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2,402 results for “East Asia”

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Figure 5 from: Dayrat B, Goulding TC, Khalil M, Apte D, Tan SH (2019) A new species and new records of Onchidium slugs (Gastropoda, Euthyneura, Pulmonata, Onchidiidae) in South-East Asia. ZooKeys 892: 27-57. https://doi.org/10.3897/zookeys.892.39524

Figure 5 Habitats, Onchidium melakenseA type locality, Peninsular Malaysia, Kuala Sepatang, old forest with tall Rhizophora trees, high in the tidal zone (ferns), in educational mangrove preserve (st 258) B Sumatra, Pulau Sinaboi, mangrove forest with medium Rhizophora and Avicennia trees, dead logs, hard mud (st 73) C old log with crevices which O. melakense typically favors (st 73) D mangrove pit viper (arrow) resting by a log (st 73).

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Figure 9 from: Dayrat B, Goulding TC, Khalil M, Apte D, Tan SH (2019) A new species and new records of Onchidium slugs (Gastropoda, Euthyneura, Pulmonata, Onchidiidae) in South-East Asia. ZooKeys 892: 27-57. https://doi.org/10.3897/zookeys.892.39524

Figure 9 Radula, Onchidium melakense, Sumatra (UMIZ 00001) A left, half rows, [1720] B rachidian and innermost lateral teeth, [1720] C lateral teeth, [1723] D outermost, lateral teeth, [1723]. Abbreviations: 1llt first left lateral tooth, 1rlt first right lateral tooth, 2llt second left lateral tooth, 2rlt second right lateral tooth, hlt hook of lateral tooth, lc lateral cusp of rachidian tooth, mc median cusp of rachidian tooth, rt rachidian tooth. Scale bars: 200 μm (A), 10 μm (B), 60 μm (C), 20 μm (D).

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Figure 8 from: Dayrat B, Goulding TC, Khalil M, Apte D, Tan SH (2019) A new species and new records of Onchidium slugs (Gastropoda, Euthyneura, Pulmonata, Onchidiidae) in South-East Asia. ZooKeys 892: 27-57. https://doi.org/10.3897/zookeys.892.39524

Figure 8 Radula, Onchidium melakense, Peninsular Malaysia, holotype [5979] (USMMC 00075) A rachidian and innermost lateral teeth B right lateral teeth C right lateral teeth. Abbreviations: 1llt first left lateral tooth, 1rlt first right lateral tooth, bls basal lateral spine, hlt hook of lateral tooth, lc lateral cusp of rachidian tooth, mc median cusp of rachidian tooth, rt rachidian tooth. Scale bars: 10 μm (A,) 20 μm (B, C).

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Figure 1 from: Dayrat B, Goulding TC, Khalil M, Apte D, Tan SH (2019) A new species and new records of Onchidium slugs (Gastropoda, Euthyneura, Pulmonata, Onchidiidae) in South-East Asia. ZooKeys 892: 27-57. https://doi.org/10.3897/zookeys.892.39524

Figure 1 Phylogenetic tree showing the relationships between Onchidium individuals based on mitochondrial COI and 16S DNA sequences. Numbers by the nodes are the bootstrap values (Maximum Likelihood analysis) and the posterior probabilities (Bayesian analysis); only significant numbers (> 65% and > 0.9) are indicated. All other sequences serve as outgroups. Information on specimens can be found in the lists of material examined and Table 1. The colors used for each Onchidium species are the same as those used in Figs 2–4.

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Figure 4 from: Dayrat B, Goulding TC, Khalil M, Apte D, Tan SH (2019) A new species and new records of Onchidium slugs (Gastropoda, Euthyneura, Pulmonata, Onchidiidae) in South-East Asia. ZooKeys 892: 27-57. https://doi.org/10.3897/zookeys.892.39524

Figure 4 Geographic distribution of the four known Onchidium species. Dots correspond to known records. The colors used for each Onchidium species are the same as those used in Figs 1–3.

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Figure 7 from: Dayrat B, Goulding TC, Khalil M, Apte D, Tan SH (2019) A new species and new records of Onchidium slugs (Gastropoda, Euthyneura, Pulmonata, Onchidiidae) in South-East Asia. ZooKeys 892: 27-57. https://doi.org/10.3897/zookeys.892.39524

Figure 7 External morphology and digestive system, Onchidium melakense, Peninsular Malaysia A–C holotype [5979] (USMMC 00075) D [5978] (USMMC 00076) A dorsal, anterior view B posterior, ventral view (dotted lines indicate where the foot was cut to show the anus) C digestive system, dorsal view D digestive system, dorsal view. Abbreviations: a anus, ddg dorsal lobe of digestive gland, f foot (pedal sole), fo female opening, h hyponotum, i intestine, mo male opening, ol oral lobe, ot ocular tentacle, p pneumostome, pdg posterior lobe of the digestive gland, ppg peripodial groove, rg rectal gland, st stomach, tp transversal protuberance (on oral lobe). Scale bars: 5 mm (A–C), 3 mm (D).

