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453 results for “fireflies”
Fig. 5 in A new genus for two species of Japanese fireflies having aquatic larvae (Coleoptera, Lampyridae) and a definition of Luciola s. str.
Fig. 5. Features of male genitalia. A‒H. Nipponoluciola cruciata (Motschulsky, 1854) gen. et comb. nov. I‒Q. Nipponoluciola owadai (Satô & Kimura, 1994) gen. et comb. nov. A–B, E, I‒K. Aedeagal sheath: dorsal (A, lower portion of E shows tergite alone; I), ventral (B, upper portion of E; J), and left lateral (K) views. C–D, F–H, L‒Q. Aedeagus: ventral (C, G, O, P), dorsal (D, H, M, N), and right lateral (F, L, Q) views. Images by L. Ballantyne (A‒D, I–M, O) and I. Kawashima (E‒H, N, P–Q).
Fig. 8. Dorsal habitus larvae. A in A new genus for two species of Japanese fireflies having aquatic larvae (Coleoptera, Lampyridae) and a definition of Luciola s. str.
Fig. 8. Dorsal habitus larvae. A. Nipponoluciola cruciata (Motschulsky, 1854) gen. et comb. nov. B. Nipponoluciola owadai (Satô & Kimura, 1994) gen. et comb. nov. (Ohba et al. 1994). C. Head, dorsal view of A. Images by I. Kawashima (A–B) and L. Ballantyne (C). Scale bar = 5 mm.
Fig. 4. Generic features. A–D in A new genus for two species of Japanese fireflies having aquatic larvae (Coleoptera, Lampyridae) and a definition of Luciola s. str.
Fig. 4. Generic features. A–D. Aquatica Fu et al. 2010, specimen is Aquatica lateralis (Motschulsky, 1860), ♂, Tokyo (HZNHM). E–H. Missimia Ballantyne, 2009, specimen is Missimia flavida Ballantyne, 2009, holotype, ♂ (BPBM). I–N. Sclerotia Ballantyne, 2016, specimen is Luciola seriata Olivier, 1891, holotype, ♂ (MCSN). A, E, I. Habitus, dorsal view. B, F, J. Terminal abdomen with ventrites 3‒7 visible, ventral view. D, H, K. Aedeagus, ventral (K) and dorsal (D, H) views. C, G. Aedeagal sheath, ventral (C) and dorsal (G) view. L–N. Aedeagal sheath, tergite 8 and lateral sclerites. L, N. Detail right (L) and left (N) sclerite. M. Aedeagal sheath, sclerites and T8, aedeagal sheath to top of page,T8 to foot of page with left and right sclerites (arrowed), ventral view. All images by L. Ballantyne.
Fig. 7. Female morphology. A, C-J in A new genus for two species of Japanese fireflies having aquatic larvae (Coleoptera, Lampyridae) and a definition of Luciola s. str.
Fig. 7. Female morphology. A, C-J. Nipponoluciola cruciata (Motschulsky, 1854) gen. et comb. nov. ♀ (Doubaru, Japan; ANIC). B. Nipponoluciola owadai (Satô & Kimura, 1994) gen. et comb. nov. A–B. Habitus, dorsal view. C–D. Abdomen, dorsal (C) and ventral (D) view. E–G. Female reproductive tract. E. With ovipositor to right and SDG to left. F. Area of bursa. G. Spermatheca to left. H. MO plate posterior end to right. I. V8 ventral surface. J. Ovipositor. Abbreviations: MO = median oviduct; MOP = median oviduct plate; SDG = spermatophore digesting gland; SP = spermatheca; ST = styli; V = valvifers. Images by I. Kawashima (A–B) and by L. Ballantyne (C–J).
Fig. 12 in A new genus for two species of Japanese fireflies having aquatic larvae (Coleoptera, Lampyridae) and a definition of Luciola s. str.
Fig. 12. Distribution of aedeagal patterns of Nipponoluciola cruciata (Motschulsky, 1854) gen. et comb. nov. in the Japanese islands; aedeagus right lateral view. Images by I. Kawashima. Map by W.F.A. Jusoh (Map of Japan using a base map obtained from Wikimedia Commons - Maximilian Dörrbecker and Connormah, CC BY-SA 3.0).A. Akita. B. Fukushima. C. Ibaraki. D. Chiba. E. Kanagawa. F. Niigata. G. Nagano. H. Ishikawa. I. Shizuoka. J. Hyogo. K. Oki Islands. L. Kochi. M. Nagasaki. N. Miyazaki. O. Tsushima Island. P. Yakushima Island.
Fig. 11 in A new genus for two species of Japanese fireflies having aquatic larvae (Coleoptera, Lampyridae) and a definition of Luciola s. str.
Fig. 11. Distribution of aedeagal patterns of Nipponoluciola cruciata (Motschulsky, 1854) gen. et comb. nov. in the Japanese islands; aedeagus ventral view. Images by I. Kawashima. Map by W.F.A. Jusoh (Map of Japan using base maps obtained from Wikimedia Commons - Maximilian Dörrbecker and Connormah, CC BY-SA 3.0). A. Akita. B. Fukushima. C. Ibaraki. D. Chiba. E. Kanagawa. F. Niigata. G. Nagano. H. Ishikawa. I. Shizuoka. J. Hyogo. K. Oki Islands. L. Kochi. M. Nagasaki. N. Miyazaki. O. Tsushima Island. P. Yakushima Island.
Figure 1 in On the firefly (Coleoptera: Lampyridae) species of Carl Linnaeus
Figure 1. Comparison of Linnaeus' descriptions. A) Description of Cantharis lampyris Linnaeus, 1758. B) Description of Lampyris hespera Linnaeus, 1767 new synonym.
