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972 results for “morphological barcode”
Figure 5 from: Chow S, Konishi K, Mekuchi M, Tamaki Y, Nohara K, Takagi M, Niwa K, Teramoto W, Manabe H, Kurogi H, Suzuki S, Ando D, Jinbo T, Kiyomoto M, Hirose M, Shimomura M, Kurashima A, Ishikawa T, Kiyomoto S (2016) DNA barcoding and morphological analyses revealed validity of Diadema clarki Ikeda, 1939 (Echinodermata, Echinoidea, Diadematidae). ZooKeys 585: 1-16. https://doi.org/10.3897/zookeys.585.8161
Figure 5 - Aboral view (A) and enlarged view of a naked space of the interambulacral area (B) in a reference dried specimen of Diadema found in Ikeda's collection. KMNH IvR 500788, original specimen No. is IK3. White streak-like remnant can be seen (A, B), and the outer and inner series of primary tubercles initiated on the 3rd and 5th coronal plates, respectively (B). Scales bars = 20 mm (A) and 10 mm (B).
Figure 3 from: Chow S, Konishi K, Mekuchi M, Tamaki Y, Nohara K, Takagi M, Niwa K, Teramoto W, Manabe H, Kurogi H, Suzuki S, Ando D, Jinbo T, Kiyomoto M, Hirose M, Shimomura M, Kurashima A, Ishikawa T, Kiyomoto S (2016) DNA barcoding and morphological analyses revealed validity of Diadema clarki Ikeda, 1939 (Echinodermata, Echinoidea, Diadematidae). ZooKeys 585: 1-16. https://doi.org/10.3897/zookeys.585.8161
Figure 3 - Underwater aboral views of four phenotypes (A–E) and color variants of phenotype I (F) of Diadema-sp, Diadema setosum (G), and Diadema savignyi (H). A KPM-NJL000036, original specimen number is AT2 designated as phenotype II B KPM-NJL000037, original specimen number is AT3 designated as phenotype III C KPM-NJL000039, original specimen number is AR59 designated as phenotype IV D KPM-NJL000038, original specimen No. is AR54 designated as phenotype V E KPM-NJL000040, original specimen No. is AR70 designated as phenotype V F color variant of phenotype I observed at Haida-ura in Mie Prefecture (Figure 1E) photographed by T. Ishikawa G Diadema setosum (DST2 in Chow et al. (2014)) H Diadema savignyi (DSV23 in Chow et al. (2014)).
Figure 1 from: Chow S, Konishi K, Mekuchi M, Tamaki Y, Nohara K, Takagi M, Niwa K, Teramoto W, Manabe H, Kurogi H, Suzuki S, Ando D, Jinbo T, Kiyomoto M, Hirose M, Shimomura M, Kurashima A, Ishikawa T, Kiyomoto S (2016) DNA barcoding and morphological analyses revealed validity of Diadema clarki Ikeda, 1939 (Echinodermata, Echinoidea, Diadematidae). ZooKeys 585: 1-16. https://doi.org/10.3897/zookeys.585.8161
Figure 1 - Localities where field observation and sampling of Diadema were performed. See Table 1 for detailed information. A Arasaki (Kanagawa Prefecture) B Tateyama (Chiba) C Mera (Shizuoka) D Shikine-jima (Tokyo) E Haida-ura (Mie) F Kushimoto (Wakayama) G Hachijo-jima (Tokyo) H Uchidomari (Ehime) I Iki-no-shima (Nagasaki) J Ojika (Nagasaki) K Mie (Nagasaki) L Shibushi (Kagoshima) M Kaimon (Kagoshima) N Tanega-shima (Kagoshima) O Yaku-shima (Kagoshima) P Amami Ohshima (Kagoshima) Q Ogasawara (Tokyo) R Motobu (Okinawa) S Sesoko (Okinawa) T Ishigaki-jima (Okinawa). Diadema setosum was observed in all areas surveyed. No Diadema savignyi but Diadema-sp were observed at localities with yellow circle, Both Diadema savignyi and Diadema-sp were observed at localities with white circle, No Diadema-sp but Diadema savignyi were observed at localities with red circle.
Figure 4 from: Chow S, Konishi K, Mekuchi M, Tamaki Y, Nohara K, Takagi M, Niwa K, Teramoto W, Manabe H, Kurogi H, Suzuki S, Ando D, Jinbo T, Kiyomoto M, Hirose M, Shimomura M, Kurashima A, Ishikawa T, Kiyomoto S (2016) DNA barcoding and morphological analyses revealed validity of Diadema clarki Ikeda, 1939 (Echinodermata, Echinoidea, Diadematidae). ZooKeys 585: 1-16. https://doi.org/10.3897/zookeys.585.8161
Figure 4 - Preserved specimen of phenotypes I (A), II (B), III (C) and V (D) of Diadema-sp, corresponding to AT1 (KPM-NJL000035) in Figure 2, and AT2, AT3 and AR54 (KPM-NJL000036‒KPM-NJL000038) in Figures 3A, B and D, respectively. All scale bars = 10 mm.
