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zenodo32/100

FIGURE 2 in Morphological and molecular characterization of Lepidonema magnum Morffe & García, 2010 (Nematoda: Oxyuridomorpha: Hystrignathidae) from Passalus interstitialis Eschscholtz, 1829 (Coleoptera: Passalidae) from Cuba and new locality records for the species

FIGURE 2. Lepidonema magnum Morffe & García, 2010. Female. SEM images. A. Cephalic end, en face view. B. Cervical region. C. End of the spiny region and beginning of the lateral alae. D. Habitus, lateral view. Scale bars: A. 30 µm. B, C. 50 µm. D. 500 µm.

opennotspecifiedJan 2019View details →
zenodo32/100

Data and code: Local hydroclimate alters interpretation of speleothem 𝛿18O records

<p>This repository contains PCP-corrected d18O records for stalagmite HH-1, rainfall isotope data from Phong Nha Ke Bang National Park, and code to conduct PCP correction analyses presented and used in E.W. Patterson et al., "Local hydroclimate alters interpretation of speleothem 𝛿18O records". The data can be used to replicate figures and analyses presented in the main text. The O'neil correction was primarily used for analyses in the publication.</p>

opencc-by-4.0Sep 2024View details →
zenodo32/100

Table ¹: Previous and new records of G. venusta. The number (Nº) of the localities corresponds to those in Figure 2. in New and unusual records of Glironia venusta (Didelphimorphia, Didelphidae) in Brazil

