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Plate 47 in Nineteen new genera and 82 new species of Cremnorrhinina from Australia, including analyses of host relationships and distributions (Insecta: Hemiptera: Miridae: Phylininae: Cremnorrhinini)
Plate 47. Digital female genitialic images of Halophylus spp. A. Bursa copulatrix, dorsal view. B. Bursa copulatrix, ventral view. C. Bursa copulatix, left lateral view. D, E. Base of second gonapophyses, dorsal view. H. chenopodos AMNH_PBI 00132962: D. H. tecticornii AMNH_PBI 00098132: A–C; AMNH_PBI 00098272: E. Scales 100 m.
Plate 52 in Nineteen new genera and 82 new species of Cremnorrhinina from Australia, including analyses of host relationships and distributions (Insecta: Hemiptera: Miridae: Phylininae: Cremnorrhinini)
Plate 52. Digital female genitialic images of Proteophylus spp. A, B. Bursa copulatrix, dorsal view. C, D. Bursa copulatrix, ventral view. E. Bursa copulatix, left lateral view. F. Bursa copulatrix right lateral view. G. Posterior wall, anterior view. H. Bursa copulatrix, open ventral view. P. grevilleae AMNH_PBI 00098789: A, G, H; AMNH_PBI 00098790: C, E. P. petrophile AMNH_PBI 00135214: B, D, F. Scales A– F, 100 m, G, 50 m.
Plate 55 in Nineteen new genera and 82 new species of Cremnorrhinina from Australia, including analyses of host relationships and distributions (Insecta: Hemiptera: Miridae: Phylininae: Cremnorrhinini)
Plate 55. Digital female genitialic images of Telophylus eremophilae. A. Bursa copulatrix, dorsal view. B. Bursa copulatrix, left lateral view. C. Bursa copulatix, ventral view. D. Posterior wall, anterior view. AMNH_PBI 00412331: A–C; AMNH_PBI 00412324: D. Scales 100 m.
Plate 51 in Nineteen new genera and 82 new species of Cremnorrhinina from Australia, including analyses of host relationships and distributions (Insecta: Hemiptera: Miridae: Phylininae: Cremnorrhinini)
Plate 51. Digital female genitialic images of Omnivoriphylus spp. A, B. Bursa copulatrix, dorsal view. C, D. Bursa copulatrix, ventral view. E, F. Bursa copulatix, left lateral view. D. Posterior wall, anterior view. O. frankenii AMNH_PBI 00130144: B, D, F. O. mangaensis AMNH_PBI 00387510: A, C, E. Scales 100 m.
Plate 53 in Nineteen new genera and 82 new species of Cremnorrhinina from Australia, including analyses of host relationships and distributions (Insecta: Hemiptera: Miridae: Phylininae: Cremnorrhinini)
Plate 53. Digital female genitialic images of Pulvillophylus rossi. A. Bursa copulatrix, dorsal view. B. Bursa copulatrix, ventral view. C. Bursa copulatix, left lateral open view. D. Posterior wall, anterior view. AMNH_PBI 00391065: A, C, D; AMNH_PBI 00391066: B. Scales 100 m.
Fig. 70. Proteophylus grevilleae. Scanning electron micrographs. A in Nineteen new genera and 82 new species of Cremnorrhinina from Australia, including analyses of host relationships and distributions (Insecta: Hemiptera: Miridae: Phylininae: Cremnorrhinini)
Fig. 70. Proteophylus grevilleae. Scanning electron micrographs. A. Dorsal view of head and pronotum. B. Detail of lepidote setae on pronotum. C. Thoracic pleuron, showing lepidote setae and metathoracic spiracle opening, metathoracic scent-gland auricle, and evaporatory area. D. Dorsolateral view of pygophore. E. Frontal view of pretarsus. F. Ventral view of pretarsus. Abbreviations: lp, left paramere; pe, parempodium; phl, phallotheca; pul, pulvillus; rp, right paramere; sgev, scent gland evaporatory area.
Fig. 57. Myoporophylus grossi. Scanning electron micrographs. A in Nineteen new genera and 82 new species of Cremnorrhinina from Australia, including analyses of host relationships and distributions (Insecta: Hemiptera: Miridae: Phylininae: Cremnorrhinini)
Fig. 57. Myoporophylus grossi. Scanning electron micrographs. A. Dorsofrontal view of head and pronotum. B. Detail of pronotal setae. C. Dorsal view of pygophore. D. Frontal view of pretarsus. Abbreviations: lp, left paramere; pe, parempodium; phl, phallotheca; pul, pulvillus.
