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313 results for “taxonomic treatment”
Figs. 228–238 in The Subtribes And Genera Of The Tribe Broscini (Coleoptera: Carabidae): Cladistic Analysis, Taxonomic Treatment, And Biogeographical Considerations
Figs. 228–238. Cerotalis substriata. (228) Head and prothorax; (229) mouthparts, ventral view; (230) ligula, ventral view; (231) sternum 9, ventral view; (232) lateral view; (233) left paramere; (234) right paramere; (235) base of median lobe, dorsal view; (236) median lobe, lateral view, showing internal sac; (237) female genital tract, ventral view; (238) union of spermatheca and oviduct in bursa copulatrix. See appendix 2 for abbreviations.
Figs. 81–102. Broscodera and Broscosoma. 81–92 in The Subtribes And Genera Of The Tribe Broscini (Coleoptera: Carabidae): Cladistic Analysis, Taxonomic Treatment, And Biogeographical Considerations
Figs. 81–102. Broscodera and Broscosoma. 81–92 Broscodera insignis: (81) head and prothorax; (82) mouthparts, ventral view; (83) left paramere; (84) right paramere; (85) base of median lobe, dorsal view; (86) median lobe; (87) apical plate; (88) sclerite X, dorsal view; (89) sclerite X, lateral view; (90) female genital tract, ventral view; (91, 92), spermatheca and helminthoid sclerite. 93–102 Broscosoma baldense: (93) head and prothorax; (94) mouthparts, ventral view; (95) left paramere; (96, 97), right paramere; (98) median lobe; (99) apical plate; (100) sclerite X, dorsal view; (101) sclerite X, lateral view; (102) female genital tract, ventral view. See appendix 2 for abbreviations.
Figs. 175–188 in The Subtribes And Genera Of The Tribe Broscini (Coleoptera: Carabidae): Cladistic Analysis, Taxonomic Treatment, And Biogeographical Considerations
Figs. 175–188. Mecodema crenicolle. (175) Head and prothorax; (176) mouthparts, ventral view; (177) ligula, ventral view; (178) sternum 9, ventral view; (179), sternum 9, lateral view; (180) left paramere; (181) right paramere; (182) median lobe; (183) sclerite X, dorsal view; (184) sclerite X, lateral view; (185) apical plate; (186) internal sac showing the position of apical plate; (187) female genital tract, ventral view; (188) spermatheca and helminthoid sclerite. See appendix 2 for abbreviations.
Figs. 219 –227 in The Subtribes And Genera Of The Tribe Broscini (Coleoptera: Carabidae): Cladistic Analysis, Taxonomic Treatment, And Biogeographical Considerations
Figs. 219 –227. Microbarypus sylvatica. (219) Habitus, dorsal view; (220), mouthparts, ventral view; (221) sternum 9, ventral view; (222) lateral view; (223), left paramere; (224) right paramere; (225) median lobe, lateral view; (226) lateral view; (227) female genital tract, ventral view. See appendix 2 for abbreviations.
Figs. 43–50 in The Subtribes And Genera Of The Tribe Broscini (Coleoptera: Carabidae): Cladistic Analysis, Taxonomic Treatment, And Biogeographical Considerations
Figs. 43–50. Craspedonotus tibialis. (43) Head and prothorax; (44) mouthparts, ventral view; (45) left paramere; (46) right paramere; (47) median lobe lateral view; (48) sclerite X, dorsal view; (49) sclerite X, lateral view; (50) female genital tract, ventral view. See appendix 2 for abbreviations.
Figure 2 from: Heng L-M, Zheng Y-L, Zhao Y-B, Wang Y-J (2018) Radiation of members of the Soroseris hookeriana complex (Asteraceae) on the Qinghai-Tibetan Plateau and their proposed taxonomic treatment. PhytoKeys 114: 11-25. https://doi.org/10.3897/phytokeys.114.29914
Figure 2 The 50% majority rule consensus tree derived from Bayesian inference of the combined sequences of psbA-trnH and matK. Posterior probabilities and bootstrap percentages are indicated above and below the branches, respectively. The samples named according to FOC (2011) or NCBI, Stebbins (1940) and the present study are listed from left to right.
Figure 1 from: Heng L-M, Zheng Y-L, Zhao Y-B, Wang Y-J (2018) Radiation of members of the Soroseris hookeriana complex (Asteraceae) on the Qinghai-Tibetan Plateau and their proposed taxonomic treatment. PhytoKeys 114: 11-25. https://doi.org/10.3897/phytokeys.114.29914
Figure 1 The 50% majority rule consensus tree derived from Bayesian inference of the nuclear internal transcribed spacer. Posterior probabilities and bootstrap percentages are indicated above and below the branches, respectively. The samples named according to FOC (2011) or NCBI, Stebbins (1940) and the present study are listed from left to right.