<p><b>Table &sup1;:</b> Previous and new records of <i>G</i>. <i>venusta</i><i>.</i> The number (N&ordm;) of the localities corresponds to those in Figure 2.</p><table><thead><tr><th colspan="2">Coordinates</th><th>No. Locality, country</th><th>Reference</th><th>Sex</th><th><b>Type of record</b></th></tr></thead><tbody><tr><th>05.5561</th><td>&minus;53.9374</td><td>1 Saint Laurent du Maroni, French Guiana</td><td>Alexandre and Thoisy (2023)</td><td>U</td><td>Visual</td></tr><tr><th>3.0333</th><td>&minus;53.1000</td><td>2 Monte Itoup&eacute;, French Guiana</td><td>Sant and Catzeflis (2018)</td><td>U</td><td>Visual</td></tr><tr><th>&minus;0.0167</th><td>&minus;75.5167</td><td>3 Quebrada El Hacha, Putumayo, Colombia</td><td>Rodr&iacute;guez-Mahecha et al. (1995)</td><td>U</td><td>Visual</td></tr><tr><th>&minus;0.6500</th><td>&minus;75.2667</td><td>4 Boca de Lagarto Cocha, Ecuador</td><td>Anthony (1926)</td><td>&ordm;</td><td>Animal-trade</td></tr><tr><th>&minus;2.0833</th><td>&minus;77.4500</td><td>5 Cant&oacute;n Pastaza, provincia de Pastaza, Ecuador</td><td>Arguero et al. (2017)</td><td>&ordm;</td><td>Animal-trade</td></tr><tr><th>&minus;2.5667</th><td>&minus;76.8000</td><td>6 R&iacute;o Pastaza, Ecuador</td><td>Arguero et al. (2017)</td><td>&ordm;</td><td>Animal-trade</td></tr><tr><th>&minus;2.0667</th><td>&minus;76.9667</td><td>7 Rio Bobonazo, Montalvo, Ecuador</td><td>Marshall (1978)</td><td>&ordm;</td><td>Animal-trade</td></tr><tr><th>&minus;3.7833</th><td>&minus;78.4833</td><td>8 Cordillera del C&oacute;ndor Las Pe&ntilde;as de la Concesi&oacute;n, Ecuador</td><td>Arguero et al. (2017)</td><td>U</td><td>Visual</td></tr><tr><th>&minus;3.8333</th><td>&minus;78.5167</td><td>9 Cordillera del C&oacute;ndor Los Encuentros, Ecuador</td><td>Arguero et al. (2017)</td><td>&ordm;</td><td>Pitfall</td></tr><tr><th>&minus;2.3667</th><td>&minus;74.0833</td><td>10 Junction of Rio Curaray with Rio Napo, Loreto, Peru</td><td>Anthony (1926)</td><td>&ordm;</td><td>Animal-trade</td></tr><tr><th>&minus;3.5000</th><td>&minus;73.2333</td><td>11 Puerta Almendra, Loreto, Peru</td><td>D&iacute;az and Willig (2004)</td><td>&ordm;</td><td>Tomahawk</td></tr><tr><th>&minus;3.5833</th><td>&minus;72.7500</td><td>12 Rio Amazonas and Rio Napo, Loreto, Peru</td><td>Barkley (2008)</td><td>&ordm;</td><td>Mistnet</td></tr><tr><th>&minus;10.0667</th><td>&minus;75.5333</td><td>13 Pozuzo, Pasco, Peru</td><td>Thomas (1912a)</td><td>&sup3;</td><td>Animal-trade</td></tr><tr><th>&minus;11.8500</th><td>&minus;71.3167</td><td>14 Cocha Cachu, Madre de Dios, Peru</td><td>Pacheco et al. (1993)</td><td>U</td><td>No information</td></tr><tr><th>&minus;12.0695</th><td>&minus;69.4937</td><td>15 Las Piedras Amazon Center, Peru</td><td>Rushford and Glynn (2023)</td><td>U</td><td>Visual</td></tr><tr><th>&minus;14.6000</th><td>&minus;68.5833</td><td>16 Rio Machariapo, La Paz, Bolivia</td><td>Emmons (1991)</td><td>U</td><td>Visual</td></tr><tr><th>&minus;16.1667</th><td>&minus;67.5000</td><td>17 Yungas, La Paz, Bolivia</td><td>Thomas (1912b)</td><td>&sup3;</td><td>Animal-trade</td></tr><tr><th>&minus;16.4500</th><td>&minus;62.6500</td><td>18 San Janvier, Santa Cruz, Bolivia</td><td>Anderson (1993)</td><td>U</td><td></td></tr><tr><th>&minus;14.2500</th><td>&minus;61.0167</td><td>19 Parque Nacional Noel Kempff Mercado, Santa Cruz, Bolivia</td><td>Emmons (1998)</td><td>U</td><td>Visual</td></tr><tr><th>&minus;14.4167</th><td>&minus;60.8333</td><td>20 Meseta de Huanchaca, Santa Cruz, Bolivia</td><td>Tarifa and Anderson (1997)</td><td>U</td><td>Visual</td></tr><tr><th>&minus;7.9500</th><td>&minus;72.0667</td><td>21 Reserva Extrativista Riozinho da Liberdade, Acre, Brazil</td><td>Bernarde and Machado (2008)</td><td>U</td><td>Visual</td></tr><tr><th>&minus;7.43694</th><td>&minus;73.6594</td><td>22 Parque Nacional da Serra do Divisor, Acre, Brazil</td><td>Almeida et al. (2022)</td><td>U</td><td>Visual</td></tr><tr><th>&minus;4.8833</th><td>&minus;65.2667</td><td>23 Alto Rio Urucu, Amazonas, Brazil</td><td>Nogueira et al. (1999)</td><td>U</td><td>Firearm</td></tr><tr><th>&minus;2.9167</th><td>&minus;59.9833</td><td>24 Reserva Florestal Adolpho Ducke, Amazonas, Brazil</td><td>Calzada et al. (2008)</td><td>U</td><td>Visual</td></tr><tr><th>&minus;0.9333</th><td>&minus;57.0333</td><td>25 Rio Mapuera, Cachoeira Porteira, Par&aacute;, Brazil</td><td>Silva and Langguth (1989)</td><td>&sup3;</td><td>Captured</td></tr><tr><th>&minus;5.8000</th><td>&minus;50.5000</td><td>26 Floresta Nacional Tapirap&eacute;-Aquiri, Par&aacute;, Brazil</td><td>Rossi et al. (2010)</td><td>U</td><td>Visual</td></tr><tr><th>&minus;6.0500</th><td>&minus;50.2500</td><td>27 Floresta Nacional de Caraj&aacute;s, Parauapebas, Par&aacute;, Brazil</td><td>Ardente et al. (2013)</td><td>&sup3;</td><td>Sherman</td></tr><tr><th>&minus;6.0885</th><td>&minus;49.9729</td><td>28 Floresta Nacional de Caraj&aacute;s,ParauapebaJLs, Par&aacute;, Brazil</td><td>Present study</td><td>U, &sup3;</td><td>Roadkill</td></tr><tr><th>&minus;6.3833</th><td>&minus;55.9000</td><td>29 Vila S&atilde;o Chico, Moraes de Almeida, Itaituba, Par&aacute;, Brazil</td><td>Merc&ecirc;s et al. (2023)</td><td>&ordm;</td><td>Visual</td></tr><tr><th>&minus;6.3000</th><td>&minus;55.7833</td><td>30 Mina do Palito, Jardim do Ouro, taituba, Par&aacute;, Brazil</td><td>Merc&ecirc;s et al. (2023)</td><td>&ordm;</td><td>Visual</td></tr><tr><th>&minus;9.4667</th><td>&minus;56.7000</td><td>31 Jacareacanga, Rio Teles Pires River, Par&aacute;, Brazil</td><td>Silveira et al. (2014)</td><td>&ordm;</td><td>Visual</td></tr><tr><th>&minus;9.5603</th><td>&minus;56.7526</td><td>32 Parana&iacute;ta, Mato Grosso, Brazil</td><td>Silveira et al. (2014)</td><td>&ordm;</td><td>Visual</td></tr><tr><th>&minus;13.1000</th><td>&minus;54.8167</td><td>33 Nova Ubirat&atilde;, Mato Grosso, Brazil</td><td>Rossi et al. (2010)</td><td>&sup3;</td><td>Suppression-activity (specimen)</td></tr><tr><th>&minus;15.1167</th><td>&minus;58.9500</td><td>34 Usina Hidrel&eacute;trica Guapor&eacute;, Mato Grosso, Brazil</td><td>Rossi et al. (2010)</td><td>&sup3;</td><td>Suppression-activity (specimen)</td></tr><tr><th>&minus;15.5667</th><td>&minus;58.0000</td><td>35 Mirassol d&rsquo; Oeste, Mato Grosso, Brazil</td><td>Santos-Filho et al. (2007)</td><td>&sup3;</td><td>Tomahawk</td></tr><tr><th>&minus;11.6000</th><td>&minus;60.7167</td><td>36 Fazenda Jaburi, Rond&ocirc;nia, Brazil</td><td>Bernarde and Rocha (2003)</td><td>U</td><td>Pitfall</td></tr><tr><th>&minus;8.8667</th><td>&minus;64.0000</td><td>37 Rio Madeira, Porto Velho, Rond&ocirc;nia, Brazil</td><td>Santos-Filho et al. (2007)</td><td>&ordm;</td><td>Tomahawk</td></tr><tr><th>&minus;9.4667</th><td>&minus;64.8167</td><td>38 Cai&ccedil;ara, Porto Velho, Rond&ocirc;nia, Brazil</td><td>Present study</td><td>&ordm;</td><td>Mistnet</td></tr></tbody></table><p>U, unknown sex.</p>

