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FIGURE 2 in Description of one new species of freshwater shrimp of the genus Caridina (Crustacea: Decapoda: Atyidae) from two karst caves of Northern Vietnam
FIGURE 2. