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Figure 3 from: Mulcahy DG, Lee JL, Miller AH, Chand M, Thura MK, Zug GR (2018) Filling the BINs of life: Report of an amphibian and reptile survey of the Tanintharyi (Tenasserim) Region of Myanmar, with DNA barcode data. ZooKeys 757: 85-152. https://doi.org/10.3897/zookeys.757.24453
Figure 3 Selected amphibians found during this study's expedition. A Phrynoidis aspera (USNM 586871) B Limnonectes doriae (USNM 586911) C Microhyla fissipes (USNM 586949) D Odorrana hosii (USNM 586980) E Chalcorana eschatia (USNM 586971) F Fejervarya sp. (USNM 586881) G Occidozyga martensii (USNM 586930) H Sylvirana malayana (USNM 586970). Photos by Myint Kyaw Thura and Daniel G. Mulcahy.
Figure 5 from: Raupach MJ, Hannig K, Morinière J, Hendrich L (2018) A DNA barcode library for ground beetles of Germany: the genus Amara Bonelli, 1810 (Insecta, Coleoptera, Carabidae). ZooKeys 759: 57-80. https://doi.org/10.3897/zookeys.759.24129
Figure 5 - Maximum statistical parsimony network of Amara alpina (Paykull, 1790) and Amara torrida Panzer, 1796. Used parameters included default settings for connection steps whereas gaps were treated as fifth state. Each line represents a single mutational change whereas small black lines indicate missing haplotypes. The numbers of analysed specimens (n) are listed, the diameter of the circles is proportional to the number of haplotypes sampled (see given open half circles with numbers). Scale bars 1 mm. Beetle images were obtained from www.eurocarabidae.de.
Figure 3 from: Raupach MJ, Hannig K, Morinière J, Hendrich L (2018) A DNA barcode library for ground beetles of Germany: the genus Amara Bonelli, 1810 (Insecta, Coleoptera, Carabidae). ZooKeys 759: 57-80. https://doi.org/10.3897/zookeys.759.24129
Figure 3 - Maximum statistical parsimony networks of two species pairs: A Amara ovata (Fabricius, 1792) and Amara similata (Gyllenhal, 1810), and B Amara familiaris (Duftschmid, 1812) and Amara lucida (Duftschmid, 1812). Used parameters included default settings for connection steps whereas gaps were treated as fifth state. Each line represents a single mutational change whereas small black lines indicate missing haplotypes. The numbers of analysed specimens (n) are listed, the diameter of the circles is proportional to the number of haplotypes sampled (see given open half circles with numbers). Scale bars 1 mm. Beetle images were obtained from www.eurocarabidae.de.
Figure 4 from: Raupach MJ, Hannig K, Morinière J, Hendrich L (2018) A DNA barcode library for ground beetles of Germany: the genus Amara Bonelli, 1810 (Insecta, Coleoptera, Carabidae). ZooKeys 759: 57-80. https://doi.org/10.3897/zookeys.759.24129
Figure 4 - Maximum statistical parsimony network of the Amara communis complex. Used parameters included default settings for connection steps whereas gaps were treated as fifth state. Each line represents a single mutational change whereas small black lines indicate missing haplotypes. The numbers of analysed specimens (n) are listed, the diameter of the circles is proportional to the number of haplotypes sampled (see given open half circles with numbers). Scale bars 1 mm. Beetle images were obtained from www.eurocarabidae.de.
Figure 1 from: Raupach MJ, Hannig K, Morinière J, Hendrich L (2018) A DNA barcode library for ground beetles of Germany: the genus Amara Bonelli, 1810 (Insecta, Coleoptera, Carabidae). ZooKeys 759: 57-80. https://doi.org/10.3897/zookeys.759.24129
Figure 1 - An image collection of some representative species of the analysed ground beetles. A Amara (Amara) similata (Gyllenhal, 1810) B Amara (Amarocelia) erratica (Duftschmid, 1812) C Amara (Bradytus) fulva (Müller, 1776) D Amara (Curtonotus) convexiuscula (Marsham, 1802) E Amara (Leirides) spectabilis Schau, 1858 F Amara (Paracelia) quenseli (Schönherr, 1806) G Amara (Xenocelia) cursitans Zimmermann, 1931 H Amara (Zezea) kulti Fassati, 1947, and I Zabrus tenebrioides Goeze, 1777. Scale bars 1 mm. All images were obtained from www.eurocarabidae.de.
