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99 results for “Conservation unit”

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zenodo32/100

FIGURES 1–40 in Achnanthidium guarulhense sp. nov. (Achnanthidiaceae, Bacillariophyta), a new diatom species from a Conservation Unit in Southeast Brazil

FIGURES 1–40. LM images of Achnanthidium guarulhense sp. nov. of the (UPCB 105117) holotype slide from Negro Lake, Guarulhos, state of São Paulo. 1–29. LM views of raphe valves. 30–37. LM views of rapheless valves. 38–40. LM of girdle view. LM scale bar = 10 μm.

opennotspecifiedMar 2024View details →
zenodo32/100

FIGURES 41–49 in Achnanthidium guarulhense sp. nov. (Achnanthidiaceae, Bacillariophyta), a new diatom species from a Conservation Unit in Southeast Brazil

FIGURES 41–49. SEM images of Achnanthidium guarulhense sp. nov. of the (UPCB 105117) holotype slide from Negro Lake, Guarulhos, state of São Paulo. 41. SEM external view of raphe valve showing striation pattern, and axial and central areas. 42–44. SEM internal view of the raphe valve. 44. Note the detail of areolae occlusions. 45–46. SEM external view of the rapheless valve. 47. SEM internal view of the rapheless valve. 48–49. SEM showing the girdle view. SEM scale bar = 3 μm; 44 =1 μm; 46, 49 = 4 μm.

opennotspecifiedMar 2024View details →
zenodo32/100

FIGURE 4 in Eighty years later: a new Neotropical species of Megalopelma Enderlein (Mycetophilidae) from the Cerrado and its conservation units

FIGURE 4. Megalopelma lopesi sp. nov. Female. PEAMP, Trilha do Tamanduá. -16.553250 -49.131511, (18.i.2023–16.ii.2023). A. Habitus, lateral view. B. Detailed view of habitus, lateral view. C. Habitus, dorsal view. D. Head, dorsal view. E. Genitalia, ventral view. F. Genitalia, lateral view.

opennotspecifiedOct 2024View details →
zenodo32/100

FIGURE 1 in Eighty years later: a new Neotropical species of Megalopelma Enderlein (Mycetophilidae) from the Cerrado and its conservation units

FIGURE 1. Distribution map of Megalopelma Enderlein in Brazil, showing the 1,200 km distance between M. lopesi sp. nov. and the genus type. Abbreviations: PNE, Parque Nacional das Emas; PEP, Parque Estadual dos Pirineus; PEAMP, Parque Estadual Altamiro de Moura Pacheco; FLONA, Silvânia Floresta Nacional de Silvânia.

opennotspecifiedOct 2024View details →
zenodo32/100

FIGURE 3 in Eighty years later: a new Neotropical species of Megalopelma Enderlein (Mycetophilidae) from the Cerrado and its conservation units

FIGURE 3. Megalopelma lopesi sp. nov. Male. PEAMP, Trilha do Tamanduá. -16.553250 -49.131511, (18.i.2023–16.ii.2023). A. Habitus, lateral view. B. Detailed view of habitus, lateral view. C. Habitus, dorsal view. D. Head, dorsal view. E. Habitus, ventral view. F. Genitalia, lateral view.

opennotspecifiedOct 2024View details →
zenodo32/100

FIGURE 2. Megalopelma planiceps Enderlein, 1910 in Eighty years later: a new Neotropical species of Megalopelma Enderlein (Mycetophilidae) from the Cerrado and its conservation units

FIGURE 2. Megalopelma planiceps Enderlein, 1910. The female type housed at the Polish Academy of Science (courtesy of Dalton de Souza Amorim). A: Wing slide of the female type, not pinned together with the specimen. B: Type labels with the female type in micropin; C: Habitus, lateral view; D: Habitus, dorsal view; E: Wing.

opennotspecifiedOct 2024View details →
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FIGURE 5 in Eighty years later: a new Neotropical species of Megalopelma Enderlein (Mycetophilidae) from the Cerrado and its conservation units

FIGURE 5. Megalopelma lopesi sp. nov. mounted in permanent slide, PNE, 15.i.2016–20.ii.2016, specimens in slide. A. Male habitus before dissection, holotype. B. Female habitus before dissection, paratype. C. Wing detail, female paratype. D. Female genitalia, ventral view, paratype. E. Male genitalia, ventral view, holotype. F. Male gonostyle, ventral view, holotype. Abbreviations: h—humeral vein; Sc—subcostal vein; C—costal vein; Rs—radial sector; sc-r—subcostal-radial crossvein; R1—anterior branch of radius; R2+3—second branch of radius; R 4+5 —third branch of radius; r-m—radial-medial crossvein; M1—first branch of media; M2—second branch of media; M4—fourth branch of media; M-fork—medial vein fork; aed— aedeagus; goncx—gonocoxite; gonst—gonostyle; goncx apod—gonocoxite apodeme; cerc—cercus; pm—parameres; pm apod—parameres apodeme; S—sternite; T—tergite.