opennotspecifiedMay 2024View details →
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FIGURE 10 in Five new species and numerous locality records of Spirobolida millipedes from Madagascar (Diplopoda, Spirobolida, Pachybolidae)

FIGURE 10.?Eucarlia tampolo, sp. nov., holotype (FMMC 7796), drawings. A. Gnathochilarium, ventral view; B. Coxosternite of female leg 1, posterior view; C. Coxosternite of female leg 2, posterior view; D. Male midbody leg, posterior view; E. Posterior body end with telson, lateral view; F. Anterior gonopod, anterior view; G. Anterior gonopod, posterior view; H. Right posterior gonopod, tip, anterior view; I. Right posterior gonopod, posterior view. Abbreviations: av = paraprocts; Cx = coxa; Cx-St = coxosternite; cx = coxite; Fe = femur; L = ledge on mentum of gnathochilarium; LL = lamella linguales; main = main branch of posterior telopod; Me = mentum; mes = mesal branch of posterior gonopod; pre = epiproct; Pre = prefemur; Po = postfemur; st = sternite; St = stipites; sub = hypoproct; t = telopodite; Ta = tarsus; ta-p = tarsal pad; Ti = tibia; Vu = vulva. Scale bars = 1 mm.

opennotspecifiedOct 2024View details →
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FIGURE 11 in Five new species and numerous locality records of Spirobolida millipedes from Madagascar (Diplopoda, Spirobolida, Pachybolidae)

FIGURE 11. Spiromimus endemicus, sp. nov., holotype (CASENT 9032793), drawings. A. Posterior body end with telson, lateral view; B. Right anterior gonopod, anterior view; C. Telopodite of right anterior gonopod, posterior view; D. Left posterior gonopod, anterior view; E. Left posterior gonopod, posterior view. Abbreviations: av = paraprocts; cx = coxite; IP, inner process, process of coxite of anterior gonopod; PG = posterior gonopod, still covered by anterior gonopod; Pre = epiproct; RP = retrorse tip of telopodite process of anterior gonopod; St = sternite; sub = hypoproct; t = telopodite. Scale bars = 1 mm.

