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FIG. 2 in A new species of the genus Coryphella (Gastropoda: Nudibranchia) from the Kuril Islands
FIG. 2. Living specimens of Coryphella alexanderi sp. nov. A. Paratype ZMMU WS14380 in natural environment. B. Holotype MIMB42268, dorsal view, specimens was damaged during collection. C. Holotype MIMB42268, dorsolateral view. D. Paratypes MIMB42269, specimens were damaged during collection. Scale bar: 5 mm. Photo credits: A – Alexander Semenov. BD – Anastassya Maiorova. РИС. 2. ПриЖиЗненные фотографии Coryphella alexanderi sp. nov. A. Паратип ZMMU WS14380 в естественной среде. B. Голотип MIMB42268, вид с дорсальной стороны, особь была неЗначительно повреЖдена при сборе. C. Голотип MIMB42268, вид с дорсолатеральной стороны. D. Паратипы MIMB42269, особи были повреЖдены при сборе. МасштабнаЯ линейка: 5 мм. Авторство фотографий: A – Александр Семенов. B–D – АнастасиЯ Майорова.
FIG. 1 in A new species of the genus Coryphella (Gastropoda: Nudibranchia) from the Kuril Islands
FIG. 1. Maximum likelihood phylogenetic tree of the genus Coryphella based on the concatenated dataset COI+16S+H3+28S. Numbers above branches indicate the posterior probabilities from Bayesian Inference (for PP> 0.95), numbers below branches – bootstrap values from Maximum likelihood (for BS> 60%). Blocks on the right indicate ABGD species delimitation results based on COI dataset. For Coryphella sanamyanae the ABGD analysis was not conducted since this species lacks COI data. РИС. 1. МолекулЯрнофилогенетическое дерево длЯ рода Coryphella, построенное на основании комбинированного выравниваниЯ (COI+16S+H3+28S) методом максимального правдоподобиЯ. ЗначениЯ над ветвЯми обоЗначают апостериорные вероЯтности (> 0.95). ЗначениЯ под ветвЯми обоЗначают поддерЖки бутстрепа (> 60%). Голубые блоки справа обоЗначают реЗультат делимитационного ABGD теста. ДлЯ Coryphella sanamyanae реЗультаты ABGD теста отсутствуют, поскольку последовательности СОI Этого вида недоступны в открытых баЗах данных.
FIG. 3 in A new species of the genus Coryphella (Gastropoda: Nudibranchia) from the Kuril Islands
FIG. 3. Buccal armature in Coryphella alexanderi sp. nov. A. Holotype MIMB42268, right jaw plate. B. Holotype MIMB42268, masticatory border of jaw plate. C. Holotype MIMB42268, details of denticulation on masticatory border. D. Holotype MIMB42268, radula. E. Holotype MIMB42268, anterior radular potion. F. Holotype MIMB42268, middle radular potion. G. Holotype MIMB42268, posterior radular potion. H. Paratype ZMMU WS14380, radula. I. Paratype ZMMU WS14380, anterior radular portion. K. Paratype ZMMU WS14380, rachidian and lateral teeth. L. Paratype ZMMU WS14380, denticulation of rachidian teeth. Scale bars: A, B, H – 150 µm. B – 100 µm. C – 10 µm. E–G, I–K – 30 µm. FIG. 3. Глоточное вооруЖение Coryphella alexanderi sp. nov. A. Голотип MIMB42268, праваЯ челюстнаЯ пластинка. B. Голотип MIMB42268, ЖевательнаЯ поверхность челюсти. C. Голотип MIMB42268, детали Зубчиков Жевательной поверхности. D. Голотип MIMB42268, радула. E. Голотип MIMB42268, переднЯЯ часть радулы. F. Голотип MIMB42268, среднЯЯ часть радулы. G. Голотип MIMB42268, ЗаднЯЯ часть радулы. H. Паратип ZMMU WS14380, радула. I. Паратип ZMMU WS14380, переднЯЯ часть радулы. K. Паратип ZMMU WS14380, центральный и латеральные Зубы. L. Паратип ZMMU WS14380, особенности ЗаЗубренности центрального Зуба. Масштабные линейки: A, B, H – 150 µм. B – 100 µм. C – 10 µм. E–G, I–K – 30 µм.