opennotspecifiedOct 2024View details →
dryad32/100

Data from: Defining conservation units with enhanced molecular tools to reveal fine scale structuring among Mediterranean green turtle rookeries

Understanding the connectivity among populations is a key research priority for species of conservation concern. Genetic tools are widely used for this purpose, but the results can be limited by the resolution of the genetic markers in relation to the species and geographic scale. Here, we investigate natal philopatry in green turtles (Chelonia mydas) from four rookeries within close geographic proximity (~ 200km) on the Mediterranean island of Cyprus. We genotyped hypervariable mtSTRs, a mtDNA control region sequence (CR) and 13 microsatellite loci to genetically characterise 479 green turtles using markers with different modes of inheritance. We demonstrated matrilineal stock structure for the first time among Mediterranean green turtle rookeries. This result contradicts previous regional assessments and supports a growing body of evidence that green turtles exhibit a more precise level of natal site fidelity than has commonly been recognised. The microsatellites detected weak male philopatry with significant stock structure among three of the six pairwise comparisons. The absence of Atlantic CR haplotypes and mtSTRs among these robust sample sizes reaffirm the reproductive isolation of Mediterranean green turtles and supports their status as a subpopulation. A power analysis effectively demonstrated that the mtDNA genetic markers previously employed to evaluate regional stock identity were confounded by an insufficient resolution considering the recent colonisation of this region. These findings improve the regional understanding of stock connectivity and illustrate the importance of using suitable genetic markers to define appropriate units for management and conservation.

opencc-zeroDec 2017View details →
zenodo32/100

FIGURE 3. A in Recognizing taxonomic units in the field-The case of the crickets Oecanthus dulcisonans Gorochov 1993, and O. pellucens (Scopoli, 1763) (Orthoptera: Gryllidae): implications for their distribution and conservation in Southern Europe

FIGURE 3. A, ventral view of Oecan- FIGURE 4. Oscillograms and sonograms of Oecanthus dulcisothus pellucens (p) and O. dulcisonans nans (A,C,E,G,I) and O. pellucens (B,D,F,H,J). AB, oscillograms (d). B, details of the sternum of both of 10 seconds of calling song at 21ºC in identical housing condispecies (p) and (d). tions. CD, one second oscillogram including a full echeme of O.

opennotspecifiedNov 2009View details →
zenodo32/100

FIGURE 1 in Recognizing taxonomic units in the field-The case of the crickets Oecanthus dulcisonans Gorochov 1993, and O. pellucens (Scopoli, 1763) (Orthoptera: Gryllidae): implications for their distribution and conservation in Southern Europe

FIGURE 1. Epiphallus of Oecanthus dulcisonans FIGURE 2. Differences in tegmen length between from Almería, Spain (da, above; db, below) and O. pel- O. dulcisonans and O. pellucens. Line in box reprelucens from Toledo, Spain (p, above; pb, below). senting the median, extreme of the boxes, quartile

opennotspecifiedNov 2009View details →
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Figure 1 in Natural regeneration in Atlantic Forest Fragments: using ants (Hymenoptera: Formicidae) for monitoring a conservation unit

Figure 1. Botujuru Private Natural Heritage Preserve location and the respective collecting sites.

opencc-by-nc-4.0Nov 2022View details →
zenodo32/100

Fig. 3 in Evaluating the principles of wildlife conservation: a case study of wolf (Canis lupus) hunting in Michigan, United States

Fig. 3.—Seasonal occurrence of wolves killing cattle (depredation events) in Michigan, 1996–2012. Note that only 3.8% of depredations occur during the planned hunting season. Source: Michigan Department of Natural Resources (May 2014).

opennotspecifiedFeb 2017View details →
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Fig. 2 in Evaluating the principles of wildlife conservation: a case study of wolf (Canis lupus) hunting in Michigan, United States

Fig. 2.—Verified instances of wolves killing cattle (depredations) in Michigan, 1996–2013. The solid line indicates losses from throughout the geographic range of wolves in Michigan, excluding losses that occurred on 1 farm. The dashed line is the additional losses attributable to that 1 farm, where poor animal husbandry likely increased the risk of depredations (see "Characterizing the Problems"). The number of depredations declined considerably just prior to the planning and implementation of Michigan's 1st wolf hunt in 2013. Source: Michigan Department of Natural Resources (May 2014).

opennotspecifiedFeb 2017View details →
zenodo32/100

Fig. 1 in Evaluating the principles of wildlife conservation: a case study of wolf (Canis lupus) hunting in Michigan, United States

