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Figure 12 from: Leblanc L, San Jose M, Barr N, Rubinoff D (2015) A phylogenetic assessment of the polyphyletic nature and intraspecific color polymorphism in the Bactrocera dorsalis complex (Diptera, Tephritidae). In: De Meyer M, Clarke AR, Vera MT, Hendrichs J (Eds) Resolution of Cryptic Species Complexes of Tephritid Pests to Enhance SIT Application and Facilitate International Trade. ZooKeys 540: 339-367. https://doi.org/10.3897/zookeys.540.9786
Figure 12 - Variation in color pattern of scutum and abdomen in Bactrocera propinqua (Hardy and Adachi) (49 specimens examined and 24 sequenced). Voucher codes are: A ms4324 B ms4331 C ms4322 D ms3568 E ms3571 F ms3833 G ms3572 H ms3567 I ms2041 J ms1170 K ms4331 L ms3765 M ms3757 N ms3572 O ms3566.
Figure 15 from: Leblanc L, San Jose M, Barr N, Rubinoff D (2015) A phylogenetic assessment of the polyphyletic nature and intraspecific color polymorphism in the Bactrocera dorsalis complex (Diptera, Tephritidae). In: De Meyer M, Clarke AR, Vera MT, Hendrichs J (Eds) Resolution of Cryptic Species Complexes of Tephritid Pests to Enhance SIT Application and Facilitate International Trade. ZooKeys 540: 339-367. https://doi.org/10.3897/zookeys.540.9786
Figure 15 - Scutum, abdomen and wing costal region of: A–C Bactrocera species 54 (ms1798 (wing, scutum), ms3777 (abdomen); 7 specimens examined and sequenced) D–F Bactrocera species 55 (ms3575; 7 specimens examined and sequenced) G–I Bactrocera species 59 (ms1164; 1 specimen examined and sequenced) J–L Bactrocera species 60 (ms3730; 3 specimens examined and sequenced).
Figure 10 from: Leblanc L, San Jose M, Barr N, Rubinoff D (2015) A phylogenetic assessment of the polyphyletic nature and intraspecific color polymorphism in the Bactrocera dorsalis complex (Diptera, Tephritidae). In: De Meyer M, Clarke AR, Vera MT, Hendrichs J (Eds) Resolution of Cryptic Species Complexes of Tephritid Pests to Enhance SIT Application and Facilitate International Trade. ZooKeys 540: 339-367. https://doi.org/10.3897/zookeys.540.9786
Figure 10 - Variation in color pattern of scutum and abdomen in Bactrocera osbeckiae Drew and Romig (100 specimens examined and 39 sequenced). Voucher codes are: A ms1161 B ms3559 C ms3558 D ms3553 E ms3555 F ms3561 G ms1163 H ms3785 I ms3764 J ms3768 K ms1153 L ms3758 M ms3554 N ms1180 O ms1138 P ms3555 Q ms3784 R ms3560 S ms1154 T ms3768.
Figure 11 from: Leblanc L, San Jose M, Barr N, Rubinoff D (2015) A phylogenetic assessment of the polyphyletic nature and intraspecific color polymorphism in the Bactrocera dorsalis complex (Diptera, Tephritidae). In: De Meyer M, Clarke AR, Vera MT, Hendrichs J (Eds) Resolution of Cryptic Species Complexes of Tephritid Pests to Enhance SIT Application and Facilitate International Trade. ZooKeys 540: 339-367. https://doi.org/10.3897/zookeys.540.9786
Figure 11 - Variation in color pattern of scutum and abdomen in Bactrocera paraarecae Drew and Romig (10 specimens examined and 5 sequenced). Voucher codes are: A ms1295 B ms1296 C ms2040 D ms1294 E ms1110.