Crowdsourced dataset of firefly trajectories obtained by automated stereo calibration of 360-degree cameras
<p>Advancements in animal tracking techniques, spanning from migrating mammals to swarming insects, have resulted in remarkable progress in the fields of behavioral ecology and conservation science. Recently, we have devised a method for tracking luminous fireflies in their natural habitat using stereoscopic pairs of 360-degree cameras. This method offers affordability, versatility, and ease of setup; however, the process of camera calibration has remained tedious and time-consuming. Now, we have introduced an enhanced algorithm that achieves spatial and temporal stereo calibration directly from the data, eliminating the need for manual procedures both in the field and during video processing. The algorithm relies on cross-correlation of flashing patterns and numerical estimation of camera pose. Utilizing this improved protocol and processing software, we have compiled an extensive dataset comprising over 100 reconstructed firefly swarms of various species. This data was gathered throughout the United States by numerous contributors following a straightforward protocol. The dataset holds significant potential for advancing our comprehension of firefly collective behavior, facilitating population monitoring, and expanding citizen science initiatives.</p>
Collective synchrony of mating signals modulated by ecological cues and social signals in bioluminescent sea fireflies
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Data from: Robustness of divergence time estimation despite gene tree error: A case study of fireflies (Coleoptera: Lampyridae)
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Crowdsourced dataset of firefly trajectories obtained by automated stereo calibration of 360-degree cameras
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Figure 14 in Morphology and life cycle of a new species of Psilocladus Blanchard, 1846 (Coleoptera, Lampyridae, Psilocladinae), the first known bromeliad-inhabiting firefly
Figure 14. Psilocladus costae sp. nov. Immature bioluminescence. (A) Larva (dorsal); (B) pupa (ventral). Length: larva = 18 mm; pupa = 7 mm.
Figure 13 in Morphology and life cycle of a new species of Psilocladus Blanchard, 1846 (Coleoptera, Lampyridae, Psilocladinae), the first known bromeliad-inhabiting firefly
Figure 13. Psilocladus costae sp. nov. Pupal habitus. (A) Dorsal; (B) lateral; (C) ventral. Scale bar: = 2 mm.
Figure 12 in Morphology and life cycle of a new species of Psilocladus Blanchard, 1846 (Coleoptera, Lampyridae, Psilocladinae), the first known bromeliad-inhabiting firefly
Figure 12. Psilocladus costae sp. nov. Larval head morphology. (A) Head, dorsal; (B) maxillolabial complex, ventral; (C) epipharynx; (D) hypopharynx; (E) left antenna (ventral, dorsal); (F) mandible (ventral, dorsal). Scale bars: A, B = 1 mm; C, D = 0.25 mm; E, F = 0.5 mm.
Figure 11 in Morphology and life cycle of a new species of Psilocladus Blanchard, 1846 (Coleoptera, Lampyridae, Psilocladinae), the first known bromeliad-inhabiting firefly
Figure 11. Psilocladus costae sp. nov. Larval morphology. (A-C) Head (dorsal, lateral, ventral); (D) right anterior, middle and posterior legs (from top to bottom, ventral); (E) left laterotergites VI-VII; (F) abdominal terga VI-IX. Scale bars: A-C, E, F = 1 mm; D = 2 mm.
Figure 10 in Morphology and life cycle of a new species of Psilocladus Blanchard, 1846 (Coleoptera, Lampyridae, Psilocladinae), the first known bromeliad-inhabiting firefly
Figure 10. Psilocladus costae sp. nov. Mature larval habitus. (A) Dorsal; (B) lateral; (C) ventral. Scale bar: = 2 mm.
Figure 7 in Morphology and life cycle of a new species of Psilocladus Blanchard, 1846 (Coleoptera, Lampyridae, Psilocladinae), the first known bromeliad-inhabiting firefly
Figure 7. Psilocladus costae sp. nov.Terminal segments and aedeagus of male. (A) SternumVIII; (B) pygidium; (C) syntergite; (D) sternum IX; (E-G) aedeagus (dorsal, lateral and ventral). Scale bar: = 1 mm.
Figure 9 in Morphology and life cycle of a new species of Psilocladus Blanchard, 1846 (Coleoptera, Lampyridae, Psilocladinae), the first known bromeliad-inhabiting firefly
Figure 9. Psilocladus costae sp. nov. Adult female morphology. (A-E) Head; (A) dorsal; (B) ventral; (C) frontal; (D) occipital; (E) lateral; (F) left antenna (dorsal); (G) sternum VIII; (H) pygidium; (I, J) ovipositor (dorsal, ventral), arrow indicates stylus. Scale bars: A-E = 1 mm; F-I = 2 mm.
Figure 5 in Morphology and life cycle of a new species of Psilocladus Blanchard, 1846 (Coleoptera, Lampyridae, Psilocladinae), the first known bromeliad-inhabiting firefly
Figure 5. Psilocladus costae sp. nov. Thorax morphology of adult male. (A-E) Prothorax: (A) dorsal; (B) ventral; (C) frontal; (D) posterior; (E) lateral; (F-I) pterothorax, (F) dorsal; (G) lateral; (H) dorsoventral. Scale bar: = 2 mm.
Figure 4 in Morphology and life cycle of a new species of Psilocladus Blanchard, 1846 (Coleoptera, Lampyridae, Psilocladinae), the first known bromeliad-inhabiting firefly
Figure 4. Psilocladus costae sp. nov. Head morphology of adult male. (A-F) Head; (A) dorsal; (B) ventral; (C) lateral; (D) frontal; (E) occipital; (F) posterior; (G) left antenna (dorsal). Scale bar: = 1 mm.
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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.