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86 results for “Nest structure”
FIG. 3 in Nest-Site Fidelity and Sex-Biased Dispersal Affect Spatial Genetic Structure of Eastern Box Turtles (Terrapene carolina carolina) at Their Northern Range Edge
FIG. 3. Bubble plot showing the results of two-dimensional local spatial autocorrelation analysis for all Eastern Box Turtles (n ¼ 165) sampled in northwestern Michigan. Circles represent individuals and the size of the circle is proportional to the P-values from permutation testing, with large circles representing individuals that are significantly more related to their five nearest neighbors than expected (P, 0.05) based on a random distribution of genotypes. Figure shows the distribution of five genetic ''hotspots'' in relation to known nesting sites (NS) across the study area. Some distantly sampled individuals are omitted for figure clarity.
FIG. 2 in Nest-Site Fidelity and Sex-Biased Dispersal Affect Spatial Genetic Structure of Eastern Box Turtles (Terrapene carolina carolina) at Their Northern Range Edge
FIG. 2. Spatial genetic autocorrelograms of genetic correlation coefficients (r) as a function of distance for Eastern Box Turtles in northwestern Michigan. Plots represent (A) all individuals (n ¼ 165), (B) females only (n ¼ 104), and (C) males only (n ¼ 51). Dashed lines are permuted 95% confidence intervals across all data, and error bars are bootstrapped 95% confidence intervals within each distance class. Tables below graphs represent data for each distance class including the number of pairwise comparisons (n), the correlation coefficients (r), and the P-values (p) associated with bootstrap tests of significance for positive spatial genetic autocorrelation.
FIG. 1 in Nest-Site Fidelity and Sex-Biased Dispersal Affect Spatial Genetic Structure of Eastern Box Turtles (Terrapene carolina carolina) at Their Northern Range Edge
FIG. 1. Scatterplot showing the matrix of pairwise genetic distances and matrix of pairwise geographic distances for box turtles sampled along the river corridor. Warmer colors within the kernel density indicate higher densities of points. The line (slope ¼ 1.074727e–05; R2 ¼ 0.002992) shows the correlation trend.
Рис. 5. АвтомобиΛьный мост, на конструкциях которого гнезΑятся скаΛьные гоΛуби Columba rupestris. Октябрьский район, окрестности сеΛа Покровка, 23.04.2022. Фото À. В. Коробова Fig. 5. A road bridge with nests of hill pigeons Columba rupestris on its structures. Oktyabrsky District, vicinity of the village of Pokrovka, 23.04.2022. Photo by D. V. Korobov in About breeding biology of the hill pigeon Columba rupestris in Primorsky Krai
Рис. 5. АвтомобиΛьный мост, на конструкциях которого гнезΑятся скаΛьные гоΛуби Columba rupestris. Октябрьский район, окрестности сеΛа Покровка, 23.04.2022. Фото À. В. Коробова Fig. 5. A road bridge with nests of hill pigeons Columba rupestris on its structures. Oktyabrsky District, vicinity of the village of Pokrovka, 23.04.2022. Photo by D. V. Korobov
Dataset for "Lithospheric structure above the Northern Appalachian Anomaly: Initial results from the NEST array"
<p>The preprocessed seismic traces used in the receiver function analysis and resulting negative velocity gradient (NVG) depths. This dataset was used in, "Lithospheric structure above the Northern Appalachian Anomaly: Initial results from the NEST array" by Kimberly Espinal, Maureen Long, Paul Karabinos, and James R. Bourke. The manuscript will soon be available.</p> <p>The receiver functions were processed using a version of the software by Jeffrey Park and Vadim Levin (https://seiscode.iris.washington.edu/projects/rfsyn). </p>
Figure 8 in Nest structure and all stages of the long-cheeked yellow jacket Dolichovespula intermedia Birula (Hymenoptera: Vespidae)
Figure 8. Dolichovespula sylvestris (Scopoli) (♂). (a–d) From Xinjiang. (a) Head, anterior view. (b) Habitus, lateral view. (c) Genitalia, ventral view. (d) Genitalia, dorsal view. (e, f) from France. (e) Genitalia, dorsal view. (f) Head, lateral view.
Figure 7 in Nest structure and all stages of the long-cheeked yellow jacket Dolichovespula intermedia Birula (Hymenoptera: Vespidae)
Figure 7. Ultrastructures of Dolichovespula intermedia Birula (scanning electron micrographs). (a) Right maxilla, ventrofrontal view. (b) Labium. (c) Right labial palp. (d) Parts of palate. (e) Antenna. (f) Spiracle. (g) Clypeus and part of labrum. (h) Paramere, inner view.
Figure 6 in Nest structure and all stages of the long-cheeked yellow jacket Dolichovespula intermedia Birula (Hymenoptera: Vespidae)
Figure 6. Dolichovespula intermedia Birula, mature stages. (a) Part of mouth parts, showing maxillary palp, galea, labial palpi and spinneret. (b) Head of mature larva, dorsal view. (c) Part of mouth parts, showing maxillary palp, galea, labial palpi and spinneret. (d) Spiracle. (e) Labrum, frontal view, showing minute setae and conical papillae. (f) Palate and part of mandible.
Figure 5 in Nest structure and all stages of the long-cheeked yellow jacket Dolichovespula intermedia Birula (Hymenoptera: Vespidae)
Figure 5. Dolichovespula intermedia Birula, development of mandible. (a) First larval instar, anterior view. (b) Second larval instar. (c) Third instar larva. (d, e) Fourth instar larva. (f) Mature larva.
