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7,959 results for “sp. n.”
Figures 15–22 in A new monotypic genus and species from China Langxie feti gen et sp. n. (Scorpiones: Buthidae)
Figures 15–22: Langxie feti gen. et sp. n., metasoma and telson under UV light. Figures 15–18. Male holotype, metasoma and telson lateral (15), dorsal (16), and ventral (17) and telson lateral (18). Figures 19–22. Female paratype, metasoma and telson lateral (19), dorsal (20), and ventral (21) and telson lateral (22).
Figures 47–54 in A new monotypic genus and species from China Langxie feti gen et sp. n. (Scorpiones: Buthidae)
Figures 47–54: Langxie feti gen. et sp. n., right legs I–IV of male holotype (47–50) and female paratype (51–54), retrolateral aspect, under UV light.
Figures 5–6 in A new monotypic genus and species from China Langxie feti gen et sp. n. (Scorpiones: Buthidae)
Figures 5–6. Langxie feti gen. et sp. n., carapace of female paratype (5) and male holotype (6) under UV light.
Figures 9–12 in A new monotypic genus and species from China Langxie feti gen et sp. n. (Scorpiones: Buthidae)
Figures 9–12: Langxie feti gen. et sp. n., coxal and sternopectinal regions (9, 11) and pectines in dorsal aspect (10, 12) under UV light (figures of left and right pectines in dorsal aspect mirrored to directly match the ones in ventral aspect in their above figures). Figures 9–10. Male holotype. Figures 11–12. Female paratype.
Figures 27–28 in A new monotypic genus and species from China Langxie feti gen et sp. n. (Scorpiones: Buthidae)
Figures 27–28: Langxie feti gen. et sp. n., pedipalp movable (27a–27b) and fixed (28a–28b) fingers under UV light. Figures 27a–28a. Male holotype. Figures 27b–28b. Female paratype.
Figures 13–14 in A new monotypic genus and species from China Langxie feti gen et sp. n. (Scorpiones: Buthidae)
Figures 13–14: Langxie feti gen. et sp. n., sternites under UV light. Figure 13. Male holotype. Figure 14. Female paratype.
Figures 7–8 in A new monotypic genus and species from China Langxie feti gen et sp. n. (Scorpiones: Buthidae)
Figures 7–8. Langxie feti gen. et sp. n., tergites of female paratype (7) and male holotype (8) and under UV light.
Figures 1–4 in A new monotypic genus and species from China Langxie feti gen et sp. n. (Scorpiones: Buthidae)
Figures 1–4: Langxie feti gen. et sp. n., habitus under white light. Figures 1–2. Male holotype in dorsal (1) and ventral (2) views. Figures 3–4. Female paratype in dorsal (3) and ventral (4) views. Scale bar = 10 mm.
Figures 23–26 in A new monotypic genus and species from China Langxie feti gen et sp. n. (Scorpiones: Buthidae)
Figures 23–26: Langxie feti gen. et sp. n., chelicera in dorsal (23, 25) and ventral (24, 26) views under UV light. Figures 23–24. Male holotype. Figures 25–26(change). Female paratype.
Figures 29–46 in A new monotypic genus and species from China Langxie feti gen et sp. n. (Scorpiones: Buthidae)
Figures 29–46. Langxie feti gen. et sp. n., pedipalp segments of male holotype (29–37) and female paratype (38–46) under UV light. Chela, dorsal (29, 38), external (30, 39) and ventral (31, 40) views. Patella, dorsal (32, 41), external (33, 42) and ventral (34, 43) views. Femur and trochanter, dorsal (35, 44), external (36, 45) and ventral (37, 46) views. The trichobothrial pattern is indicate in Figures 30–33, 35, 39–42, 44 (red circles).
Pm". 3. Bulundiru nmlrluvicu, n. sp .. fl-oöuuıü mul ııexıaroım; 13 -- cßmımep ııpokopnyca rımııeßo1a, B-¬ aanunñ xoneu Tema camua ı in New species of plant nematodes of the order Dorylaimida, found in Moldavia and other areas of the USSR
Pm". 3. Bulundiru nmlrluvicu, n. sp .. fl-oöuuıü mul ııexıaroım; 13 -- cßmımep ııpokopnyca rımııeßo1a, B-¬ aanunñ xoneu Tema camua ı
Fig. 1 in Cintaromorpha gen. n. and C. dacatrai sp. n.: a new genus and species of Panagaeini from Pakistan (Coleoptera: Carabidae: Panagaeinae)
Fig. 1 Cintaromorpha dacatrai sp. nov., HT (male): a. dorsal habitus; b. ventral habitus; c. right metepisternum; d. head, ventral view, detail of mentum, glossae and paraglossae; e. aedeagus, lateral view; f. aedeagus, dorsal view to apex
Fig. 3 in Trechisibus apukhapiensis sp. n. (Coleoptera: Carabidae, Trechinae) from southeastern Andean mountains of Peru
Fig. 3. Location of the Trechisibus species (= T. apukhapiensis, A= T. bohorquezae, B=T. cuzcoensis, C=T. gigas, D=T. nicki, E=T. theresiae, F=T. franzi, G=T. schmidti, H=T. laresensis, I=T. veneroi, J=T. orophilus, K=T. peruvianus, L= T. ukupachensis, M=T. wardi, N= T. pygmaeus).
Fig. 3 in Trypanosoma madeirae sp. n.: A species of the clade T. cruzi associated with the neotropical common vampire bat Desmodus rotundus
Fig. 3. Phylogenetic positioning of T. rotundus in the clade T. cruzi. ML phylogenetic analysis based on the concatenated sequences of V7V8 SSU rRNA and gGAPDH genes (1.690 characters, –Ln = 8768.346166) from ten isolates of T. rotundus, other 29 bat trypanosomes, and 21 trypanosomes from other mammals. T. lewisi was used as outgroup. The numbers at the nodes correspond respectively to P, ML (500 replicates) and BI support values.
Fig. 2 in Trypanosoma madeirae sp. n.: A species of the clade T. cruzi associated with the neotropical common vampire bat Desmodus rotundus
Fig. 2. Barcoding (V7-V8 SSU rRNA sequences) of T. rotundus from cultures and bat blood samples, and its related species of the clade T. cruzi. Phylogenetic tree inferred by Parsimony using 93 (∼800 bp) of V7-V8 SSU rRNA sequences. The node numbers are bootstrap values derived from 500 replicates.
Fig. 1 in Trypanosoma madeirae sp. n.: A species of the clade T. cruzi associated with the neotropical common vampire bat Desmodus rotundus
Fig. 1. Geographical origin of Trypanosoma rotundus n. sp. isolates obtained by hemoculturing and archived blood samples from Desmodus rotundus captured in the following Brazilian states: PA, Pará; MG, Minas Gerais; ES, Espírito Santo; RJ, Rio de Janeiro; SP, São Paulo and SC, Santa Catarina.
Fig. 4 in Trypanosoma madeirae sp. n.: A species of the clade T. cruzi associated with the neotropical common vampire bat Desmodus rotundus
Fig. 4. Photomicrographs illustrative of the morphological diversity of culture forms of T. madeirae (isolate M3-209). (a) rosetes of epimastigotes, (b-d) flagellates resembling promastigotes forms, (d-h) epimastigotes (7 days), (i-k) large epimastigote forms under division, (l-m), large trypomastigotes, and (n) slender trypomastigotes (10 days). Giemsa stained. 1000x. K, kinetoplast, N, nucleus, F, flagellum. The scale bar indicates 10 μm.
Fig. 6 in An overview of the Dactylosomatidae (Apicomplexa: Adeleorina: Dactylosomatidae), with the description of Dactylosoma kermiti n. sp. parasitising Ptychadena anchietae and Sclerophrys gutturalis from South Africa
Fig. 6. (A–K). Possible development of Dactylosoma kermiti n. sp. in the gut or haemocoel from the mosquitoes Uranotaenia (Pseudoficalbia) mashonaensis and U. (Pfc.) montana, from infected Sclerophrys gutturalis. (A) Intracellular meront. (B) Intra- and extracellular meront. (C–D) Merging of gametes. (E) Ookinete. (F) Immature oocyst. (G–I) Free sporozoites. (J) Probable meront producing immature merozoites. (K) Probable meront, producing long and slender mature merozoites. Vacuoles – arrow (A–B); Nucleus – arrow (D–K); Condensed chromatin – arrowhead (B, D–K). Scale bars 10 μm.
Fig. 5 in An overview of the Dactylosomatidae (Apicomplexa: Adeleorina: Dactylosomatidae), with the description of Dactylosoma kermiti n. sp. parasitising Ptychadena anchietae and Sclerophrys gutturalis from South Africa
Fig. 5. (A-D). dipterans observed feeding on Ptychadena anchietae and Sclerophrys gutturalis in situ.(A–B). African phlebotomine sand flies (arrows) Sergentomyia sp. feeding on Ptychadena anchietae in situ. (C–D) Mosquitoes (arrows), Uranotaenia (Pseudoficalbia) mashonaensis and U. (Pfc.) montana feeding on Sclerophrys gutturalis in situ.
Fig. 4 in An overview of the Dactylosomatidae (Apicomplexa: Adeleorina: Dactylosomatidae), with the description of Dactylosoma kermiti n. sp. parasitising Ptychadena anchietae and Sclerophrys gutturalis from South Africa
Fig. 4. Consensus phylogram of haemogregarines based on 18S rDNA sequences. Tree topologies for Bayesian inference (BI) and Maximum likelihood (ML) analyses were similar (represented on the ML tree), showing the phylogenetic relationships for D. kermiti n. sp. and Dactylosoma sp. ex Pel. lessonae (represented in bold), compared to other species of Haemogregarina, Hepatozoon, Karyolysus, Hemolivia, and Adelina and Klossia as outgroup. Clades that neither produced 0.80 posterior probability (BI) or 70 bootstrap (ML) nodal support values were omitted. The scale bar represents 0.02 nucleotide substitutions per site. The host, geographical distribution (according to the zoogeographical realms), and if known the vector and life history cycle are also provided for the different sequences using symbols and pictograms. Asterisks (*) indicate the proposed life history strategy of D. kermiti n. sp. based on data from the current study.
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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.