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911 results for “new host records”
Figs 14–19 in Neofidia Strother, a new name for Fidia Baly, 1863 and redescription of Fidia kanaraensis (Jacoby, 1895) with a new host record and notes on natural history (Coleoptera, Chrysomelidae, Eumolpinae)
Figs 14–19. Close up of parts of female genitalia of Fidia kanaraensis (Jacoby, 1895) comb. nov. 14. Bursa copulatrix. 15. Ovipositor. 16. Spermatheca. 17. Eighth tergite. 18. Holotype labels. 19. Paratype labels. Abbreviations: Cox = coxite; Par = paraproct; Prg = proctiger; Val = valvifer.
Fig 13 in Neofidia Strother, a new name for Fidia Baly, 1863 and redescription of Fidia kanaraensis (Jacoby, 1895) with a new host record and notes on natural history (Coleoptera, Chrysomelidae, Eumolpinae)
Fig 13. Female genitalia of Fidia kanaraensis (Jacoby, 1895) comb. nov. along with line diagram. Abbreviations: BC = bursa copulatrix; CoG = collateral gland; ET = eighth tergite; MdO = median oviduct; Ovi = ovipositor; SpC = spermathecal capsule; SpD = spermathecal duct; SpG = spermathecal gland; Vg = vagina.
Figs 6–9 in Neofidia Strother, a new name for Fidia Baly, 1863 and redescription of Fidia kanaraensis (Jacoby, 1895) with a new host record and notes on natural history (Coleoptera, Chrysomelidae, Eumolpinae)
Figs 6–9. Male genitalia of Fidia kanaraensis (Jacoby, 1895) comb. nov. 6. Aedeagus, dorsal view. 7. Aedeagus, lateral view. 8. Tergite VIII, sternite VIII & IX. 9. Tegmen.
Figs 1–5 in Neofidia Strother, a new name for Fidia Baly, 1863 and redescription of Fidia kanaraensis (Jacoby, 1895) with a new host record and notes on natural history (Coleoptera, Chrysomelidae, Eumolpinae)
Figs 1–5. Fidia kanaraensis (Jacoby, 1895) comb. nov. 1. Dorsal view of habitus after removing powdery encrustation. 2. Dorsal view of habitus with powdery encrustation. 3. Ventral view of habitus. 4. Lateral view of habitus. 5. Head.
Figs 20–26 in Neofidia Strother, a new name for Fidia Baly, 1863 and redescription of Fidia kanaraensis (Jacoby, 1895) with a new host record and notes on natural history (Coleoptera, Chrysomelidae, Eumolpinae)
Figs 20–26. Biology and ecology of Fidia kanaraensis (Jacoby, 1895) comb. nov. 20. Eggs covered with excreta. 21. Naked eggs. 22. First instar grub, lateral view. 24. First instar grub, ventral view. 23. Damage on mango root. 25. Adult beetle on mango leaves. 26. Damage on cashew leaves.
Figure 3 in Acmaeodera (Coleoptera: Buprestidae): A new species of Acmaeodera Eschscholtz, 1829 from the southwestern United States, with three new synonymies, new state and host records, and a key to species occurring east of the Rocky Mountain states
Figure 3. Acmaeodera conoidea Fall, paralectotype ♂. a) Dorsal view. b) Ventral view. c) Lateral view. d) Broadly arcuate clypeus e) Third stria split near umbone. f) Protarsal claw.
Figure 2. Male genitalia, Acmaeodera tubulus species group. a in Acmaeodera (Coleoptera: Buprestidae): A new species of Acmaeodera Eschscholtz, 1829 from the southwestern United States, with three new synonymies, new state and host records, and a key to species occurring east of the Rocky Mountain states
Figure 2. Male genitalia, Acmaeodera tubulus species group. a) A. natlovei new species. b) A. neoneglecta. c) A. tubulus. d) A. neglecta. e) A. opuntiae.
Figure 1. Acmaeodera natlovei new species. a in Acmaeodera (Coleoptera: Buprestidae): A new species of Acmaeodera Eschscholtz, 1829 from the southwestern United States, with three new synonymies, new state and host records, and a key to species occurring east of the Rocky Mountain states
Figure 1. Acmaeodera natlovei new species. a) Holotype, dorsal view. b) Holotype, ventral view. c) Holotype, lateral view. d) Holotype, clypeus. e) Paratype protarsal claw ♂. f) Paratype protarsal claw ♀.
Figure 4 in New records of the shrimp Periclimenes crinoidalis Chace, 1969 (Decapoda: Palaemonidae) and its crinoid host Nemaster grandis A.H. Clark, 1909 (Echinodermata: Crinoidea) in the Caribbean Sea
Figure 4. Male of Periclimenes crinoidalis (CL 1.58 mm), associated with the crinoid Nemaster cf. grandis, in Chichiriviche de la Costa, Vargas State, Venezuela.
Figure 3 in New records of the shrimp Periclimenes crinoidalis Chace, 1969 (Decapoda: Palaemonidae) and its crinoid host Nemaster grandis A.H. Clark, 1909 (Echinodermata: Crinoidea) in the Caribbean Sea
Figure 3. Ovigerous female of Periclimenes crinoidalis (CL 2.36 mm), associated with the crinoid Nemaster grandis, in Chichiriviche de la Costa, Vargas State, Venezuela.
Figure 2 in New records of the shrimp Periclimenes crinoidalis Chace, 1969 (Decapoda: Palaemonidae) and its crinoid host Nemaster grandis A.H. Clark, 1909 (Echinodermata: Crinoidea) in the Caribbean Sea
Figure 2. Mimicry of the shrimp Periclimenes crinoidalis associated with the crinoid Nemaster cf. grandis, in Chichiriviche de la Costa, Vargas State, Venezuela.