FIGURE 1 in The lost and rediscovered holotype of Alyssum austrodalmaticum (Brassicaceae) is in line with the latest taxonomic treatment
FIGURE 1. The holotype specimen of Alyssum austrodalmaticum deposited in the CNHM herbarium.
Figure 30 from: Bond J (2012) Phylogenetic treatment and taxonomic revision of the trapdoor spider genus Aptostichus Simon (Araneae, Mygalomorphae, Euctenizidae). ZooKeys 252: 1-209. https://doi.org/10.3897/zookeys.252.3588
Figure 30 - Optimization of habitat type on preferred tree topology (morphology, implied weighting, k=7).
Map 34- 35 from: Bond J (2012) Phylogenetic treatment and taxonomic revision of the trapdoor spider genus Aptostichus Simon (Araneae, Mygalomorphae, Euctenizidae). ZooKeys 252: 1-209. https://doi.org/10.3897/zookeys.252.3588
Map 34- 35 - Distribution of Sierra group species. 34 known distribution of Aptostichus dorothealangeae, Aptostichus chavezi, Aptostichus huntington, and Aptostichus sierra 35 predicted distribution of Aptostichus chavezi; cooler colors–blue shades–represent areas of high probability of occurrence, warmer colors–yellow and orange shades–represent areas of low probability of occurrence.
Figures 262-265 from: Bond J (2012) Phylogenetic treatment and taxonomic revision of the trapdoor spider genus Aptostichus Simon (Araneae, Mygalomorphae, Euctenizidae). ZooKeys 252: 1-209. https://doi.org/10.3897/zookeys.252.3588
Figures 262-265 - Aptostichus anzaborrego sp. n., male holotype from San Diego County (AP1199); scale bars = 1.0mm. 262 habitus [806106] 263 retrolateral aspect, leg I [806102] 264 prolateral aspect, leg I [806098] 265 retrolateral aspect, pedipalp [806104].
Figures 332-336 from: Bond J (2012) Phylogenetic treatment and taxonomic revision of the trapdoor spider genus Aptostichus Simon (Araneae, Mygalomorphae, Euctenizidae). ZooKeys 252: 1-209. https://doi.org/10.3897/zookeys.252.3588
Figures 332-336 - Aptostichus sierra sp. n. male holotype (AP400) from Fresno County; scale bars = 1.0mm. 332 habitus [806511] 333 retrolateral aspect, leg I [806515] 334 prolateral aspect, leg I [806517] 335 retrolateral aspect, pedipalp [806519] 336 line drawings of leg I tibia and patella spination patterns; retrolateral aspect; prolateral aspect.
Figure 273 from: Bond J (2012) Phylogenetic treatment and taxonomic revision of the trapdoor spider genus Aptostichus Simon (Araneae, Mygalomorphae, Euctenizidae). ZooKeys 252: 1-209. https://doi.org/10.3897/zookeys.252.3588
Figure 273 - Live photograph, Aptostichus sinnombre sp. n. male holotype (MY3761); note leg I, right hand side missing.
Figures 236-242 from: Bond J (2012) Phylogenetic treatment and taxonomic revision of the trapdoor spider genus Aptostichus Simon (Araneae, Mygalomorphae, Euctenizidae). ZooKeys 252: 1-209. https://doi.org/10.3897/zookeys.252.3588
Figures 236-242 - Aptostichus sarlacc sp. n.; scale bars = 1.0mm. 236–238 male paratype (AP416) from Kern Co. 236 habitus [806006] 237 retrolateral aspect, right leg I [806000] 238 prolateral aspect, right leg I [806004] 239–242 male holotype (AP417) 239 retrolateral aspect, leg I [805992] 240 prolateral aspect, leg I [805996] 241 retrolateral aspect, pedipalp [805998] 242 line drawings (in descending order) of holotype leg I metatarsus and tibia spination pattern (retro and prolateral views), pedipalp (retrolateral view), lower inset, line drawing of paratype TSrd spination pattern.
