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zenodo32/100

Subspecies and Distribution. N. n. nasua Linnaeus, 1766 — French Guiana S through NE Brazil to N Bahia. N. n. dorsalis Gray, 1866 — Amazonian Brazil, Peru, and Ecuador. N. n. arcana Vieira, 1945 — Brazil (Mato Grosso), Bolivia (Santa Cruz), Paraguay, and N Argentina. N. n. boliviensis Cabrera, 1956 — Bolivia (Cochabamba, the Yungas). N. n. candace Thomas, 1912 — Colombia. N. n. anerascens Lonnberg, 1921 — N Argentina (Chaco). N. n. manium Thomas, 1912 — Ecuador W of the Andes. N. n. montana Tschudi, 1844 — Peru. N. n. quichua Thomas, 1901 — S Ecuadorian Andes (Azuay). N. n. solitaria Schinz, 1821 — SE Brazil (Minas Gerais, S. Bahia), NE Argentina (Misiones). N. n. spadicea Olfers, 1818 — S Brazil and Uruguay. N. n. vittata Tschudi, 1844 — Venezuela, the Guianas. in Procyonidae

Subspecies and Distribution. N. n. nasua Linnaeus, 1766 — French Guiana S through NE Brazil to N Bahia. N. n. dorsalis Gray, 1866 — Amazonian Brazil, Peru, and Ecuador. N. n. arcana Vieira, 1945 — Brazil (Mato Grosso), Bolivia (Santa Cruz), Paraguay, and N Argentina. N. n. boliviensis Cabrera, 1956 — Bolivia (Cochabamba, the Yungas). N. n. candace Thomas, 1912 — Colombia. N. n. anerascens Lonnberg, 1921 — N Argentina (Chaco). N. n. manium Thomas, 1912 — Ecuador W of the Andes. N. n. montana Tschudi, 1844 — Peru. N. n. quichua Thomas, 1901 — S Ecuadorian Andes (Azuay). N. n. solitaria Schinz, 1821 — SE Brazil (Minas Gerais, S. Bahia), NE Argentina (Misiones). N. n. spadicea Olfers, 1818 — S Brazil and Uruguay. N. n. vittata Tschudi, 1844 — Venezuela, the Guianas.

opennotspecifiedJan 2009View details →
zenodo32/100

On following pages: 86. Thomas's Nectar Bat (Hsunycteris thomas); 87. Chestnut Long-tongued Bat (Lionycteris spurrell); 88. Brazilian Nectar Bat (Lonchophylla mordax); 89. Chocoan Nectar Bat (Lonchophylla chocoanal; 90. Goldman's Nectar Bat (Lonchophylla concava); 91. Pacific Forest Long-tongued Bat (Lonchophylla fornicata); 92. Orces's Long-tongued Bat (Lonchophylla orcesi); 93. Western Nectar Bat (Lonchophylla hesperia); 94. Eastern Cordilleran Nectar Bat (Lonchophylla orienticollina); 95. Handley's Nectar Bat (Lonchophylla handleyi); 96. Orange Nectar Bat (Lonchophylla robusta); 97. Dekeyser's Nectar Bat (Lonchophylla dekeyseri), 98. Pale-bellied Nectar Bat (Lonchophylla inexpectata); 99. Bokermann's Nectar Bat (Lonchophylla bokermanni); 100. Peracchi's Nectar Bat (Lonchophylla peracchii); 101. Long-snouted Bat (Platalina genovensium); 102. Vieira's Long-tongued Bat (Xeronycteris vieirai). in Phyllostomidae

On following pages: 86. Thomas's Nectar Bat (Hsunycteris thomas); 87. Chestnut Long-tongued Bat (Lionycteris spurrell); 88. Brazilian Nectar Bat (Lonchophylla mordax); 89. Chocoan Nectar Bat (Lonchophylla chocoanal; 90. Goldman's Nectar Bat (Lonchophylla concava); 91. Pacific Forest Long-tongued Bat (Lonchophylla fornicata); 92. Orces's Long-tongued Bat (Lonchophylla orcesi); 93. Western Nectar Bat (Lonchophylla hesperia); 94. Eastern Cordilleran Nectar Bat (Lonchophylla orienticollina); 95. Handley's Nectar Bat (Lonchophylla handleyi); 96. Orange Nectar Bat (Lonchophylla robusta); 97. Dekeyser's Nectar Bat (Lonchophylla dekeyseri), 98. Pale-bellied Nectar Bat (Lonchophylla inexpectata); 99. Bokermann's Nectar Bat (Lonchophylla bokermanni); 100. Peracchi's Nectar Bat (Lonchophylla peracchii); 101. Long-snouted Bat (Platalina genovensium); 102. Vieira's Long-tongued Bat (Xeronycteris vieirai).

