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217 results for “conservation biology”
FIGURES 53–60 in Pteroptyx maipo Ballantyne, a new species of bent-winged firefly (Coleoptera: Lampyridae) from Hong Kong, and its relevance to firefly biology and conservation
FIGURES 53–60. Pteroptyx maipo sp. nov. Female reproductive system. 53, 54 dorsal (53) and ventral view with ovaries removed, bursa to right and ventrite 8 retained; 55 entire reproductive system with ovaries to right, arrow showing direction of median oviduct; 56 plate at base of median oviduct, bursa to top of page, arrow to left in direction of median oviduct, arrow to right showing entry into bursa; 57 base of spermathecal duct adjoining bursa; 58 bursa with spermatophore protruding at anterior end, spermatheca arrowed; 59 bursa ventral surface anterior end to right; 60 bursa from side with spermatophore protruding.
FIGURES 61–70 in Pteroptyx maipo Ballantyne, a new species of bent-winged firefly (Coleoptera: Lampyridae) from Hong Kong, and its relevance to firefly biology and conservation
FIGURES 61–70. Pteroptyx maipo sp. nov. Larval and pupal features. 61, 62 13 mm long living larva dorsal (61) and ventral (62); (Fig. 61 arrows along posterior margin of metathoracic tergum indicate posterior emarginations; four arrows to left of figure indicate nodules along posterior margin; Fig. 62 arrows along left side of larva indicate spiracles on abdominal segments 3– 5); 63 second instar larvae; 64 first instar larvae; 65 male pupa ventral; 66 seven day old male pupa with light organ illuminated; 67 male pupa dorsal; 68 male pupa right lateral; 69 dorsal terminal abdomen male prepupa; 70 male prepupa lateral, with light organ glowing (arrows indicate pleural suture on thoracic segment 3 and abdominal segments 1–6). LS, laterosternites of abdomen; PS, presternum; S, sternum; SA, sternum abdominal segment 2.
FIGURES 43–48 in Pteroptyx maipo Ballantyne, a new species of bent-winged firefly (Coleoptera: Lampyridae) from Hong Kong, and its relevance to firefly biology and conservation
FIGURES 43–48. Pteroptyx maipo sp. nov. Male paratype. 43–45 aedeagus: 43 right lateral (arrows indicate anterior margins of median lobe on ventral [right side] and dorsal [left side] surfaces); 44 ventral (anterior margin of median lobe arrowed); 45 dorsal (arrows indicate anterior margins of median lobe on ventral surface and median lobe attachment to the inner margins of the lateral lobes). 46–48 aedeagal sheath: 46 left slightly ventrolateral; 47 ventral; 48 dorsal.
FIGURES 33–42 in Pteroptyx maipo Ballantyne, a new species of bent-winged firefly (Coleoptera: Lampyridae) from Hong Kong, and its relevance to firefly biology and conservation
FIGURES 33–42. Pteroptyx maipo sp. nov. Male paratype. 33 abdomen ventral; 34 abdomen dorsal; 35 V6, 7 illuminated by LO in living specimen; 36, 37 tergite 8 ventral (36) and dorsal; 38–42 MPP of V7: 38–40 posterior views (39 arrows indicate paired projections), 41 ventral, 42 dorsal.
FIGURES 27–32. Key characters Males 3. Pteroptyx valida Group 2 in Pteroptyx maipo Ballantyne, a new species of bent-winged firefly (Coleoptera: Lampyridae) from Hong Kong, and its relevance to firefly biology and conservation
FIGURES 27–32. Key characters Males 3. Pteroptyx valida Group 2 in Ballantyne (2001) (Kuala Selangor 27, 28, 31, 32; Bali 29, 30 ANIC):27, 31 ventral abdomen; 28 dorsal abdomen; 29 ventral V6, 7; 30 right face, lateral projection of MPP, dorsal surface uppermost; 32 ventral elytral apices.
Fig. 4 in Biology and Conservation of Cicindela ohlone Freitag and Kavanaugh, the Endangered Ohlone Tiger Beetle (Coleoptera: Carabidae: Cicindelinae). I. Distribution and Natural History
Fig. 4. Mean high monthly temperatures and total rainfall (30-year average) at Santa Cruz, California and seasonal abundance of adult Cicindela ohlone.
Fig. 5 in Biology and Conservation of Cicindela ohlone Freitag and Kavanaugh, the Endangered Ohlone Tiger Beetle (Coleoptera: Carabidae: Cicindelinae). I. Distribution and Natural History
Fig. 5. Relationship of air temperature and number of adult Cicindela ohlone counted, based on surveys at six sites and 20 total days
Fig. 3 in Biology and Conservation of Cicindela ohlone Freitag and Kavanaugh, the Endangered Ohlone Tiger Beetle (Coleoptera: Carabidae: Cicindelinae). I. Distribution and Natural History
Fig. 3. Development and survival of Cicindela ohlone in 180 oviposition burrows marked in March 2004.
Fig. 1 in Fig. 2 in Fishing for Tigers: A Method for Collecting Tiger Beetle Larvae Holds Useful Applications for Biology and Conservation
Fig. 1. Degree of dimorphism for all body and leg traits. Trait means ranged from 0.1– 39.6% larger in males than females. Results for tests of significance of difference in trait size are found in Table 1.
Fig. 2 in Fig. 2 in Fishing for Tigers: A Method for Collecting Tiger Beetle Larvae Holds Useful Applications for Biology and Conservation
Fig. 2. Frequency distribution of canonical discriminant scores for male and female Laccophilus maculosus. Female mean 5 0.315, male mean 5 20.587.