opennotspecifiedOct 2024View details →
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FIGURE 8 in Five new species and numerous locality records of Spirobolida millipedes from Madagascar (Diplopoda, Spirobolida, Pachybolidae)

FIGURE 8. Alluviobolus omega, sp. nov., paratype (FMMC 5462), SEM. A. Gnathochilarium underside; B. Gnathochilarium, detail of central pads; C. Right mandible; D. Female midbody leg, overview; E. Female midbody leg, detail of tarsus; F. Right female vulva, mesal view. Abbreviations: 3iT = 3-combed inner tooth; as = apical spine; av = anterior orientated plate; cl = claw; cp = central pads; Cx = coxa; Endo = endochilarium; eP = lateral palpi; eT = external tooth; Fe = femur; iP = inner palpi; LT = lateral tooth; mp = molar plate; O = operculum; pL = pectinate lamellae; Po = postfemur; Pre = prefemur; pv = posterior orientated plate; vs = ventral spine; Ta = tarsus; Ti = tibia.

opennotspecifiedOct 2024View details →
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FIGURE 9 in Five new species and numerous locality records of Spirobolida millipedes from Madagascar (Diplopoda, Spirobolida, Pachybolidae)

FIGURE 9. Alluviobolus omega, sp. nov., population from Vohimena (FMMC 5396), multi-layer photographs. A. Male anterior body, lateral view; B. Midbody rings, lateral view; C. Male leg pairs 1–7, ventral view; D. Male posterior body end with telson; E. Anterior gonopod, anterior view; F. Anterior gonopod, posterior view; G. Right posterior gonopod, anterior view; H. Right posterior gonopod, posterior view. Abbreviations: a = spinose membranous area; av = paraprocts; b= lateral opening of the sperm canal; bb = basal branch of posterior gonopod; c = membranous fringe below the apex; Co = collum (ring 1); Cx = coxite; d = large membranous area located mesally; Gn = gnathochilarium; h = 'hole'-like structure on the posterior gonopod; Md = basal joints of mandible; Me = mesozonite; Mt = metazonite; oz = ozopore; pe = pseudopenis; Pre = epiproct; sf = setiferous foveolae; sg = spermatic groove; St = sternite; sub = hypoproct; t = telopodite; numbers refer to leg pair number. Scale bars = 1 mm.

opennotspecifiedOct 2024View details →
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FIGURE 5 in Five new species and numerous locality records of Spirobolida millipedes from Madagascar (Diplopoda, Spirobolida, Pachybolidae)

FIGURE 5. Alluviobolus omega, sp. nov., paratype what (FMMC 5403), multi-layer photographs. A. Male anterior body, lateral view; B. Male leg pairs 1–7, ventral view; C. Male posterior body end with telson; D. Anterior gonopod, anterior view; E. Anterior gonopod, posterior view; F. Posterior gonopod, anterior view; G. Posterior gonopod, posterior view. Abbreviations: a = spinose membranous area; Apo = apodeme; av = paraprocts; b= lateral opening of the sperm canal; bb = basal branch of posterior gonopod; c = membranous fringe below the apex; Co = collum (ring 1); Cx = coxite; d = large membranous area located mesally; Gn = gnathochilarium; h = 'hole'-like structure on the posterior gonopod; Md = basal joints of mandible; oz = ozopore Pre = epiproct; sf = setiferous foveolae; sg = spermatic groove; St = sternite; sub = hypoproct; t = telopodite; numbers refer to leg pair number. Scale bars = 1 mm.

opennotspecifiedOct 2024View details →
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FIGURE 7 in Five new species and numerous locality records of Spirobolida millipedes from Madagascar (Diplopoda, Spirobolida, Pachybolidae)

FIGURE 7. Alluviobolus omega, sp. nov., paratype (FMMC 5462), SEM. A. Left antenna, overview; B. Left antenna, antennomeres 5–7, apical view; C. Fine structures between antennomere 6 and 7. Abbreviations: A1–A7 = antennomeres 1–7; ac = apical cones; d = antennal disc; sb = sensilla basiconica.

opennotspecifiedOct 2024View details →
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FIGURE 3 in Five new species and numerous locality records of Spirobolida millipedes from Madagascar (Diplopoda, Spirobolida, Pachybolidae)