opennotspecifiedOct 2019View details →
zenodo32/100

On following pages: 74. Colombian Speckled Tree-rat (Pattonomys semivillosus); 75. Carriker's Speckled Tree-rat (Pattonomys carrikeri); 76. Yellow Speckled Tree-rat (Pattonomys flavidus); 77. Orinocan Speckled Tree-rat (Pattonomys punctatus); 78. Bare-tailed Tree-rat (Pattonomys occasius); 79. Peruvian Toro (Toromys rhipidurus); 80. Black Toro (Toromys grandis); 81. Dark Tree-rat (Echimys saturnus); 82. White-faced Tree-rat Echimys chrysurus), 83. Vieira's Tree-rat (Echimys vieirai): 84. Long-tailed Armored Tree-rat (Makalata macrura); 85. Red-nosed Armored Tree-rat (Makalata didelphoides); 86. Dark Armored Tree-rat (Makalata obscura). in Echimyidae

On following pages: 74. Colombian Speckled Tree-rat (Pattonomys semivillosus); 75. Carriker's Speckled Tree-rat (Pattonomys carrikeri); 76. Yellow Speckled Tree-rat (Pattonomys flavidus); 77. Orinocan Speckled Tree-rat (Pattonomys punctatus); 78. Bare-tailed Tree-rat (Pattonomys occasius); 79. Peruvian Toro (Toromys rhipidurus); 80. Black Toro (Toromys grandis); 81. Dark Tree-rat (Echimys saturnus); 82. White-faced Tree-rat Echimys chrysurus), 83. Vieira's Tree-rat (Echimys vieirai): 84. Long-tailed Armored Tree-rat (Makalata macrura); 85. Red-nosed Armored Tree-rat (Makalata didelphoides); 86. Dark Armored Tree-rat (Makalata obscura).

opennotspecifiedJul 2016View details →
zenodo32/100

Distribution. Brazilian Amazon, S of the Rio Amazonas, between the Tapajos/Juruena system and the Tocantins/Araguaia river system to the E, in the Brazilian states of Para and Mato Grosso; the exact S limit ofits distribution is unclear, but it seems likely that it coincides with the transition between the Amazon rainforest and the cerrado savannas of C Brazil; this ecotone encompasses headwaters of the Xingu and Tapajos river systems in N Mato Grosso. Vieira's Titi (C. vieirai) is also known to occur in this region, but there are too few records to confirm whether their distributions intergrade, or in fact where the exact limits of their distributions are. One recent study also found that the Red-bellied Titi may be absent from or present at extremely low densities in large areas of the Tocantins-Xingu interfluvium. Given the overall lack of records, while it is clear that the Red-bellied Titi occurs over a vast area of the SE Amazon Basin, the exact limits of its distribution within this area remain unclear. in Phitheciidae

Distribution. Brazilian Amazon, S of the Rio Amazonas, between the Tapajos/Juruena system and the Tocantins/Araguaia river system to the E, in the Brazilian states of Para and Mato Grosso; the exact S limit ofits distribution is unclear, but it seems likely that it coincides with the transition between the Amazon rainforest and the cerrado savannas of C Brazil; this ecotone encompasses headwaters of the Xingu and Tapajos river systems in N Mato Grosso. Vieira's Titi (C. vieirai) is also known to occur in this region, but there are too few records to confirm whether their distributions intergrade, or in fact where the exact limits of their distributions are. One recent study also found that the Red-bellied Titi may be absent from or present at extremely low densities in large areas of the Tocantins-Xingu interfluvium. Given the overall lack of records, while it is clear that the Red-bellied Titi occurs over a vast area of the SE Amazon Basin, the exact limits of its distribution within this area remain unclear.

opennotspecifiedMar 2013View details →
zenodo32/100

Supplementary material 2 from: Vieira PE, Queiroga H, Costa FO, Holdich DM (2016) Distribution and species identification in the crustacean isopod genus Dynamene Leach, 1814 along the North East Atlantic-Black Sea axis. ZooKeys 635: 1-29. https://doi.org/10.3897/zookeys.635.10240