Figure 4 in Nest structure and all stages of the long-cheeked yellow jacket Dolichovespula intermedia Birula (Hymenoptera: Vespidae)
Figure 4. Dolichovespula intermedia Birula, immature stages. (a) First larval instar, ventral view. (b) Second instar, ventral view. (c, d) Fourth instar, ventral view. (e) Mature larva, ventral view. (f) Mature larva, lateral view. (g) Pupa. (h) Egg.
Figure 3 in Nest structure and all stages of the long-cheeked yellow jacket Dolichovespula intermedia Birula (Hymenoptera: Vespidae)
Figure 3. Dolichovespula intermedia Birula (1930) (♂). (a, b) Nest from Gongnaisi. (c–i) Nest from Jiayuguan. (d, e) Three layers of combs. (f–h) Three layers of combs from nest. (i) The upper comb, dorsal view.
Figure 2 in Nest structure and all stages of the long-cheeked yellow jacket Dolichovespula intermedia Birula (Hymenoptera: Vespidae)
Figure 2. Dolichovespula intermedia Birula (1930) (♂). (a) Head, anterior view. (b) Habitus, lateral view. (c) Right antenna; terminal five segments of antenna. (d) Genitalia, lateral view. (e) Genitalia, ventral view. (f) Genitalia, dorsal view. Abbreviations: ae, aedeagus; cu, cuspis; di, digitus; pa, paramere; DMP, dorsal margin of paramere; PP, parameral process; PS, parameral spine.
Figure 1 in Nest structure and all stages of the long-cheeked yellow jacket Dolichovespula intermedia Birula (Hymenoptera: Vespidae)
Figure 1. Dolichovespula intermedia Birula (1930). (a) Queen (♀q) habitus, dorsal view. (b) Worker (♀w) habitus, dorsal view. (c) Male (♂), habitus, dorsal view. (d) Queen (♀q) head, anterior view. (e) Queen (♀q) habitus, lateral view. (f) Worker (♀w) head, anterior view. (g) Worker (♀w) habitus, lateral view.
Figure 6. Dolichovespula stigma Lee, 1986 in Nest structure and all stages of the long-cheeked yellow jacket Dolichovespula stigma Lee (Hymenoptera: Vespidae), with a new synonym
Figure 6. Dolichovespula stigma Lee, 1986, mature larva. (a) Spiracle; (b) part of mouth parts, showing maxillary palp, galea, labial palpi and spinneret; (c) palate and part of mandible; (d) left half of labrum, frontal view, showing minute setae and conical papillae; (e) part of gena, showing dense short setae; (f) cuticle integument with scattered, short setae and dense minute spicules.
Figure 5. Dolichovespula stigma Lee, 1986 in Nest structure and all stages of the long-cheeked yellow jacket Dolichovespula stigma Lee (Hymenoptera: Vespidae), with a new synonym
Figure 5. Dolichovespula stigma Lee, 1986, immature stages. (a) Egg (slightly deteriorated); (b) young larva, ventral view (slightly deteriorated); (c) mature larva, lateral view; (d, e) pupa; (f) head of mature larva, anterior view; (g) ibid, dorsal view; (h) mouth parts of mature larva; (i) mouth parts of young larva.
Figure 3. Dolichovespula stigma Lee, 1986 in Nest structure and all stages of the long-cheeked yellow jacket Dolichovespula stigma Lee (Hymenoptera: Vespidae), with a new synonym
Figure 3. Dolichovespula stigma Lee, 1986 (♂). (a) Habitus, lateral view; (b) head, anterior view; (c) right antenna; (d) terminal four segments of antenna; (e) genitalia, dorsal view; (f) ibid, ventral view; (g) ibid, lateral view; (h) paramere, inner view; (i) volsella with cuspis and digitus. Abbreviations: ae, aedeagus; cu, cuspis; di, digitus; pa, paramere; DMP, dorsal margin of paramere; PP, parameral process; PS, parameral spine.
Figure 1. Dolichovespula stigma Lee, 1986 in Nest structure and all stages of the long-cheeked yellow jacket Dolichovespula stigma Lee (Hymenoptera: Vespidae), with a new synonym
Figure 1. Dolichovespula stigma Lee, 1986. (a–e) Queen (♀q): (a) Habitus (from Shaanxi), dorsal view; (b) ibid, Ningxia; (c) ibid, Hubei; (d) habitus (from Shaanxi), lateral view; (e) head, anterior view. (f, g) Worker (♀w): (f) Habitus, lateral view; (g) head, anterior view.
Figure 4. Dolichovespula stigma Lee, 1986 in Nest structure and all stages of the long-cheeked yellow jacket Dolichovespula stigma Lee (Hymenoptera: Vespidae), with a new synonym
Figure 4. Dolichovespula stigma Lee, 1986. (a, b) Nest from Xunyangba; (c, d) nest from Niubeiliang; (e) combs of nest; (f) three layers of the combs from nest of Niubeiliang; (g) ibid, from Xunyangba.
Figure 2. Dolichovespula stigma Lee, 1986 in Nest structure and all stages of the long-cheeked yellow jacket Dolichovespula stigma Lee (Hymenoptera: Vespidae), with a new synonym
Figure 2. Dolichovespula stigma Lee, 1986. (a–c) Worker (♀w), dorsal view, showing variation of colour pattern; (d–f) male (♂), dorsal view, showing variation of colour pattern; (g) metasomal terminal segments of ♂, lateral view; (h) ibid, dorsal view; (i) ibid, ventral view.
Figure 1. A in Structural comparisons of isomorphic breeding nests between closely allied spiders Cheiracanthium japonicum and Cheiracanthium lascivum (Araneae: Eutichuridae)
Figure 1. A breeding nest being constructed by a female. (a) Cheiracanthium japonicum; (b) Cheiracanthium lascivum.
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International Brain Laboratory public data
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OpenNeuro
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