Figure 14 from: Leblanc L, San Jose M, Barr N, Rubinoff D (2015) A phylogenetic assessment of the polyphyletic nature and intraspecific color polymorphism in the Bactrocera dorsalis complex (Diptera, Tephritidae). In: De Meyer M, Clarke AR, Vera MT, Hendrichs J (Eds) Resolution of Cryptic Species Complexes of Tephritid Pests to Enhance SIT Application and Facilitate International Trade. ZooKeys 540: 339-367. https://doi.org/10.3897/zookeys.540.9786
Figure 14 - Scutum and abdomen of: A Bactrocera dongnaiae Drew and Romig (ms1158; 7 specimens examined and 3 sequenced) B Bactrocera laithieuiae Drew and Romig (ms3762; 1 specimen examined and sequenced) C Bactrocera lombokensis Drew and Hancock (ms1548; 1 specimen examined and sequenced) D Bactrocera quasiinfulata Drew and Romig (ms3455; 4 specimens examined and sequenced) E Bactrocera raiensis Drew and Hancock (ms1331; 2 specimens examined and 1 sequenced) F Bactrocera rubigina (Wang and Zhao) (ms3543; 259 specimens examined and 27 sequenced) G Bactrocera usitata Drew and Hancock (ms2039; 27 specimens examined and 6 sequenced).
Figures 6-9 from: Lopes-Andrade C, Webster RP, Webster VL, Alderson CA, Hughes CC, Sweeney JD (2016) The Ciidae (Coleoptera) of New Brunswick, Canada: New records and new synonyms. In: Webster RP, Bouchard P, Klimaszewski J (Eds) The Coleoptera of New Brunswick and Canada: providing baseline biodiversity and natural history data. ZooKeys 573: 339–366. https://doi.org/10.3897/zookeys.573.7445
Figures 6-9 - Dorsal view of species from New Brunswick, Canada. 6 Cis horridulus Casey 7 Cis levettei (Casey) 8 Cis striatulus Mellié 9 Cis submicans Abeille de Perrin. Scale bar: 1 mm.
Figures 10-16 from: Lopes-Andrade C, Webster RP, Webster VL, Alderson CA, Hughes CC, Sweeney JD (2016) The Ciidae (Coleoptera) of New Brunswick, Canada: New records and new synonyms. In: Webster RP, Bouchard P, Klimaszewski J (Eds) The Coleoptera of New Brunswick and Canada: providing baseline biodiversity and natural history data. ZooKeys 573: 339–366. https://doi.org/10.3897/zookeys.573.7445
Figures 10-16 - Dorsal view of species from New Brunswick, Canada. 10 Dolichocis laricinus (Mellié) 11 Dolichocis manitoba Dury 12 Hadreule elongatula (Gyllenhal) 13 Malacocis brevicollis (Casey) 14 Orthocis punctatus (Mellié) 15 Plesiocis cribrum Casey 16 Octotemnus glabriculus (Gyllenhal). Scale bar: 1 mm.
Figures 1-5 from: Lopes-Andrade C, Webster RP, Webster VL, Alderson CA, Hughes CC, Sweeney JD (2016) The Ciidae (Coleoptera) of New Brunswick, Canada: New records and new synonyms. In: Webster RP, Bouchard P, Klimaszewski J (Eds) The Coleoptera of New Brunswick and Canada: providing baseline biodiversity and natural history data. ZooKeys 573: 339–366. https://doi.org/10.3897/zookeys.573.7445
Figures 1-5 - Dorsal view of species from New Brunswick, Canada. 1 Ceracis singularis (Dury) 2 Ceracis thoracicornis (Ziegler) 3 Cis americanus Mannerheim 4 Cis angustus Hatch 5 Cis fuscipes Mellié. Scale bar: 1 mm.
A Long-term Extension Study for the Phase 3 Study of Nalmefene (339-14-001) in Patients With Alcohol Dependence
ClinicalTrials.gov study NCT02382276. IPD Sharing: Not stated. Countries: 1. Publications: 0.
Figure 7 from: Dedic M, Gutic S, Gicevic A, Becic E, Imamovic B, Markovic D, Ziga-Smajic N (2020) Application of membrane filters in determination of the adsorption of tetracycline hydrochloride on graphene oxide. Pharmacia 67(4): 339-345. https://doi.org/10.3897/pharmacia.67.e57242
Figure 7 Diffractogram of graphene oxide.