List of locations where Dynamene specimens were recorded in this study : Explanation note: Complete list of locations and respective regions and co-ordinates where Dynamene specimens were recorded in this study, organized by species.

opencc-by-4.0Nov 2016View details →
zenodo32/100

Supplementary material 1 from: Vieira PE, Queiroga H, Costa FO, Holdich DM (2016) Distribution and species identification in the crustacean isopod genus Dynamene Leach, 1814 along the North East Atlantic-Black Sea axis. ZooKeys 635: 1-29. https://doi.org/10.3897/zookeys.635.10240

Material examined in this study : Explanation note: Each entry shows the number of specimens observed for each life history stage, habitat, person who provided the specimen(s), location and country, co-ordinates and other information.

opencc-by-4.0Nov 2016View details →
zenodo32/100

FIGURE 4 in Description of nymph of Brasilocaenis atawallpa Lima, Molineri, Vieira, Pinheiro & Salles, 2019 (Ephemeroptera: Caenidae) and notes on its taxonomic status

FIGURE 4. Male genitalia of Brasilocaenis atawallpa. A, Genitalia of male imago, ventral view (modified from Lima et al. 2019); B, sternum IX of mature male nymph, ventral view (internal structures shown by interrupted lines, penis not shown). SP = Styliger plate; F = forceps. (Scale: Figs 4A, B = 0.1 mm).

opennotspecifiedAug 2021View details →
zenodo32/100

FIGURE 3 in Description of nymph of Brasilocaenis atawallpa Lima, Molineri, Vieira, Pinheiro & Salles, 2019 (Ephemeroptera: Caenidae) and notes on its taxonomic status

FIGURE 3. Nymph of Brasilocaenis atawallpa. A, labrum, dorsal view; B, hypopharynx, ventral view; C, labium, ventral view; D, left mandible, dorsal view; E, right mandible, dorsal view; F, maxilla, ventral view; G, hind tarsal claw; H, foreleg; I, middle leg; J, hind leg. (Scale: Figs 3A–G = 0.1 mm, Figs 3H–J = 0.2 mm).

opennotspecifiedAug 2021View details →
zenodo32/100

FIGURE 2 in Description of nymph of Brasilocaenis atawallpa Lima, Molineri, Vieira, Pinheiro & Salles, 2019 (Ephemeroptera: Caenidae) and notes on its taxonomic status

FIGURE 2. Nymph of Brasilocaenis atawallpa. A, habitus, dorsal view; B, habitus, lateral view; C, habitus, ventral view; D, detail of pronotum; E, opercular gill; F, gill IV. (Scale: Figs 2A–C = 1 mm, Fig. 2D = 0.5 mm, Figs 2E, F = 0.2 mm).

opennotspecifiedAug 2021View details →
zenodo32/100

CDMF Pesquisa - Noemí Angélica Vieira Roza

<p>&nbsp;</p> <p>Noemi Ang&eacute;lica Vieira Roza, p&oacute;s-doutoranda no Centro de Tecnologia da Informa&ccedil;&atilde;o Renato Archer (CTI) e integrante do Centro de Desenvolvimento de Materiais Funcionais (CDMF), fala de sua pesquisa no desenvolvimento de biossensores para a detec&ccedil;&atilde;o de doen&ccedil;as cardiovasculares.</p> <p>CDMF Pesquisa - Noem&iacute; Ang&eacute;lica Vieira Roza&nbsp;de&nbsp;<a href="https://youtu.be/9urZXibBubM">https://youtu.be/9urZXibBubM</a>&nbsp;est&aacute; licenciado com uma Licen&ccedil;a&nbsp;<a href="http://creativecommons.org/licenses/by-nc-nd/4.0/">Creative Commons - Atribui&ccedil;&atilde;o-N&atilde;oComercial-SemDeriva&ccedil;&otilde;es 4.0 Internacional</a>. Podem estar dispon&iacute;veis autoriza&ccedil;&otilde;es adicionais &agrave;s concedidas no &acirc;mbito desta licen&ccedil;a em&nbsp;<a href="https://www.labi.ufscar.br/">https://www.labi.ufscar.br/</a>.</p>

opencc-by-4.0Apr 2020View details →
zenodo32/100

FIGURE 1 in On the validity and distribution of Myxobolus curemae Vieira, Agostinho, Negrelli Silva, Azevedo and Abdallah, 2022 (Myxozoa: Bivalvulida) from a new record on the coast of southeastern Brazil