Figure 6 from: Guimarães EC, De Brito PS, Feitosa LM, Carvalho-Costa LF, Ottoni FP (2018) A new species of Hyphessobrycon Durbin from northeastern Brazil: evidence from morphological data and DNA barcoding (Characiformes, Characidae). ZooKeys 765: 79-101. https://doi.org/10.3897/zookeys.765.23157
Figure 6 Bayesian phylogenetic tree including Hyphessobrycon piorskii sp. n (in red) and other congeners. Number above branches are posterior probability values.
Figure 7 from: Guimarães EC, De Brito PS, Feitosa LM, Carvalho-Costa LF, Ottoni FP (2018) A new species of Hyphessobrycon Durbin from northeastern Brazil: evidence from morphological data and DNA barcoding (Characiformes, Characidae). ZooKeys 765: 79-101. https://doi.org/10.3897/zookeys.765.23157
Figure 7 Geographical distribution of Hyphessobrycon piorskii sp. n. Red circle denote Holotype and black circle denote paratypes.
Figure 3 from: Guimarães EC, De Brito PS, Feitosa LM, Carvalho-Costa LF, Ottoni FP (2018) A new species of Hyphessobrycon Durbin from northeastern Brazil: evidence from morphological data and DNA barcoding (Characiformes, Characidae). ZooKeys 765: 79-101. https://doi.org/10.3897/zookeys.765.23157
Figure 3 Hyphessobrycon piorskii sp. n. CICCAA 00697, 19.3 mm SL; jaw suspensory: A Premaxillary. B Maxilla C Dentary (Photographed by Erick Guimarães).
Figure 1 from: Guimarães EC, De Brito PS, Feitosa LM, Carvalho-Costa LF, Ottoni FP (2018) A new species of Hyphessobrycon Durbin from northeastern Brazil: evidence from morphological data and DNA barcoding (Characiformes, Characidae). ZooKeys 765: 79-101. https://doi.org/10.3897/zookeys.765.23157
Figure 1 Hyphessobrycon piorskii sp. n. A CICCAA 00695, holotype, 25.9 mm SL, Brazil: Maranhão State: Munim River basin B CICCAA 00881, paratype, 29.4 mm SL, Brazil: Maranhão State: Munim River basin (photographed by Felipe Ottoni).
Figure 2 from: Guimarães EC, De Brito PS, Feitosa LM, Carvalho-Costa LF, Ottoni FP (2018) A new species of Hyphessobrycon Durbin from northeastern Brazil: evidence from morphological data and DNA barcoding (Characiformes, Characidae). ZooKeys 765: 79-101. https://doi.org/10.3897/zookeys.765.23157
Figure 2 Hyphessobrycon piorskii sp. n. A CICCAA 00698, paratype, 26.9 mm SL, Brazil: Maranhão State: Munim River basin; living specimen photographed immediately after collection B CICCAA 00089, paratype, 25.2 mm SL, Brazil: Maranhão State: Munim River basin; living specimen photographed immediately after collection (photographed by Felipe Ottoni).
Figure 5 from: Guimarães EC, De Brito PS, Feitosa LM, Carvalho-Costa LF, Ottoni FP (2018) A new species of Hyphessobrycon Durbin from northeastern Brazil: evidence from morphological data and DNA barcoding (Characiformes, Characidae). ZooKeys 765: 79-101. https://doi.org/10.3897/zookeys.765.23157
Figure 5 Hyphessobrycon piorskii sp. n. CICCAA 00697, male, 19.3 mm SL, bony hooks on pelvic fin (photographed by Erick Guimarães).
Figure 8 from: Guimarães EC, De Brito PS, Feitosa LM, Carvalho-Costa LF, Ottoni FP (2018) A new species of Hyphessobrycon Durbin from northeastern Brazil: evidence from morphological data and DNA barcoding (Characiformes, Characidae). ZooKeys 765: 79-101. https://doi.org/10.3897/zookeys.765.23157
Figure 8 Collecting sites of Hyphessobrycon piorskii sp. n. A stream at the Anapurus municipality B stream at Mata de Itamacaoca C stream at Mata de Itamacaoca D stream at Mata Fome, Barreirinhas municipality (photographed by Felipe Ottoni).
Figure 4 from: Guimarães EC, De Brito PS, Feitosa LM, Carvalho-Costa LF, Ottoni FP (2018) A new species of Hyphessobrycon Durbin from northeastern Brazil: evidence from morphological data and DNA barcoding (Characiformes, Characidae). ZooKeys 765: 79-101. https://doi.org/10.3897/zookeys.765.23157
Figure 4 Hyphessobrycon piorskii sp. n. CICCAA 00697, male, 19.3 mm SL, bony hooks on anal fin (photographed by Erick Guimarães).