Figure 8 in Iolaus freyaallanae sp. nov. (Papilionoidea: Lycaenidae: Theclinae) - a new species from Zambia in the genus Iolaus Hübner, [1819], subgenus Iolaphilus Stempffer & Bennett, 1958
Figure 8 – Projected distribution of I. gabunica gabunica (there are no records from the striped areas in Equatorial Guinea and in the DRC) and confirmed occurrences of other members of the I. gabunica species group.
Figure 7 in Iolaus freyaallanae sp. nov. (Papilionoidea: Lycaenidae: Theclinae) - a new species from Zambia in the genus Iolaus Hübner, [1819], subgenus Iolaphilus Stempffer & Bennett, 1958
Figure 7 – Female genitalia: Iolaus freyaallanae lateral view – A, lamella antevaginalis and papillae analis dorsal view - C; I. gabunica lateral view – B; lamella antevaginalis and papillae analis ventral view – D.
Figure 6 in Iolaus freyaallanae sp. nov. (Papilionoidea: Lycaenidae: Theclinae) - a new species from Zambia in the genus Iolaus Hübner, [1819], subgenus Iolaphilus Stempffer & Bennett, 1958
Figure 6 – Females: Iolaus freyaallanae (paratype) upperside – A, underside – D; I. gabunica (CAR) upperside – B, underside – E; I. liberiana (paratype, Liberia, Nimba Mountains) upperside – C, underside – F.
Figure 4 in Iolaus freyaallanae sp. nov. (Papilionoidea: Lycaenidae: Theclinae) - a new species from Zambia in the genus Iolaus Hübner, [1819], subgenus Iolaphilus Stempffer & Bennett, 1958
Figure 4 – Male genitalia (posterior view): Iolaus freyaallanae (holotype) – A; I. gabunica (CAR) – B; I. liberiana (holotype) – C.
Figure 2 in Iolaus freyaallanae sp. nov. (Papilionoidea: Lycaenidae: Theclinae) - a new species from Zambia in the genus Iolaus Hübner, [1819], subgenus Iolaphilus Stempffer & Bennett, 1958
Figure 2 – Males: Iolaus freyaallanae (holotype) upperside – A, underside – D; I. gabunica gabunica (CAR) upperside – B, underside – E; I. liberiana (holotype) upperside – C, underside – F.
Figure 5 in Iolaus freyaallanae sp. nov. (Papilionoidea: Lycaenidae: Theclinae) - a new species from Zambia in the genus Iolaus Hübner, [1819], subgenus Iolaphilus Stempffer & Bennett, 1958
Figure 5 – Male genitalia (dorsal view): Iolaus freyaallanae (holotype) – A; I. gabunica (CAR) – B; I. liberiana (holotype) – C.
Figure 1 in Iolaus freyaallanae sp. nov. (Papilionoidea: Lycaenidae: Theclinae) - a new species from Zambia in the genus Iolaus Hübner, [1819], subgenus Iolaphilus Stempffer & Bennett, 1958
Figure 1 – Male genitalia of Iolaus gabunica, re-drawn from Stempffer & Bennett's original (1958): uncus, subunci and tegumen – A; valvae and fultura inferior – B (note that from the ventral view the valvae and fultura – misleadingly – look fused, on Fig. 4B the separate valvae and fultura – fused only at the base – are clearly visible); aedeagus – C.
Figure 3 in Iolaus freyaallanae sp. nov. (Papilionoidea: Lycaenidae: Theclinae) - a new species from Zambia in the genus Iolaus Hübner, [1819], subgenus Iolaphilus Stempffer & Bennett, 1958
Figure 3 – Male genitalia and aedeagi (lateral view): Iolaus freyaallanae (holotype) – A, D; I. gabunica gabunica (CAR) – B, E; I. liberiana (holotype) – C, F.
Figure 1 in Studies on African Crambidae I- a new genus and species from Africa (Pyraloidea: Crambidae: Spilomelinae)
Figure 1 – Metasibotys guineasoudanensis sp. nov. ♂. Wing venation – above: forewing; below: hind wing. PT 2129.