Figure 8 from: Dedic M, Gutic S, Gicevic A, Becic E, Imamovic B, Markovic D, Ziga-Smajic N (2020) Application of membrane filters in determination of the adsorption of tetracycline hydrochloride on graphene oxide. Pharmacia 67(4): 339-345. https://doi.org/10.3897/pharmacia.67.e57242
Figure 8 Diffractogram of thermally reduced graphene oxide.
Figure 6 from: Dedic M, Gutic S, Gicevic A, Becic E, Imamovic B, Markovic D, Ziga-Smajic N (2020) Application of membrane filters in determination of the adsorption of tetracycline hydrochloride on graphene oxide. Pharmacia 67(4): 339-345. https://doi.org/10.3897/pharmacia.67.e57242
Figure 6 Raman spectrum of thermally reduced graphene oxide.
Figure 3 from: Dedic M, Gutic S, Gicevic A, Becic E, Imamovic B, Markovic D, Ziga-Smajic N (2020) Application of membrane filters in determination of the adsorption of tetracycline hydrochloride on graphene oxide. Pharmacia 67(4): 339-345. https://doi.org/10.3897/pharmacia.67.e57242
Figure 3 FTIR spectrum of graphene oxide.
Figure 5 from: Dedic M, Gutic S, Gicevic A, Becic E, Imamovic B, Markovic D, Ziga-Smajic N (2020) Application of membrane filters in determination of the adsorption of tetracycline hydrochloride on graphene oxide. Pharmacia 67(4): 339-345. https://doi.org/10.3897/pharmacia.67.e57242
Figure 5 Raman spectrum of graphene oxide.
Figure 4 from: Dedic M, Gutic S, Gicevic A, Becic E, Imamovic B, Markovic D, Ziga-Smajic N (2020) Application of membrane filters in determination of the adsorption of tetracycline hydrochloride on graphene oxide. Pharmacia 67(4): 339-345. https://doi.org/10.3897/pharmacia.67.e57242
Figure 4 FTIR spectrogram of thermally reduced graphene oxide.
Figure 2 from: Dedic M, Gutic S, Gicevic A, Becic E, Imamovic B, Markovic D, Ziga-Smajic N (2020) Application of membrane filters in determination of the adsorption of tetracycline hydrochloride on graphene oxide. Pharmacia 67(4): 339-345. https://doi.org/10.3897/pharmacia.67.e57242
Figure 2 UV-Vis absorption spectrum of tetracycline hydrochloride.
Figure 1 from: Dedic M, Gutic S, Gicevic A, Becic E, Imamovic B, Markovic D, Ziga-Smajic N (2020) Application of membrane filters in determination of the adsorption of tetracycline hydrochloride on graphene oxide. Pharmacia 67(4): 339-345. https://doi.org/10.3897/pharmacia.67.e57242
Figure 1 Structure of graphene in the form of a hexagonal lattice (Garg et al. 2016).
MAP 339 in Diversity and Distribution of the Amphibians and Terrestrial Reptiles of Angola Atlas of Historical and Bibliographic Records (1840-2017)
MAP 339. Distribution of Chamaelycus parkeri in Angola.
Figure 21 from: Borkenhagen K, Krupp F (2013) Taxonomic revision of the genus Carasobarbus Karaman, 1971 (Actinopterygii, Cyprinidae). ZooKeys 339: 1-53. https://doi.org/10.3897/zookeys.339.4903
Figure 21 - Carasobarbus kosswigi, holotype (ZMH 1148) from Batman Çayı.
Figure 27 from: Borkenhagen K, Krupp F (2013) Taxonomic revision of the genus Carasobarbus Karaman, 1971 (Actinopterygii, Cyprinidae). ZooKeys 339: 1-53. https://doi.org/10.3897/zookeys.339.4903
Figure 27 - Carasobarbus sublimus, live specimen from Rūdkhāneh-ye Fahlīān.
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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.