FIGURE 3. Aphistogoniulus manombo sp. nov.. A. Living specimen from inaturalist.org, photo taken by Prof. Nicolas Block in 2009; B. Living specimen from inaturalist.org, photo taken by Herindrainy Davidson; C. Holotype (CASTYPE 21623); D. Female paratype (CASENT 9032822), multi-layer photographs, taken by Rachel Diaz-Bastin, California Academy of Sciences. Scale bars = 1 cm.

opennotspecifiedOct 2024View details →
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FIGURE 2 in Five new species and numerous locality records of Spirobolida millipedes from Madagascar (Diplopoda, Spirobolida, Pachybolidae)

FIGURE 2. Aphistogoniulus amberivery, sp. nov., holotype (FMNH-INS 3196506). A. Multi-layer photograph, male anterior body, lateral view; B. Multi-layer photograph, male leg pairs 1–7, ventral view; C. Multi-layer photograph, male posterior body end with telson; D. Anterior gonopod, anterior view; E. Anterior gonopod, posterior view; F. Right posterior gonopod, anterior view; G. Right posterior gonopod, posterior view. Abbreviations: Apo = apodeme; av = paraprocts; bb = basal branch of posterior gonopod; Co = collum (ring 1); Cx = coxite; fs-p = finger-shaped process; Gn = gnathochilarium; Gr = groove; mb = main branch of posterior gonopod; Md = basal joints of mandible; oz = ozopore; Pre = epiproct; rp = retrorse process; sf = setiferous foveolae; St = sternite; sub = hypoproct; T = telopodite; numbers refer to leg pair number. Scale bars = 1 mm.

opennotspecifiedOct 2024View details →
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FIGURE 4 in Five new species and numerous locality records of Spirobolida millipedes from Madagascar (Diplopoda, Spirobolida, Pachybolidae)

FIGURE 4. Aphistogoniulus manombo new species, holotype (CASTYPE 21623), multi-layer photographs. A. Anterior gonopod, anterior view; B. Anterior gonopod, posterior view; C. Posterior gonopod, anterior view; D. Posterior gonopod, posterior view. Photos taken by Rachel Diaz-Bastin, California Academy of Sciences. Abbreviations: app = apical process; bb = basal branch of posterior gonopod; cp = coxite process; Cx = coxite; Lo = lobe; mb = main branch of posterior gonopod; rp = retrorse process; St = sternite; sub = hypoproct; T = telopodite; numbers refer to leg pair number. Scale bars = 1 mm.

opennotspecifiedOct 2024View details →
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FIGURE 1 in Five new species and numerous locality records of Spirobolida millipedes from Madagascar (Diplopoda, Spirobolida, Pachybolidae)

FIGURE 1. Colossobolus olympiacus (Karsch, 1881), n. comb., topotype (CASENT 9005459). A. Multi-layer photograph, male anterior body, lateral view; B. Multi-layer photograph, male leg pairs 1–7, ventral view; C. Multi-layer photograph, male posterior body end with telson; D. Right anterior gonopod, anterior view; E. Right anterior gonopod, posterior view; F. Left posterior gonopod, anterior view; G. Left posterior gonopod, posterior view; H. Male right midbody leg, posterior view. Abbreviations: Apo = apodeme; av = paraprocts; bb = basal branch of posterior gonopod; Co = collum (ring 1); Cx = coxite; Fe = femur; fs-p = finger-shaped process; Gn = gnathochilarium; Gr = groove; ma = membranous area on posterior gonopod; Md = basal joints of mandible; oz = ozopore; Po = postfemur; Pre = epiproct; sf = setiferous foveolae; St = sternite; sub = hypoproct; T = telopodite; T-Lbr = lateral branch of telopodite; T-mbr = main branch of telopodite; Ta = tarsus; ta-p = tarsal pad; Ti = tibia; numbers refer to leg pair number. Scale bars = 1 mm.

opennotspecifiedOct 2024View details →
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FIGURE 2. Crepidomanes minutum var. mascarenensis. A in A new local variety of Crepidomanes minutum (Hymenophyllaceae) in the Mascarene Archipelago (Indian Ocean) and a new record for Mauritius