Figure 1 in Contribution to the knowledge of Parichoronyssus bakeri Morales-Malacara and Guerrero, 2007 (Mesostigmata: Macronyssidae): new locality and host-association records with additional molecular data
Figure 1 Light Microscopy images of the female Parichoronyssus bakeri. A – General view of the ventral idiosoma; B – General view of the dorsal idiosome; C – Close up of sternal shield; D – Close up of genital and anal shields; E – Gnathosoma and coxa of the Leg I, with the black arrow pointed out the spine-like projection; F – Close up of the dorsal shield. Scales: A and B 50µm, C-F 20µm.
Fig. 4 in New record of endoparasitic Pseudempleurosoma haywardi (Monogenea: Dactylogyridae) in sillaginid fishes from Thailand, with updates on host range, zoogeography, and morphological variation
Fig. 4. Schematic drawings of different shapes of MCO of the current Pseudempleurosoma haywardi specimens. Scale bar = 10 µm.
Fig. 1 in New record of endoparasitic Pseudempleurosoma haywardi (Monogenea: Dactylogyridae) in sillaginid fishes from Thailand, with updates on host range, zoogeography, and morphological variation
Fig. 1. Schematic measurement characteristics of the organs of Pseudempleurosoma haywardi. A, MCO with Accessory piece; B, egg; C, muscular genital atrium; D, ovary; E, testis; F, dorsal anchors; G, dorsal bar; H, ventral anchor with attached ventral bar; I, detached ventral bar; J, marginal hook. Abbreviations used: APL: accessory piece length, AVBL: attached ventral bar length, DAL: dorsal anchor length, DBL: dorsal bar length, DBW: dorsal bar width, DVBL: detached ventral bar length, EL: egg length, EW: egg width, MAL: muscular genital atrium length, MAW: muscular genital atrium width, MCO: male copulatory organ, MCOL: male copulatory organ length, MHL: marginal hook length, OL: ovary length, OW: ovary width, TL: testis length, TW: testis width, VAL: ventral anchor length.
Fig. 3 in New record of endoparasitic Pseudempleurosoma haywardi (Monogenea: Dactylogyridae) in sillaginid fishes from Thailand, with updates on host range, zoogeography, and morphological variation
Fig. 3. Schematic drawings of Pseudempleurosoma haywardi. A, whole body; B, MCO; C, ventral anchor with attached ventral bar; D, marginal hooks; E, dorsal anchor; F, egg; G, detached ventral bar; H, dorsal bar. Scale bars: A = 500 µm; B–H = 10 µm.
Fig. 2 in New record of endoparasitic Pseudempleurosoma haywardi (Monogenea: Dactylogyridae) in sillaginid fishes from Thailand, with updates on host range, zoogeography, and morphological variation
Fig. 2. General morphology of Pseudempleurosoma haywardi under phase-contrast microscope (A, B) and light microscope (C–G). A, whole body; B, opisthaptor part; C, opisthaptor with anchors, bar and marginal hooks; D, egg with MCO; E, egg; F, funnel-shaped of MCO with accessory pieces; G, cup-shaped MCO with accessory pieces. Abbreviations used: ASP: accessory piece, AVB: attached ventral bar, DA: dorsal anchor, DB: dorsal bar, DVB: detached ventral bar, E: egg, ES: eye spot, HG: head glands, MCO: male copulatory organ, MH: marginal hook, OP: opisthaptor, P: pharynx, VA: ventral anchor, VF: vitelline follicles. Scale bars: A = 100 µm; B–G = 20 µm.
Fig. 6 in New record of endoparasitic Pseudempleurosoma haywardi (Monogenea: Dactylogyridae) in sillaginid fishes from Thailand, with updates on host range, zoogeography, and morphological variation
Fig. 6. Phylogenetic tree of partial 28S rRNA of monogeneans based on Maximum Likelihood methods. Two major Clades A and B are distinguished. External branches with and without round tips represent members of Dactylogyridae and Ancyrocephalidae, respectively (when classified following the NCBI database), except for the outgroup. Bootstrap support values are indicated at each node. Monogenean sequence data from this study are shown in bold. Scale bar represents the number of nucleotide substitutions per site.
Fig. 5 in New record of endoparasitic Pseudempleurosoma haywardi (Monogenea: Dactylogyridae) in sillaginid fishes from Thailand, with updates on host range, zoogeography, and morphological variation
Fig. 5. General morphology of the infected sillaginid fishes, (A) Sillago aeolus and (B) Sillago sihama. Scale bars = 1 cm.
Figure 1 in Identification key for chewing lice (Phthiraptera: Amblycera, Ischnocera) infesting the Indian Peafowl (Pavo cristatus) with one new country record and new host record for Saudi Arabia
Figure 1. Female Amyrsidea minuta. Normal image on the left and modified image on the right. The modified photo shows the effectiveness of the editing technique, showing small structures and textures of the lice more clearly than the normal one.
Figure 5. a in Identification key for chewing lice (Phthiraptera: Amblycera, Ischnocera) infesting the Indian Peafowl (Pavo cristatus) with one new country record and new host record for Saudi Arabia
Figure 5. a) Mesosternum of Menacanthus kaddoui; b) mesosternum of Menacanthus stramineus; c) hind leg of Colpocephalum spp.; d) dorsal view of VIII and IX segment of Colpocephalum tausi; e) male antenna of Lipeurus pavo; f) male antenna of Goniodes meinertzhageni; g) male antenna of Goniocotes mayuri; h) male antenna of Goniocotes parviceps.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.