FIGURE 4 in Application of DNA Barcoding in the Classification of Grasshoppers (Orthoptera: Acridoidea) - A Case Study of grasshoppers from Hebei Province, China
FIGURE 4. Variation in the number of MOTUs defined at 0 to50 cut-off values for DNA barcoding
Figure 7 from: Constantinescu IC, Popa OP, Popa LO, Cobzaru I, Khlur B MD, Adam C (2018) A new feather mite species of the genus Trouessartia Canestrini, 1899 (Acarina, Trouessartiidae) – an integrative description (morphology and DNA barcoding data). ZooKeys 789: 19-35. https://doi.org/10.3897/zookeys.789.27829
Figure 7 Evolutionary relationship between Trouessartia species inferred using the Neighbor-Joining method. The bootstrap test result (10000 replicates) is shown next to each branch.
Figure 6 from: Constantinescu IC, Popa OP, Popa LO, Cobzaru I, Khlur B MD, Adam C (2018) A new feather mite species of the genus Trouessartia Canestrini, 1899 (Acarina, Trouessartiidae) – an integrative description (morphology and DNA barcoding data). ZooKeys 789: 19-35. https://doi.org/10.3897/zookeys.789.27829
Figure 6 Trouessartianiltavae Constantinescu, sp. n., A–D details of female legs, dorsal view: A–leg I, B–leg II, C–leg III, D–leg IV; E–spermatheca and spermaducts of female; Abbreviations: hs – head of spermatheca; pd – primary spermaduct; sd – secondary spermaduct.
Figure 8 from: Constantinescu IC, Popa OP, Popa LO, Cobzaru I, Khlur B MD, Adam C (2018) A new feather mite species of the genus Trouessartia Canestrini, 1899 (Acarina, Trouessartiidae) – an integrative description (morphology and DNA barcoding data). ZooKeys 789: 19-35. https://doi.org/10.3897/zookeys.789.27829
Figure 8 Evolutionary relationship between Trouessartia species inferred using the Maximum Likelihood method based on the Tamura-Nei model. The bootstrap test (10000 replicates) shown next to the branches.
Figure 3 from: Constantinescu IC, Popa OP, Popa LO, Cobzaru I, Khlur B MD, Adam C (2018) A new feather mite species of the genus Trouessartia Canestrini, 1899 (Acarina, Trouessartiidae) – an integrative description (morphology and DNA barcoding data). ZooKeys 789: 19-35. https://doi.org/10.3897/zookeys.789.27829
Figure 3 Trouessartianiltavae Constantinescu, sp. n., A–D details of male legs, dorsal view: A–leg I, B–leg II, C–leg III, D–leg IV; E–opisthosoma of male, ventral view. Abbreviations: bs – basal sclerite, ea – epiandrum, gp – genital papillae, pm – parameres, pp – postgenital plaque.
Figure 6 from: Jochum A, Ruthensteiner B, Kampschulte M, Martels G, Kneubühler J, Favre A (2018) Fulfilling the taxonomic consequence after DNA Barcoding: Carychium panamaense sp. n. (Eupulmonata, Ellobioidea, Carychiidae) from Panama is described using computed tomographic (CT) imaging. ZooKeys 795: 1-12. https://doi.org/10.3897/zookeys.795.29339
Figure 6 Type locality of Carychiumpanamaense sp. n., A El Retoño Trail, La Amistad International Park, Cerro Punta, Chiriquí Prov., Panama B broadleaf forest litter with white arrows indicating C.panamaense sp. n. on leaves C–D close-up view of live individuals crawling on leaf.
Figure 5 from: Jochum A, Ruthensteiner B, Kampschulte M, Martels G, Kneubühler J, Favre A (2018) Fulfilling the taxonomic consequence after DNA Barcoding: Carychium panamaense sp. n. (Eupulmonata, Ellobioidea, Carychiidae) from Panama is described using computed tomographic (CT) imaging. ZooKeys 795: 1-12. https://doi.org/10.3897/zookeys.795.29339
Figure 5 Comparative material (Jochum et al. 2017), C.belizeense Jochum & Weigand, 2017 paratype (NMBE 549924/8), C.costaricanum E. von Martens, 1898 (RBINS 10591), C.floridanum Clapp, 1918 (CM 46540), C.hardiei Jochum & Weigand, 2017 paratype (NMBE 549921/8), C.jardineanum (Chitty, 1853) (AJC 2321), C.mexicanum Pilsbry, 1891 (AJC 2092). CT images showing columellar apparatus, configuration of the columellar lamella and umbilical perspectives showing peristome configuration in allied Central American, Southeast USA and Caribbean species. Scale bar: 1 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)
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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.