FIGURE 2. Crepidomanes minutum var. mascarenensis. A. In situ colony as epiphytic on a tree trunk (Mauritius, photograph by J.-Y. Dubuisson). B. Habitus, specimen J.-Y. Dubuisson HR2003-5 (P). C. Habitus, specimen J.-Y. Dubuisson HR2003-6 (P). S = sorus,

opennotspecifiedAug 2012View details →
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FIGURE 1 in A new local variety of Crepidomanes minutum (Hymenophyllaceae) in the Mascarene Archipelago (Indian Ocean) and a new record for Mauritius

FIGURE 1. Localization of the Mascarene Archipelago or Mascarenes in Indian Ocean (left) and collect localities (white dots) for Crepidomanes minutum var. mascarenensis in Mauritius (right).

opennotspecifiedAug 2012View details →
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FIGURE 3 in A new local variety of Crepidomanes minutum (Hymenophyllaceae) in the Mascarene Archipelago (Indian Ocean) and a new record for Mauritius

FIGURE 3. Typical specimen of Crepidomanes minutum, here with large frond and proliferating stipes (indicated by P), Madagascan population misidentified as C. bonapartei (F. Rakotondrainibe 3698, P00085267), scale = 2 cm.

opennotspecifiedAug 2012View details →
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Fig. 2 in First Precise Locality Data for Onthophagus atriglabrus Howden and Gill and New State Record for Onthophagus anewtoni Howden and Génier (Coleoptera: Scarabaeidae: Scarabaeinae) in Mexico

Fig. 2. Currently known distributions of Onthophagus atriglabrus and Onthophagus anewtoni. Previously known locality records for O. atriglabrus are from Howden and Gill (1987) and Kohlmann and Sol´ıs (2001); those for O. anewtoni are from Howden and Génier (2004).

opennotspecifiedDec 2018View details →
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FIGURE 1. Lucernariopsis capensis Carlgren. A, B, C in Lucernariopsis capensis Carlgren, 1938 (Cnidaria, Staurozoa) in Brazil: first record outside its type locality in South Africa

FIGURE 1. Lucernariopsis capensis Carlgren. A, B, C. General views of the preserved specimen from Itanhaém, Brazil. D. Gonad (gd) and gastric cirri (gc). E. Two arms, with cushion or pad-like organ, tentacular cluster, and a probable vestige of primary tentacle. F. Base of stalk, with a central pit. G. Isorhiza of tentacle. H. Eurytele (type I) of tentacle. I. Eurytele (type II) of subumbrellar vesicles. J. Eurytele (type III) of subumbrellar vesicles. K. Isorhiza of subumbrellar vesicles. Scale: A–F: 0.6 mm; G–K: 5.0 µm. am—arm; bd—basal disc of stalk; cl—calyx; pd—pad-like adhesive organ; pr—primary tentacle; pt—pit; sc—secondary tentacle; sk—stalk; tc—tentacular cluster.

opennotspecifiedDec 2012View details →
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FIGURE 2 in Lucernariopsis capensis Carlgren, 1938 (Cnidaria, Staurozoa) in Brazil: first record outside its type locality in South Africa

FIGURE 2. Distribution of species of the family Kishinouyeidae. Lucernariopsis (in blue): A. L. campanulata, B. L. capensis (star represents the new record), C. L. cruxmelitensis, D. L. tasmaniensis, E. L. vanhoeffeni, F. Lucernariopsis sp.; Kishinouyea (in red): G. K. corbini, H. K. hawaiiensis, I. K. nagatensis, J. Kishinouyea sp.; Sasakiella (in green): K. S. cruciformis, L. S. tsingtaoensis (Browne 1910; Edmondson 1930; Eales 1938; Panikkar 1944; Kramp 1961; Corbin 1978; Larson 1980; Grohmann et al. 1999; Cairns et al. 2009; Zagal et al. 2011; Smithsonian NMNH Online Database, available from: http://collections.nmnh.si.edu/search/iz/, 05 Nov 2011; this study).

opennotspecifiedDec 2012View details →
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FIGURES 10–16 in The Braconinae (Hymenoptera: Braconidae) of Turkey, with new locality records and descriptions of two new species of Bracon Fabricius, 1804

FIGURES 10–16. (female): 10—head in frontal view; 11—antenna; 12—mesosoma in lateral view; 13—forewing; 14—Hindwing, 15—hind leg; 16—metasoma. Scale: 0.5 mm (Fig10), 1.3 mm (Fig 11), 0.37 mm (Fig 12), 0.9 mm (Fig 13, 14), 0.57 mm (Fig 15), 1.3 mm (Fig 16).

opennotspecifiedDec 2012View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record