Aphid conservation biological control in arable crops via flower strips: the predominant role of plant resources over diversity effects
<p>Dataset and R code</p>
Supplementary material 3 from: Astuti G, Roma-Marzio F, D'Antraccoli M, Bedini G, Carta A, Sebastiani F, Bruschi P, Peruzzi L (2017) Conservation biology of the last Italian population of Cistus laurifolius (Cistaceae): demographic structure, reproductive success and population genetics. Nature Conservation 22: 169-190. https://doi.org/10.3897/natureconservation.22.19809
Supplementary material 3 from: Astuti G, Roma-Marzio F, D'Antraccoli M, Bedini G, Carta A, Sebastiani F, Bruschi P, Peruzzi L (2017) Conservation biology of the last Italian population of Cistus laurifolius (Cistaceae): demographic structure, reproductive success and population genetics. Nature Conservation 22: 169-190. https://doi.org/10.3897/natureconservation.22.19809
Supplementary material 2 from: Astuti G, Roma-Marzio F, D'Antraccoli M, Bedini G, Carta A, Sebastiani F, Bruschi P, Peruzzi L (2017) Conservation biology of the last Italian population of Cistus laurifolius (Cistaceae): demographic structure, reproductive success and population genetics. Nature Conservation 22: 169-190. https://doi.org/10.3897/natureconservation.22.19809
Supplementary material 2 from: Astuti G, Roma-Marzio F, D'Antraccoli M, Bedini G, Carta A, Sebastiani F, Bruschi P, Peruzzi L (2017) Conservation biology of the last Italian population of Cistus laurifolius (Cistaceae): demographic structure, reproductive success and population genetics. Nature Conservation 22: 169-190. https://doi.org/10.3897/natureconservation.22.19809
Supplementary material 1 from: Astuti G, Roma-Marzio F, D'Antraccoli M, Bedini G, Carta A, Sebastiani F, Bruschi P, Peruzzi L (2017) Conservation biology of the last Italian population of Cistus laurifolius (Cistaceae): demographic structure, reproductive success and population genetics. Nature Conservation 22: 169-190. https://doi.org/10.3897/natureconservation.22.19809
Supplementary material 1 from: Astuti G, Roma-Marzio F, D'Antraccoli M, Bedini G, Carta A, Sebastiani F, Bruschi P, Peruzzi L (2017) Conservation biology of the last Italian population of Cistus laurifolius (Cistaceae): demographic structure, reproductive success and population genetics. Nature Conservation 22: 169-190. https://doi.org/10.3897/natureconservation.22.19809
Figure 6. Burned area per month detected between 1985 and 2020 in Breeding biology of the Ochre-breasted pipit (Anthus nattereri), with notes on its conservation in the Upper Rio Grande Grasslands, south-eastern Brazil
Figure 6. Burned area per month detected between 1985 and 2020 in São João del-Rei, south-eastern Brazil. Data from the MapBiomas (2022). The dotted line indicates the average across months.
Figure 5 in Breeding biology of the Ochre-breasted pipit (Anthus nattereri), with notes on its conservation in the Upper Rio Grande Grasslands, south-eastern Brazil
Figure 5. Arrangement diagram of the Ochre-breasted pipit nesting sites and unused sites in a grassland habitat in São João del-Rei, south-eastern Brazil. The first two components of a principal component analysis are shown: square = nesting sites located in small patches of grassland vegetation with more than 2 years of post-burn regeneration; triangle = nesting sites located in vegetation with> 1 year <2 years of regeneration; and cross = unused sites. PC = principal component. Attribute legend: liveveg = covered with living vegetation; deadveg = covered with dead vegetation; bareground = exposed soil; dens10 = vegetation density between 0 and 10 cm in height; dens = average vegetation density; height = height below which 90% of the vegetation density is located (cm).
Figure 4. Ochre-breasted pipit nestlings with about 6 in Breeding biology of the Ochre-breasted pipit (Anthus nattereri), with notes on its conservation in the Upper Rio Grande Grasslands, south-eastern Brazil
Figure 4. Ochre-breasted pipit nestlings with about 6 (a) and 11 (b) days of life, as photographed in nest #3. Nest found in a grassland in São João del-Rei, south-eastern Brazil, in October 2016. Photos: VTL.
Figure 3 in Breeding biology of the Ochre-breasted pipit (Anthus nattereri), with notes on its conservation in the Upper Rio Grande Grasslands, south-eastern Brazil
Figure 3. Variation in the shape and colour of eggs of the Ochre-breasted pipit. Nests found in a grassland habitat of São João del-Rei, south-eastern Brazil, between October and November 2016: (a) one of the eggs of nest #2; (b) the two-egg clutch of nest #4; (c) the three-egg clutch of nest #3, showing a more round-shaped egg on the left. The white bar is 10 mm in scale. Photos: VTL.
Figure 2 in Breeding biology of the Ochre-breasted pipit (Anthus nattereri), with notes on its conservation in the Upper Rio Grande Grasslands, south-eastern Brazil
Figure 2. Nest #4 illustrating the two poorly defined layers of the structural zone of the Ochrebreasted pipit nests found in São João del-Rei, south-eastern Brazil, between October and November 2016: (a) outermost layer composed of small basal meristems of tussock grasses and/or by (b) thin grass stems with their leaves still attached. This outermost layer envelops the innermost layer (c), which is built with narrow filiform grass leaves tightly intertwined. Photos: VTL.
Supplementary material 1 from: Assmann T, Boutaud E, Buse J, Gebert J, Drees C, Friedman A-L-L, Khoury F, Marcus T, Orbach E, Renan I, Schmidt C, Zumstein P (2018) The tiger beetles (Coleoptera, Cicindelidae) of the southern Levant: from cybertaxonomy to conservation biolog. ZooKeys 734: 43-103. https://doi.org/10.3897/zookeys.734.21989
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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.
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.
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.
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.