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Figure 8 from: Han H-Y, Ro K-E (2019) DNA barcoding reveals a species group of the genus Campiglossa (Diptera, Tephritidae, Tephritinae) with recognition of a new species from East Asia and previously unknown females of Campiglossa coei (Hardy). ZooKeys 899: 1-36. https://doi.org/10.3897/zookeys.899.46779

Figure 8 Genitalia of Campiglossa paramelaena sp. nov. A epandrial complex, lateral view B epandrial complex, caudal view C glans and preglans of distiphallus D female postabdomen with aculeus and eversible membrane pulled out, ventral view E magnified view of aculeus tip F magnified view of oviscape and eversible membrane G spermatheca.

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Figure 7 from: Han H-Y, Ro K-E (2019) DNA barcoding reveals a species group of the genus Campiglossa (Diptera, Tephritidae, Tephritinae) with recognition of a new species from East Asia and previously unknown females of Campiglossa coei (Hardy). ZooKeys 899: 1-36. https://doi.org/10.3897/zookeys.899.46779

Figure 7 A–ECampiglossa paramelaena sp. nov. A male, lateral view B male, dorsal view C male wing D female, lateral view E female, dorsal view F female, wing G–KC. melaenaG male, lateral view H male, dorsal view I male, wing J holotype male, wing K female, wing J, K Reproduced from Korneyev and Ovchinnikova (2004) with permission from Valery Korneyev.

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Figure 6 from: Han H-Y, Ro K-E (2019) DNA barcoding reveals a species group of the genus Campiglossa (Diptera, Tephritidae, Tephritinae) with recognition of a new species from East Asia and previously unknown females of Campiglossa coei (Hardy). ZooKeys 899: 1-36. https://doi.org/10.3897/zookeys.899.46779

Figure 6 Genitalia of Campiglossa misellaA epandrial complex, lateral view B epandrial complex, caudal view C glans and preglans of distiphallus D female postabdomen with aculeus and eversible membrane pulled out, ventral view E magnified view of aculeus tip F magnified view of oviscape and eversible membrane G Spermatheca.

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Figure 4 from: Han H-Y, Ro K-E (2019) DNA barcoding reveals a species group of the genus Campiglossa (Diptera, Tephritidae, Tephritinae) with recognition of a new species from East Asia and previously unknown females of Campiglossa coei (Hardy). ZooKeys 899: 1-36. https://doi.org/10.3897/zookeys.899.46779

Figure 4 A–FCampiglossa coeiA male, lateral view B male, dorsal view C male wing D female, lateral view E female, dorsal view F female wing G–KC. misellaG male, lateral view H male, lateral view I male, dorsal view J female, lateral view K female, dorsal view.

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Figure 3 from: Han H-Y, Ro K-E (2019) DNA barcoding reveals a species group of the genus Campiglossa (Diptera, Tephritidae, Tephritinae) with recognition of a new species from East Asia and previously unknown females of Campiglossa coei (Hardy). ZooKeys 899: 1-36. https://doi.org/10.3897/zookeys.899.46779

Figure 3 The habitat of Campiglossa coei. CHINA: Yunnan, Mengsong, Manlvcunhanzudazhai, small hilltop, 22°07'44.0"N, 100°28'51.7"E, 1,690 m, 12 July 2011. Many more than 100 individuals of C. coei were collected along with at least ten other species of the subfamily Tephritinae.

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Figure 5 from: Han H-Y, Ro K-E (2019) DNA barcoding reveals a species group of the genus Campiglossa (Diptera, Tephritidae, Tephritinae) with recognition of a new species from East Asia and previously unknown females of Campiglossa coei (Hardy). ZooKeys 899: 1-36. https://doi.org/10.3897/zookeys.899.46779

Figure 5 Genitalia of Campiglossa coeiA epandrial complex, lateral view B epandrial complex, caudal view C glans and preglans of distiphallus D female postabdomen with aculeus and eversible membrane pulled out, ventral view E magnified view of aculeus tip F magnified view of oviscape and eversible membrane G spermatheca.

