fagan-Jeffries EP, Cooper SJB, Austin AD (2018) Three new species of Dolichogenidea Viereck (Hymenoptera, Braconidae, Microgastrinae) from Australia with exceptionally long ovipositors. Journal of Hymenoptera Research 64: 177-190. https://doi.org/10.3897/jhr.64.25219
Figure 1 Known distributions of D. xenomorph (blue circles) D. finchi (red squares) and D. mediocaudata (yellow star).
Figures 8-9 from: Lang dos Santos M, Lemos VM, Vieira JP (2018) No mullet, no gain: cooperation between dolphins and cast net fishermen in southern Brazil. Zoologia 35: 1-13. https://doi.org/10.3897/zoologia.35.e24446
Figures 8-9 Expected occurrence of Mugilliza for predictors of the binomial model. Number of dolphins (8) and month (9); the black lines indicate the moving averages; dark gray areas represent the 95% confidence intervals of the predictions.
Figures 2-7 from: Lang dos Santos M, Lemos VM, Vieira JP (2018) No mullet, no gain: cooperation between dolphins and cast net fishermen in southern Brazil. Zoologia 35: 1-13. https://doi.org/10.3897/zoologia.35.e24446
Figures 2-7 Seasonal variation of the predictive variables: (2) Mean and standard deviation of water temperature, min. 15 °C and max. 27 °C; (3) Mean and standard deviation of salinity, min. 1 PSU and max. 36 PSU; (4) Mean and standard deviation of number of dolphins, min. 0 and max. 5; (5) Frequency of occurrence% of water flow direction (ebb, flood, slack water) in the entrance channel; (6) Frequency of occurrence% of wind direction (Northerly, Southerly, Easterly); (7) Frequency of occurrence% of the fishing sector (S1, S2, S3, S4 or S5).
Figures 10-12 from: Lang dos Santos M, Lemos VM, Vieira JP (2018) No mullet, no gain: cooperation between dolphins and cast net fishermen in southern Brazil. Zoologia 35: 1-13. https://doi.org/10.3897/zoologia.35.e24446
Figures 10-12 Expected abundance of Mugilliza for predictors of the gamma model. Number of dolphins (10), month (11) and fishing area (12); the black line indicates the moving average; dark gray areas represent the 95% confidence intervals of the predictions.
Figure 18 from: Lang dos Santos M, Lemos VM, Vieira JP (2018) No mullet, no gain: cooperation between dolphins and cast net fishermen in southern Brazil. Zoologia 35: 1-13. https://doi.org/10.3897/zoologia.35.e24446
Figure 18 Seasonal variation in total length (mean and standard deviation) of Mugilliza caught in the presence or absence of dolphins.
Figure 1 from: Lang dos Santos M, Lemos VM, Vieira JP (2018) No mullet, no gain: cooperation between dolphins and cast net fishermen in southern Brazil. Zoologia 35: 1-13. https://doi.org/10.3897/zoologia.35.e24446
Figure 1 Study area and sampled fishing sectors (sampling sectors) in the Tramandaí River Estuary (TRE) in southern Brazil. The circles represent the sectors sampled.
Figures 14-17 from: Lang dos Santos M, Lemos VM, Vieira JP (2018) No mullet, no gain: cooperation between dolphins and cast net fishermen in southern Brazil. Zoologia 35: 1-13. https://doi.org/10.3897/zoologia.35.e24446
Figures 14-17 Catch per unit effort (CPUE-LC%) by body size classes (10 mm) of the mullet. (14) summer, (15) autumn, (16) winter and (17) spring.
Figure 13 from: Lang dos Santos M, Lemos VM, Vieira JP (2018) No mullet, no gain: cooperation between dolphins and cast net fishermen in southern Brazil. Zoologia 35: 1-13. https://doi.org/10.3897/zoologia.35.e24446
Figure 13 Seasonal variation in fishing effort. Means and standard deviations of the effort in the presence or absence of dolphins.
Supplementary material 1 from: Gueidan C, Elix JA, McCarthy PM, Roux C, Mallen-Cooper M, Kantvilas G (2019) PacBio amplicon sequencing for metabarcoding of mixed DNA samples from lichen herbarium specimens. MycoKeys 53: 73-91. https://doi.org/10.3897/mycokeys.53.34761
: Data type: measurement
Fig. 1 in What have we learned from the dead? A compilation of three years of cooperation between entomologists and crime scene investigators in Southern Brazil
Fig. 1. Location of Paraná State (Southern Brazil) and municipalities where the cases occurred in detail. (1) Ponta Grossa, (2) Campo Magro, (3) Colombo, (4) Campina Grande do Sul, (5) Quatro Barras, (6) Curitiba, (7) São José dos Pinhais, (8) Fazenda Rio Grande, (9) Araucária, (10) Campo do Tenente, (11) Lapa.
ScienceDex guides
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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.