FIGURE 1. Mature myxospores of Myxobolus curemae Vieira, Agostinho, Negrelli, Silva, Azevedo and Abdallah, 2022 from white mullet Mugil curema Valenciennes, 1836 on the coast of the State of Rio de Janeiro, Brazil. A–B. Frontal view; C. Lateral view. Bar = 5 μm.

opennotspecifiedJan 2023View details →
zenodo32/100

FIG. 1 in Scinax tropicalia Novaes-E-Fagundes & Araujo-Vieira & Entiauspe-Neto & Roberto & Orrico & Solé & Haddad & Loebmann 2021, sp. nov.

FIG. 1. Mass of eleven C. ciliatus eggs during incubation at 28°C as a function of age (d). Observations represent two or more observations per egg (mode = 6).

opennotspecifiedJan 2017View details →
zenodo32/100

F. 2 in Scinax tropicalia Novaes-E-Fagundes & Araujo-Vieira & Entiauspe-Neto & Roberto & Orrico & Solé & Haddad & Loebmann 2021, sp. nov.

F. 2. Water vapor permeability (mg/d/kPa/cm2) at 28°C of C. IG ciliatus eggs as a function of age (d). Surface area of eggs is that recorded at oviposition.

opennotspecifiedJan 2017View details →
zenodo32/100

F. 3 in Scinax tropicalia Novaes-E-Fagundes & Araujo-Vieira & Entiauspe-Neto & Roberto & Orrico & Solé & Haddad & Loebmann 2021, sp. nov.

F. 3. Water vapor permeability (mg/d/kPa/cm2) of squamate IG eggs as a function of egg mass. The regression line and filled circles represent flexible-shelled eggs. Correlophus ciliatus is represented by the open circle and rigid-shelled gekkotans by the filled squares. Log10 transformation of the Y-axis makes values for the three groups appear less disparate than they actually are.

opennotspecifiedJan 2017View details →
zenodo28/100

Figures 24-29 from: Vitecek S, Martini J, Zittra C, Kuhlmann H, Vieira A, Waringer J (2020) The larva of Drusus dudor Oláh, 2017, including an updated key to larval Drusinae Banks, 1916 (Insecta, Trichoptera, Limnephilidae). ZooKeys 908: 137-155. https://doi.org/10.3897/zookeys.908.47032

Figures 24-29 24–25 Heads and pronota of 5th instar larvae, right lateral views. 24Ecclisopteryx dalecarlica Kolenati, 1848 25Drusus botosaneanui Kumanski, 1968 26Drusus serbicus Marinkovic-Gospodnetic, 1971, 5th instar larva, head, right lateral view (dotted oval: spinule area). 27–29 Heads and pronota of 5th instar larvae, frontal views. 27Drusus nigrescens Meyer-Duer, 1875 (arrows: long dark setae reaching dorsal midline; sro: serrated outline of pronotal ridge; numbers refer to setal positions) 28Drusus mixtus (Pictet, 1834) (arrows: long dark setae not reaching dorsal midline; numbers refer to setal positions) 29Drusus aprutiensis Moretti, 1981 (arrows: long dark setae not reaching dorsal midline; numbers refer to setal positions). Scale bars: 0.5 mm.

opencc-by-4.0Feb 2020View details →
zenodo28/100

Figures 18-23 from: Vitecek S, Martini J, Zittra C, Kuhlmann H, Vieira A, Waringer J (2020) The larva of Drusus dudor Oláh, 2017, including an updated key to larval Drusinae Banks, 1916 (Insecta, Trichoptera, Limnephilidae). ZooKeys 908: 137-155. https://doi.org/10.3897/zookeys.908.47032

Figures 18-23 18–21.Drusus alpinus Meyer-Duer, 1875, 5th instar larva. 18 Head and prothorax, right lateral view (arrow: mandibles with terminal teeth) 19 Head, thorax and abdominal segment I, ventral view 20 Detail of mesosternum, ventral view (vs: ventral setae) 21 Tip of abdomen, dorsal view (arrows: long posterodorsal setae). 22–23.Drusus franzi Schmid, 1955, 5th instar larva. 22 Detail of mesosternum, ventral view (vs: ventral seta) 23 Tip of abdomen, dorsal view (arrows: long posterodorsal setae). Scale bars: 0.5 mm.