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Figure 2 from: Han H-Y, Ro K-E (2019) DNA barcoding reveals a species group of the genus Campiglossa (Diptera, Tephritidae, Tephritinae) with recognition of a new species from East Asia and previously unknown females of Campiglossa coei (Hardy). ZooKeys 899: 1-36. https://doi.org/10.3897/zookeys.899.46779

Figure 2 MEGA X analysis produced a maximum-likelihood (ML) phylogram of the 76 selected Campiglossa (ingroup) and ten Tephritis (outgroup) DNA barcode sequences using the general time reversible model. The first number on each branch is the bootstrap support from ML analysis (pb); the second number represents posterior probability (pp) from Bayesian inference (BI). Samples in green letters were extracted from BOLD systems (www.boldsystems.org).

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Figure 11 from: Han H-Y, Ro K-E (2019) DNA barcoding reveals a species group of the genus Campiglossa (Diptera, Tephritidae, Tephritinae) with recognition of a new species from East Asia and previously unknown females of Campiglossa coei (Hardy). ZooKeys 899: 1-36. https://doi.org/10.3897/zookeys.899.46779

Figure 11 Macro photography setups for multi-day collecting trips. A A simple handmade collapsible macro-photography unit for focus stacking B A setup for photographing live tephritid flies. Please see the Materials and methods for details of the camera setups.

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Figure 10 from: Han H-Y, Ro K-E (2019) DNA barcoding reveals a species group of the genus Campiglossa (Diptera, Tephritidae, Tephritinae) with recognition of a new species from East Asia and previously unknown females of Campiglossa coei (Hardy). ZooKeys 899: 1-36. https://doi.org/10.3897/zookeys.899.46779

Figure 10 A Holotype male of Campiglossa favillacea Ito, 2011 (new synonym of C. coei, UOPJ) B from left, two paratype females and holotype of C. favillacea [UOPJ] C holotype female of C. roscida Ito, 2011 (new synonym of C. misella) D ditto E holotype or paratype male wing of C. pishanicaF holotype male wing of C. propriaE, F reproduced from Wang (1998) with permission from Xing-Jian Wang.

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Figure 1 from: Han H-Y, Ro K-E (2019) DNA barcoding reveals a species group of the genus Campiglossa (Diptera, Tephritidae, Tephritinae) with recognition of a new species from East Asia and previously unknown females of Campiglossa coei (Hardy). ZooKeys 899: 1-36. https://doi.org/10.3897/zookeys.899.46779

Figure 1 The genus Campiglossa portion of the neighbor-joining tree based on the Kimura 2-parameter distances of 7,223 tephritid DNA barcode sequences mostly extracted from BOLD Systems (www.boldsystems.org, as of Jan 2019), including 55 newly obtained Campiglossa sequences (names prefixed with Z). All 211 Campiglossa, Homoeotricha, and Dioxyna (regarded to be the genus Campiglossa, sensu lato, in this study) sequences were recovered as a monophyletic clade in this analysis. Putative species group names (in red) are marked on the respective branches.

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Figure 9 from: Han H-Y, Ro K-E (2019) DNA barcoding reveals a species group of the genus Campiglossa (Diptera, Tephritidae, Tephritinae) with recognition of a new species from East Asia and previously unknown females of Campiglossa coei (Hardy). ZooKeys 899: 1-36. https://doi.org/10.3897/zookeys.899.46779

Figure 9 Male genitalia of Campiglossa melaenaA epandrial complex, lateral view B epandrial complex, caudal view C glans and preglans of distiphallus.

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Figure 9 from: Zamani A, Marusik YM, Šestáková A (2020) On Araniella and Neoscona (Araneae, Araneidae) of the Caucasus, Middle East and Central Asia. ZooKeys 906: 13-40. https://doi.org/10.3897/zookeys.906.47978

Figure 9 Anterior view of epigynes of Araniella villanii sp. nov. (A), A. proxima (B), A. mithra sp. nov. (C) and A. opisthographa (D).

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Figure 8 from: Zamani A, Marusik YM, Šestáková A (2020) On Araniella and Neoscona (Araneae, Araneidae) of the Caucasus, Middle East and Central Asia. ZooKeys 906: 13-40. https://doi.org/10.3897/zookeys.906.47978

Figure 8 Posterior view of epigynes of Araniella villanii sp. nov. (A), A. proxima (B), A. mithra sp. nov. (C), A. opisthographa (D) and A. nigromaculata (E). Scale bars: 0.2 mm.

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Figure 7 from: Zamani A, Marusik YM, Šestáková A (2020) On Araniella and Neoscona (Araneae, Araneidae) of the Caucasus, Middle East and Central Asia. ZooKeys 906: 13-40. https://doi.org/10.3897/zookeys.906.47978

Figure 7 Ventral view of epigynes of Araniella villanii sp. nov. (A), A. proxima (B), A. mithra sp. nov. (C) and A. opisthographa (D). Scale bar: 0.2 mm.

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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.

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Last verified 2026-04-29Open record