Fig. 45. Halophylus tecticornii. Scanning electron micrographs. A in Nineteen new genera and 82 new species of Cremnorrhinina from Australia, including analyses of host relationships and distributions (Insecta: Hemiptera: Miridae: Phylininae: Cremnorrhinini)
Fig. 45. Halophylus tecticornii. Scanning electron micrographs. A. Dorsofrontal view of head and pronotum. B. Lateral view of head and pronotum. C. Detail of pronotal setae. D. Dorsolateral view of pygophore. E. Ventral view of pygophore showing field of heavy setae. F. Dorsal view of pretarsus. Abbreviations: lp, left paramere; pe, parempodium; pgsp, phygophoral spines; phl, phallotheca; prc, proctiger; pul, pulvillus.
Fig. 31. Grandivesica cassisi. Scanning electron micrographs. A in Nineteen new genera and 82 new species of Cremnorrhinina from Australia, including analyses of host relationships and distributions (Insecta: Hemiptera: Miridae: Phylininae: Cremnorrhinini)
Fig. 31. Grandivesica cassisi. Scanning electron micrographs. A. Lateral view of head, showing structural details common to most Australian Cremnorrhinina. B. Detail of pronotal setae. C. Thoracic pleuron, showing metathoracic spiracle opening, metathoracic scent-gland auricle, and evaporatory area. D. Lateroventral view of pygophore. E. Lateroventral view of pretarsus. F. Frontal view of pretarsus. Abbreviations: lp, left paramere; mttsp, metathoracic spiracle; pe, parempodium; phl, phallotheca; pul, pulvillus; sgaur, scent gland auricle; sgev, scent gland evaporatory area.
Fig. 81. Spinivesica eremophiloides. Scanning electron micrographs. A in Nineteen new genera and 82 new species of Cremnorrhinina from Australia, including analyses of host relationships and distributions (Insecta: Hemiptera: Miridae: Phylininae: Cremnorrhinini)
Fig. 81. Spinivesica eremophiloides. Scanning electron micrographs. A. Lateral view of specimen. B. Lateral view of head and prothorax, showing typical structure of head in Australian Cremnorrhinina. C. Enlarged view of prothorax. D. Detail of pronotal setae. E. Frontoventral view of pretarsus. F. Frontal view of pretarsus. Abbreviations: pe, parempodium; pul, pulvillus.
Fig. 64. Omnivoriphylus mangaensis. Scanning electron micrographs. A in Nineteen new genera and 82 new species of Cremnorrhinina from Australia, including analyses of host relationships and distributions (Insecta: Hemiptera: Miridae: Phylininae: Cremnorrhinini)
Fig. 64. Omnivoriphylus mangaensis. Scanning electron micrographs. A. Lateral view of head, showing structural details common to most Australian Cremnorrhinina. B. Detail of pronotal setae. C. Enlarged view of pronotal setae. D. Thoracic pleuron, showing metathoracic spiracle opening, metathoracic scentgland auricle, and evaporatory area. E. Frontal view of pretarsus. F. Frontal view of pretarsus. Abbreviations: mttsp, metathoracic spiracle; pe, parempodium; pul, pulvillus; sgaur, scent gland auricle; sgev, scent gland evaporatory area.
Fig. 19. Dicyphylus pilbara. Scanning electron micrographs. A in Nineteen new genera and 82 new species of Cremnorrhinina from Australia, including analyses of host relationships and distributions (Insecta: Hemiptera: Miridae: Phylininae: Cremnorrhinini)
Fig. 19. Dicyphylus pilbara. Scanning electron micrographs. A. Dorsal view of head and pronotum. B. Enlarged view of pronotum. C. Detail of pronotal setae. D. Lateral view of pygophore. E. Frontoventral view of pretarsus. F. Frontal view of pretarsus. Abbreviations: lp, left paramere; pe, parempodium; pul, pulvillus; rp, right paramere.