Figures 292-297 from: Bond J (2012) Phylogenetic treatment and taxonomic revision of the trapdoor spider genus Aptostichus Simon (Araneae, Mygalomorphae, Euctenizidae). ZooKeys 252: 1-209. https://doi.org/10.3897/zookeys.252.3588
Figures 292-297 - Aptostichus elisabethae sp. n. 292–295 male holotype (AP389) from San Bernardino County; scale bars = 1.0mm 292 habitus [806425] 293 retrolateral aspect, leg I [806429] 294 prolateral aspect, leg I [806431] 295 retrolateral aspect, pedipalp [806433] 296 line drawings of leg I spination pattern; retrolateral aspect patella, tibia, and metatarsus; prolateral aspect, patella and tibia 297 female paratype (AP1254), cleared spermathecae [806434]; scale bar = 0.1mm.
Figures 243-248 from: Bond J (2012) Phylogenetic treatment and taxonomic revision of the trapdoor spider genus Aptostichus Simon (Araneae, Mygalomorphae, Euctenizidae). ZooKeys 252: 1-209. https://doi.org/10.3897/zookeys.252.3588
Figures 243-248 - Aptostichus derhamgiulianii sp. n.; scale bars = 1.0mm. 243–246 male holotype (AP 415) Inyo County 243 habitus [806016] 244 retrolateral aspect, leg I [806010] 245 prolateral aspect, leg I [806014] 246 retrolateral aspect, pedipalp [806018] 247 male paratype (AP424) from Mono County, retrolateral aspect, leg I [806020] 248 line drawings, spination pattern, leg I tibia and metatarsus of holotype and paratype; retrolateral view, holotype pedipalp.
Figures 249-256 from: Bond J (2012) Phylogenetic treatment and taxonomic revision of the trapdoor spider genus Aptostichus Simon (Araneae, Mygalomorphae, Euctenizidae). ZooKeys 252: 1-209. https://doi.org/10.3897/zookeys.252.3588
Figures 249-256 - Aptostichus mikeradtkei sp. n. 249–252 male holotype (AP1085), from San Diego Co.; scale bars = 1.0mm. 249 habitus [806034] 250 retrolateral aspect, leg I [806032] 251 prolateral aspect, leg I [806028] 252 retrolateral aspect, pedipalp [806036] 253–255 cleared spermathecae; scale bars = 0.1mm 253 female paratype (AP1148) [806705] 254, 255 additional specimens from vicinity of type locality (AP1155, 1247) [806620, 806623] 256 sternum of paratype female (AP1148) [806038].
Figures 311-315 from: Bond J (2012) Phylogenetic treatment and taxonomic revision of the trapdoor spider genus Aptostichus Simon (Araneae, Mygalomorphae, Euctenizidae). ZooKeys 252: 1-209. https://doi.org/10.3897/zookeys.252.3588
Figures 311-315 - Aptostichus bonoi sp. n. 311–314 male holotype (AP399) from San Bernardino County; scale bars = 1.0mm 311 retrolateral aspect, leg I [806371] 312 prolateral aspect, leg I [806375] 313 retrolateral aspect, pedipalp [806377] 314 line drawings of leg I spination pattern and pedipalp; retrolateral aspect, leg I patella, tibia, metatarsus, tarsus; prolateral aspect tibia and patella; retrolateral aspect, pedipalp 315 female paratype (AP901) from San Bernardino County, cleared spermathecae [806378]; scale bar = 0.1mm.
Maps 27- 28 from: Bond J (2012) Phylogenetic treatment and taxonomic revision of the trapdoor spider genus Aptostichus Simon (Araneae, Mygalomorphae, Euctenizidae). ZooKeys 252: 1-209. https://doi.org/10.3897/zookeys.252.3588
Maps 27- 28 - Aptostichus aguacaliente sp. n. 27 distribution of known specimens 28 predicted distribution; cooler colors–blue shades–represent areas of high probability of occurrence, warmer colors–yellow and orange shades–represent areas of low probability of occurrence.
Figures 266-272 from: Bond J (2012) Phylogenetic treatment and taxonomic revision of the trapdoor spider genus Aptostichus Simon (Araneae, Mygalomorphae, Euctenizidae). ZooKeys 252: 1-209. https://doi.org/10.3897/zookeys.252.3588
Figures 266-272 - Aptostichus sinnombre sp. n., male specimens from San Diego County; scale bars = 1.0mm. 266–268 male holotype (MY3761) 266 retrolateral aspect, leg I [806546] 267 prolateral aspect, leg I [806550] 268 retrolateral aspect, pedipalp [806552] 269–271 male paratype (MY3823) 269 retrolateral aspect, leg I [806554] 270 prolateral aspect, leg I [806558] 271 retrolateral aspect, pedipalp [806560] 272 line drawing, spination pattern, leg I tibia and metatarsus of holotype.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.