Fig. 7 in A new genus and species of spring snails (Caenogastropoda, Tateidae) from the ultramafic South of New Caledonia
Fig. 7. Male genitalia of Viriiella touaouroua gen. et sp. nov. Abbreviations: pe = penis; pr = prostate; pv = pallial vas deferens; te = testis; vd = vas deferens; vs = vesicula seminalis.
Fig. 9 in A new genus and species of spring snails (Caenogastropoda, Tateidae) from the ultramafic South of New Caledonia
Fig. 9. Phylogenetic analyses. Maximum likelihood (ML) tree and section of Bayesian tree (BA). Support values are bootstrap support values/posterior probabilities; the latter are omitted for the New Caledonian taxa in the ML tree, the former in the Bayesian tree fragment. Scale bars = 0.1 substitutions/ site.
Fig. 6 in A new genus and species of spring snails (Caenogastropoda, Tateidae) from the ultramafic South of New Caledonia
Fig. 6. Female genitalia of Viriiella touaouroua gen. et sp. nov. A. All parts opaque. B. Oviduct transparent revealing the seminal receptacle. Abbreviations: ac = anterior capsule gland; ag = albumen gland; bc = bursa copulatrix; od = oviduct; ov = ovary; pc = posterior capsule gland; rs = receptaculum semins; vc = ventral channel.
Fig. 3 in A new genus and species of spring snails (Caenogastropoda, Tateidae) from the ultramafic South of New Caledonia
Fig. 3. Types of Viriiella touaouroua gen. et sp. nov. A. Holotype (MNHN-IM-2000-39460). B-D. Paratypes (MNHN-IM-2000-39461).
Fig. 1 in A new genus and species of spring snails (Caenogastropoda, Tateidae) from the ultramafic South of New Caledonia
Fig. 1. Map showing the type locality of Viriiella touaouroua gen. et sp. nov. A. Southwest Pacific. B. New Caledonia with areas of ultramafic base rock indicated in green. C. Type locality Touaourou (arrow and asterisk).
Fig. 5 in A new genus and species of spring snails (Caenogastropoda, Tateidae) from the ultramafic South of New Caledonia
Fig. 5. Radula of Viriiella touaouroua gen. et sp. nov. Abbreviations: L = lateral teeth; M1 = inner marginal teeth; M2 = outer marginal teeth; R = rhachis (central) teeth.
Table 1 in A new genus and species of spring snails (Caenogastropoda, Tateidae) from the ultramafic South of New Caledonia
<p><b>Table 1 (continued on next page).</b> Species used in phylogenetic analyses and their GenBank accession numbers.</p><table><tbody><tr><th>Species</th><th>COI</th><th>16S rRNA</th><th>18S rRNA</th></tr></tbody><tbody><tr><th><i>Austropyrgus niger</i> (Quoy & Gaimard, 1834)</th><td>KT313290</td><td>KT313133</td><td>KT313166</td></tr><tr><th><i>Austropyrgus turbatus</i> Ponder, Colgan, Clark & Miller, 1994</th><td>KT313291</td><td>KT313134</td><td>KT313167</td></tr><tr><th><i>Beddomeia krybetes</i> Ponder & Clark, 1993</th><td>KT313292</td><td>KT313135</td><td>KT313168</td></tr><tr><th><i>Caldicochlea globosa</i> Ponder, Colgan, Terzis, Clark & Miller, 1996</th><td>KT313293</td><td>KT313136</td><td>KT313169</td></tr><tr><th><i>Catapyrgus matapango</i> Haase, 2008</th><td>KT313294</td><td>KT313137</td><td>KT313170</td></tr><tr><th><i>Crosseana melanosoma</i> (Haase & Bouchet, 