Fig. 1.—Timeline of key political events pertaining to the management of Michigan wolves. The details of each event are given in "Chronology of Political Events." Events above the timeline disfavor wolves and events below the timeline favor wolves. Dashed boxes indicate actions initiated by citizens. Solid boxes indicate actions initiated by the government. Key actors in the timeline are the Michigan Natural Resource Commission (NRC), Michigan Department of Natural Resources (DNR), and the United States Endangered Species Act (ESA). The online version of this figure includes color to indicate which events were associated with the executive branch (green), the courts (black), and each of the particular laws—Public Act (PA) 520 (blue), Senate Bill (SB) 288 and PA 21 (red), and PA 281 (magenta).

opennotspecifiedFeb 2017View details →
zenodo32/100

FIGURES 70–72 in Wing pattern variation and DNA barcodes defy taxonomic splitting in the New Zealand Pimelea Looper Notoreas perornata (Walker) (Lepidoptera: Geometridae: Larentiinae): the importance of populations as conservation units

FIGURES 70–72. Notoreas perornata, genitalia of selected populations (population code in brackets): 70. male genital capsule; 71. phallus; 72. female genitalia. 70, 71. Wairau Bar MB (2c), NZAC slide Notoreas 65; 72. Karioitahi Beach AK (1a), NZAC slide Notoreas 60.

opennotspecifiedSep 2023View details →
zenodo32/100

FIGURES 73–76 in Wing pattern variation and DNA barcodes defy taxonomic splitting in the New Zealand Pimelea Looper Notoreas perornata (Walker) (Lepidoptera: Geometridae: Larentiinae): the importance of populations as conservation units

FIGURES 73–76. Notoreas perornata, female genitalia of selected populations (population code in brackets). 73. Pureora Lodge TO (1b), NZAC slide Notoreas 5; 74. Castlepoint WA (1e), NZAC slide Notoreas 71; 75. Te Humenga Pt WA (2a), NZAC slide Notoreas 9; 76. Cape Farewell NN (2b), NZAC slide Notoreas 51.

opennotspecifiedSep 2023View details →
zenodo32/100

FIGURES 54–57 in Wing pattern variation and DNA barcodes defy taxonomic splitting in the New Zealand Pimelea Looper Notoreas perornata (Walker) (Lepidoptera: Geometridae: Larentiinae): the importance of populations as conservation units

FIGURES 54–57. Notoreas perornata adults (2e). 54. Male upperside, Waiho Flats WD; 55. Female upperside, Waiho Flats WD; 56. Male underside, Waiho Flats WD; 57. Female underside (same specimen as Fig. 55).

opennotspecifiedSep 2023View details →
zenodo32/100

FIGURES 66–69 in Wing pattern variation and DNA barcodes defy taxonomic splitting in the New Zealand Pimelea Looper Notoreas perornata (Walker) (Lepidoptera: Geometridae: Larentiinae): the importance of populations as conservation units

FIGURES 66–69. Notoreas perornata, male genitalia of selected populations (population code in brackets): 66, 68. genital capsule; 67, 69. phallus. 66, 67. Te Humenga Pt WA (2a), NZAC slide Notoreas 7; 68, 69. Dry Rd, Sth Sandhill Creek NN (2b), NZAC slide Notoreas 12.

opennotspecifiedSep 2023View details →
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FIGURES 62–65 in Wing pattern variation and DNA barcodes defy taxonomic splitting in the New Zealand Pimelea Looper Notoreas perornata (Walker) (Lepidoptera: Geometridae: Larentiinae): the importance of populations as conservation units

FIGURES 62–65. Notoreas perornata, male genitalia of selected populations (population code from text in brackets): 62, 64. genital capsule; 63, 65. phallus. Note: apparent slight differences between genitalia of moths from different populations (e.g. shape and spinosity of costal process of valva) do not seem to provide reliable taxonomic characters when larger samples are studied due to variation within populations; these images are included to give an impression of the variation and small differences should not be interpreted as constant or diagnostic. 62, 63. Waimamaku Beach ND (1a), NZAC slide Notoreas 11; 64, 65. Mt Ruapehu TO (1b), NZAC slide Notoreas 2.

opennotspecifiedSep 2023View details →
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FIGURES 48–53 in Wing pattern variation and DNA barcodes defy taxonomic splitting in the New Zealand Pimelea Looper Notoreas perornata (Walker) (Lepidoptera: Geometridae: Larentiinae): the importance of populations as conservation units

FIGURES 48–53. Notoreas perornata adults (2d). 48. Female upperside, Mt Starveall NN; 49. Male underside (same specimen as Fig. 44); 50. Male underside (same specimen as Fig. 45); 51. Female underside (same specimen as Fig. 46); 52. Female underside (same specimen as Fig. 47); 53. Female underside (same specimen as Fig. 48).

opennotspecifiedSep 2023View details →

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Allen Brain Atlas

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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

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Last verified 2026-04-29Open record