Fig. 3. Asterophylus chrysocephali. Scanning electron micrographs. A in Nineteen new genera and 82 new species of Cremnorrhinina from Australia, including analyses of host relationships and distributions (Insecta: Hemiptera: Miridae: Phylininae: Cremnorrhinini)
Fig. 3. Asterophylus chrysocephali. Scanning electron micrographs. A. Lateral view of head and pronotum. B. Detail view of specialized setae with "bident" apex on head and pronotum. C. Ventral view of pretarsus. Abbreviations: pe, parempodium; pul, pulvillus.
Plate 18 in Nineteen new genera and 82 new species of Cremnorrhinina from Australia, including analyses of host relationships and distributions (Insecta: Hemiptera: Miridae: Phylininae: Cremnorrhinini)
Plate 18. Digital habitus and endosomal images of Lepidophylus guttatus, Maculiphylus eremophilae, and Monospiniphallus spp.
Fig. 8. Bifidostylus silveirae. Scanning electron micrographs. A in Nineteen new genera and 82 new species of Cremnorrhinina from Australia, including analyses of host relationships and distributions (Insecta: Hemiptera: Miridae: Phylininae: Cremnorrhinini)
Fig. 8. Bifidostylus silveirae. Scanning electron micrographs. A. Dorsofrontal view of head and pronotum. B. Lateral view of head, showing structural details common to most Australian Cremnorrhinina. C. Detail of pronotal setae. D. Thoracic pleuron, showing metathoracic spiracle opening, metathoracic scent-gland auricle, and evaporatory area. E. Posterolateral view of pygophore. F. Frontoventral view of pretarsus. Abbreviations: mttsp, metathoracic spiracle; lp, left paramere; pe, parempodium; phl, phallotheca; pul, pulvillus; rp, right paramere; sgaur, scent gland auricle; sgev, scent gland evaporatory area.
Fig. 60. Myrtophylus calytrix. Scanning electron micrographs. A in Nineteen new genera and 82 new species of Cremnorrhinina from Australia, including analyses of host relationships and distributions (Insecta: Hemiptera: Miridae: Phylininae: Cremnorrhinini)
Fig. 60. Myrtophylus calytrix. Scanning electron micrographs. A. Lateral view of head and pronotum. B. Detail of head and pronotal setae. C. Prothorac showing lower margin of metathoracic spiracle, metathoracic scent-gland auricle, and evaporatory area. D. Frontal view of pretarsus. Abbreviations: mttsp, metathoracic spiracle; pul, pulvillus; sgaur, scent gland auricle; sgev, scent gland evaporatory area.
Figure 7 in Description of a widely distributed but overlooked amphipod species in the European Alps
Figure 7. Habitat preferences of Gammarus alpinus sp. nov. Contour plot of the kernel density estimate of the altidudinal vs. lake surface distribution of all 78 lakes (out of 201 lakes) with reported populations of G. alpinus throughout the Alps. A slight bimodal pattern in both histograms highlights that the species can occur in large, pre-alpine lakes, such as Lake Constance, but is predominantly found in high-elevation, small alpine lakes. Kernel density estimates for the histograms are based on a smoothing bandwidth of 1X (solid line) and 2X (broken line) the SD of the kernel.
Figure 2 in Description of a widely distributed but overlooked amphipod species in the European Alps
Figure 2. Bayesian-inferred phylogenetic time tree of Gammarus alpinus sp. nov. and Gammarus lacustris. Values above branches (two decimal places) indicate likelihood based on 5406 combined trees. For better readability, individuals from Switzerland and Fennoscandia were also collapsed. Values at nodes (one decimal place) indicate the age of the branch in Myr. Branch lengths indicating divergence time (with a relaxed clock model).
Figure 1 in Description of a widely distributed but overlooked amphipod species in the European Alps
Figure 1. Distribution map of Gammarus alpinus sp. nov. Red circles indicate lakes with populations of G. alpinus, while white circles indicate sampled lakes without G. alpinus. The figure summarizes data from the literature and our own sampling. The major alpine drainage areas are given in colour (blue = Rhine/North Sea; orange = Danube/Black Sea; green = Rhone, Po/Mediterranean Sea).
Figure 6 in Description of a widely distributed but overlooked amphipod species in the European Alps
Figure 6. Mouthparts of Gammarus alpinus sp. nov. (♂, 21 mm, Lej da San Murezzan, Switzerland). A, left and right maxilliped; B, mandibular palp, inner face; C, maxilla 2; D, maxilla 1; E, labium/upper lip; F, labrum/ lower lip. Drawings by Vid ̆Svara.
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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.