1998)</th><td>KJ490902</td><td>KJ490813</td><td>KT313206</td></tr><tr><th><i>Fluviopupa brevior</i> (Ancey, 1905)</th><td>KC875084</td><td>KC875004</td><td>KT313171</td></tr><tr><th><i>Fluviopupa bula</i> Zielske & Haase, 2014</th><td>KF939760</td><td>KF939677</td><td>KT313190</td></tr><tr><th><i>Fluviopupa dromodromo</i> Zielske & Haase, 2014</th><td>KF939781</td><td>KF939698</td><td>KT313192</td></tr><tr><th><i>Fluviopupa espiritusantoana</i> Haase, Fontaine & Gargominy, 2010</th><td>KC875095</td><td>KC875018</td><td>KT313175</td></tr><tr><th><i>Fluviopupa espiritusantoana</i> Haase, Fontaine & Gargominy, 2010</th><td>KC875091</td><td>KC875011</td><td>KT313174</td></tr><tr><th><i>Fluviopupa gracilis pupa</i> (Iredale, 1944)</th><td>KT313295</td><td>KT313138</td><td>KT313176</td></tr><tr><th><i>Fluviopupa herminae</i> Zielske & Haase, 2014</th><td>KC875113</td><td>KC875042</td><td>KT313177</td></tr><tr><th><i>Fluviopupa irinimeke</i> Haase, Ponder & Bouchet, 2006</th><td>KF939798</td><td>KF939715</td><td>KT313178</td></tr><tr><th><i>Fluviopupa jeanyvesi</i> Haase, Gargominy & Fontaine, 2005</th><td>KT313296</td><td>KT313139</td><td>KT313179</td></tr><tr><th><i>Fluviopupa pascali</i> Haase, Fontaine & Gargominy, 2010</th><td>KC875097</td><td>KC875022</td><td>KT313181</td></tr><tr><th><i>Fluviopupa raivavaeensis</i> Haase, Gargominy & Fontaine, 2005</th><td>KT313297</td><td>KT313140</td><td>KT313183</td></tr><tr><th><i>Fluviopupa ramsayi royana</i> (Iredale, 1944)</th><td>KT313298</td><td>KT313141</td><td>KT313184</td></tr><tr><th><i>Fluviopupa riva</i> Zielske & Haase, 2014</th><td>KC875086</td><td>KC875006</td><td>KT313185</td></tr><tr><th><i>Fluviopupa rurutua</i> Haase, Gargominy & Fontaine, 2005</th><td>KT313300</td><td>KT313143</td><td>KT313187</td></tr><tr><th><i>Fluviopupa seasea</i> Haase, Ponder & Bouchet, 2006</th><td>KF939756</td><td>KF939673</td><td>KT313188</td></tr><tr><th><i>Fluviopupa torresiana</i> Haase, Fontaine & Gargominy, 2010</th><td>KC875101</td><td>KC875029</td><td>KT313196</td></tr><tr><th><i>Fluviopupa tubuaia</i> Haase, Gargominy & Fontaine, 2005</th><td>KT313302</td><td>KT313145</td><td>KT313198</td></tr><tr><th><i>Fluviopupa tunuloa</i> Zielske & Haase, 2014</th><td>KF939793</td><td>KF939710</td><td>KT313194</td></tr><tr><th><i>Fluviopupa uka</i> Zielske & Haase, 2014</th><td>KF939736</td><td>KF939653</td><td>KT313189</td></tr><tr><th><i>Fonscochlea accepta</i> Ponder, Hershler & Jenkins, 1989</th><td>KT313303</td><td>KT313146</td><td>KT313199</td></tr><tr><th><i>Fonscochlea zeidleri</i> Ponder, Hershler & Jenkins, 1989</th><td>AY622460</td><td>KT313148</td><td>KT313201</td></tr><tr><th><i>Halopyrgus pupoides</i> (Hutton, 1882)</th><td>JX970616</td><td>KT313149</td><td>KT313202</td></tr><tr><th><i>Hemistomia cockerelli.