opencc-by-4.0Feb 2020View details →
zenodo28/100

Figures 58-63 from: Vitecek S, Martini J, Zittra C, Kuhlmann H, Vieira A, Waringer J (2020) The larva of Drusus dudor Oláh, 2017, including an updated key to larval Drusinae Banks, 1916 (Insecta, Trichoptera, Limnephilidae). ZooKeys 908: 137-155. https://doi.org/10.3897/zookeys.908.47032

Figures 58-63 Drusus dudor Oláh, 2017, male genitalia. 58 Tip of abdomen, left lateral view 59 Tip of abdomen, posterior view 60 Tip of abdomen, dorsal view 61 Tip of abdomen, ventral view 62 Apex of aedeagus and parameres (arrow: dorsal tooth of parameres) 63 Detail of paraproct, dorsal view (dotted ovals: basolateral bulges). Scale bars: 0.5 mm (except Fig. 63: 0.1 mm).

opencc-by-4.0Feb 2020View details →
zenodo28/100

Figures 12-17 from: Vitecek S, Martini J, Zittra C, Kuhlmann H, Vieira A, Waringer J (2020) The larva of Drusus dudor Oláh, 2017, including an updated key to larval Drusinae Banks, 1916 (Insecta, Trichoptera, Limnephilidae). ZooKeys 908: 137-155. https://doi.org/10.3897/zookeys.908.47032

Figures 12-17 12–15.Drusus dudor Oláh, 2017, 5th instar larva. 12 Abdominal segments VII–IX, right lateral view (lf: lateral fringe; pls: posterolateral seta; ds: dorsal seta) 13 Abdominal segment IX, dorsal view 14 Tip of abdomen, posterior view 15 Larval case, right lateral view 16Drusus macedonicus Schmid, 1956, 5th instar larva, head, thorax and abdominal segment I, ventral view (fb: filtering bristles, dotted oval: filtering bristles on hind femur) 17Drusus muelleri McLachlan, 1868, 5th instar larva, head, pro- and mesothorax, right lateral view (arrow: mandibles with terminal teeth). Scale bars: 0.5 mm.

opencc-by-4.0Feb 2020View details →
zenodo28/100

Figures 1-3 from: Vitecek S, Martini J, Zittra C, Kuhlmann H, Vieira A, Waringer J (2020) The larva of Drusus dudor Oláh, 2017, including an updated key to larval Drusinae Banks, 1916 (Insecta, Trichoptera, Limnephilidae). ZooKeys 908: 137-155. https://doi.org/10.3897/zookeys.908.47032

Figures 1-3 Drusus dudor Oláh, 2017, 5th instar larva. 1 Head, dorsal view (a: antenna; numbers refer to setal positions) 2 Head, ventral view (numbers refer to setal positions) 3 Head and prothorax, right lateral view (a: antenna; c: lateral carina; dr: dorsal ridge; m: mandible; numbers refer to setal positions). Scale bars: 0.5 mm.

opencc-by-4.0Feb 2020View details →
zenodo28/100

Figures 4-11 from: Vitecek S, Martini J, Zittra C, Kuhlmann H, Vieira A, Waringer J (2020) The larva of Drusus dudor Oláh, 2017, including an updated key to larval Drusinae Banks, 1916 (Insecta, Trichoptera, Limnephilidae). ZooKeys 908: 137-155. https://doi.org/10.3897/zookeys.908.47032

Figures 4-11 Drusus dudor Oláh, 2017, 5th instar larva. 4 Head, thorax and abdominal segment I, dorsal view (dp: dorsal protuberance; lp: lateral protuberance; sa1, sa2, sa3: metanotal setal areas 1, 2 and 3) 5 Head and pronotum, frontal view (arrows: long dark setae not reaching dorsal midline; smo: smooth outline of pronotal ridge; numbers refer to setal positions) 6 Prosternum, ventral view (ph: prosternal horn; ps: prosternite) 7 Left fore leg, anterior view 8 Left mid leg, anterior view (arrows: proximodorsal setae) 9 Left hind leg, anterior view 10 Lateral protuberance, right lateral view (bracket: anterolateral setae; number 5 refers to setal position) 11 Abdominal sternum I, ventral view. Scale bars: 0.5 mm.

opencc-by-4.0Feb 2020View details →

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ibl
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Last verified 2026-04-29Open record