FIG. 4 in DNA Barcoding and Morphological Analyses Reveal a Cryptic Species of Miniopterus from India and Sri Lanka
FIG. 4. Portrait of M. phillipsi sp. nov. NMSL 2021.03.02.NH
FIG. 4 in DNA barcoding and morphological analyses reveal a cryptic species of Miniopterus from India and Sri Lanka
FIG. 4. Portrait of M. phillipsi sp. nov. NMSL 2021.03.02.NH
Supplementary material 1 from: Ortiz AS, Rubio RM, de Freina JJ, Guerrero JJ, Garre M, Yela JL (2023) DNA barcoding and morphology reveal European and western Asian Arctia villica (Linnaeus, 1758) as a complex of species (Lepidoptera, Erebidae, Arctiinae). ZooKeys 1159: 69-86. https://doi.org/10.3897/zookeys.1159.95225
Complete similarity matrix
Data from: An holistic ecological analysis of the diet of Cory’s shearwaters using prey morphological characters and DNA barcoding
Open the record for dataset details and reuse information.
Figure 2 from: Espinoza-Donoso S, Bobadilla D, Huanca-Mamani W, Vargas-Ortiz M, Vargas HA (2020) A new species of Ithome Chambers (Lepidoptera, Cosmopterigidae, Chrysopeleiinae) from the Atacama Desert revealed by morphology and DNA barcodes. ZooKeys 912: 125-138. https://doi.org/10.3897/zookeys.912.47562
Figure 2 Holotype of Ithome tamarugensis Vargas sp. nov. in dorsal view. Scale bar: 1 mm.
Figure 3 from: Ullah M, Yang Z, Qiao P, Zhang Y (2017) A new cryptic species of Nagiella Munroe from China revealed by DNA barcodes and morphological evidence (Lepidoptera, Crambidae, Spilomelinae). ZooKeys 679: 65-76. https://doi.org/10.3897/zookeys.679.11960
Figure 3 - Wing venation of N. occultalis sp. n.
Figure 2 from: Ullah M, Yang Z, Qiao P, Zhang Y (2017) A new cryptic species of Nagiella Munroe from China revealed by DNA barcodes and morphological evidence (Lepidoptera, Crambidae, Spilomelinae). ZooKeys 679: 65-76. https://doi.org/10.3897/zookeys.679.11960
Figure 2 - Adults, dorsal aspect A N. occultalis sp. n. B N. quadrimaculalis.
Figure 3 from: Baranov V, Lin X, Hübner J, Chimeno C (2024) Uncovering the hidden diversity of non-biting midges (Diptera, Chironomidae) from central Namibia, using morphology and DNA barcodes. African Invertebrates 65(1): 13-36. https://doi.org/10.3897/afrinvertebr.65.111920
Figure 3 Tanypus guttatipennis, male A wing B hypopygium.
Figure 6 from: Baranov V, Lin X, Hübner J, Chimeno C (2024) Uncovering the hidden diversity of non-biting midges (Diptera, Chironomidae) from central Namibia, using morphology and DNA barcodes. African Invertebrates 65(1): 13-36. https://doi.org/10.3897/afrinvertebr.65.111920
Figure 6 Pseudosmittia unniae adult male A Head B wing C scutum D hypopygium E virga.
Figure 5 from: Baranov V, Lin X, Hübner J, Chimeno C (2024) Uncovering the hidden diversity of non-biting midges (Diptera, Chironomidae) from central Namibia, using morphology and DNA barcodes. African Invertebrates 65(1): 13-36. https://doi.org/10.3897/afrinvertebr.65.111920
Figure 5 Pseudosmittia unniae adult male A, B heads C, D abdomens with hypopygium.
Figure 8 from: Baranov V, Lin X, Hübner J, Chimeno C (2024) Uncovering the hidden diversity of non-biting midges (Diptera, Chironomidae) from central Namibia, using morphology and DNA barcodes. African Invertebrates 65(1): 13-36. https://doi.org/10.3897/afrinvertebr.65.111920
Figure 8 Paraphaenocladius namibiae sp.nov. holotype, adult male A head B hypogium
Figure 7 from: Baranov V, Lin X, Hübner J, Chimeno C (2024) Uncovering the hidden diversity of non-biting midges (Diptera, Chironomidae) from central Namibia, using morphology and DNA barcodes. African Invertebrates 65(1): 13-36. https://doi.org/10.3897/afrinvertebr.65.111920
Figure 7 Paraphaenocladius namibiae sp. nov. holotype, adult male A head B hypopygium C wing.
Figure 4 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 4 Trouessartianiltavae Constantinescu, sp. n., female paratype: dorsal view of idiosoma.
Figure 2 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 2 Trouessartianiltavae Constantinescu, sp. n., male holotype: ventral view of idiosoma.
Figure 1 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 1 Trouessartianiltavae Constantinescu, sp. n., male holotype: dorsal view of idiosoma.
Figure 5 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 5 Trouessartianiltavae Constantinescu, sp. n., female paratype: ventral view of idiosoma.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.