</i> Haase & Bouchet, 1998</th><td>KJ490853</td><td>KJ490768</td><td>KT313208</td></tr><tr><th><i>Hemistomia gemma gemma</i> Ponder, 1982</th><td>KT313305</td><td>KT313150</td><td>KT313203</td></tr><tr><th><i>Hemistomia rusticorum</i> Haase & Bouchet, 1998</th><td>KJ490836</td><td>KJ490755</td><td>KT313207</td></tr><tr><th><i>Kanakyella gentilsiana</i> (Crosse, 1874)</th><td>KJ490914</td><td>KJ490825</td><td>KT313209</td></tr><tr><th><i>Leiorhagium kavuneva</i> Haase & Bouchet, 1998</th><td>KJ490860</td><td>KJ490775</td><td>KT313211</td></tr><tr><th><i>Meridiopyrgus murihiku</i> Haase, 2008</th><td>AY631086</td><td>KT313152</td><td>KT313212</td></tr><tr><th><i>Novacaledonia numee</i> (Haase & Bouchet, 1998)</th><td>KJ490832</td><td>KJ490751</td><td>KT313210</td></tr><tr><th><i>Opacuincola delira</i> Haase, 2008</th><td>KT313306</td><td>KT313154</td><td>KT313214</td></tr><tr><th><i>Phrantela daveyensis tristis</i> Ponder & Clark, 1993</th><td>KT313307</td><td>KT313155</td><td>KT313215</td></tr><tr><th><i>Posticobia brazieri</i> (E.A. Smith, 1882)</th><td>KT313309</td><td>KT313157</td><td>KT313217</td></tr><tr><th><i>Potamopyrgus estuarinus</i> Winterbourn, 1971</th><td>AY631104</td><td>KT313158</td><td>KT313218</td></tr><tr><th><i>Rakiurapyrgus cresswelli</i> (Climo, 1974)</th><td>KT313310</td><td>KT313159</td><td>KT313219</td></tr><tr><th><i>Sororipyrgus raki</i> Haase, 2008</th><td>KT313311</td><td>KT313160</td><td>KT313221</td></tr><tr><th><i>Sulawesidrobia abreui</i> Zielske, Glaubrecht & Haase, 2011</th><td>HM587351</td><td>HM587394</td><td>HM587420</td></tr><tr><th><i>Sulawesidrobia anceps</i> Zielske, Glaubrecht & Haase, 2011</th><td>HM587346</td><td>HM587388</td><td>HM587417</td></tr><tr><th><i>Tatea huonensis</i> (Tenison-Woods, 1876)</th><td>KT313312</td><td>JX970550</td><td>KT313222</td></tr><tr><th><i>Trochidrobia punicea</i> Ponder, Hershler & Jenkins, 1989</th><td>KT313313</td><td>KT313161</td><td>KT313223</td></tr><tr><th><i>Victodrobia victoriensis</i> Ponder & Clark, 1993</th><td>KT313314</td><td>KT313162</td><td>KT313224</td></tr><tr><th><i>Viriiella touaouroua</i> gen. et sp. nov.</th><td>PP545377</td><td>PP545463</td><td>PP545464</td></tr></tbody></table>
Table 1 in A phylogenetic survey of the ascomycete genus Arthrorhaphis (Arthrorhaphidaceae, Lecanoromycetes) including new species in Arthrorhaphis citrinella sensu lato
<p><b>Table 1.</b> Strictly lichenicolous species of <i>Arthrorhaphis</i> with their host lichens and references.</p><table><tbody><tr><th>Taxon</th><th>Hosts</th><th>References</th></tr></tbody><tbody><tr><th><i>Arthrorhaphis aeruginosa</i></th><td><i>Cladonia</i> spp. squamules, rarely podetia</td><td>Santesson & Tønsberg, 1994</td></tr><tr><th><i>Arthrorhaphis arctoparmeliae</i></th><td><i>Arctoparmelia incurva</i></td><td>Kocourková & Van den Boom, 2005</td></tr><tr><th><i>Arthrorhaphis grisea</i></th><td><i>Baeomyces rufus</i>, <i>B. placophyllus</i></td><td>Obermayer, 1994</td></tr><tr><th><i>Arthrorhaphis muddii</i></th><td><i>Dibaeis baeomyces</i></td><td>Obermayer, 1994</td></tr><tr><th><i>Arthrorhaphis olivaceae</i></th><td><i>Melanohalea olivacea</i></td><td>Santesson & Tønsberg, 1994</td></tr><tr><th><i>Arthrorhaphis phyllobaeis</i></th><td><i>Phyllobaeis imbricata</i></td><td>Etayo, 2017</td></tr></tbody></table>
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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.
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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.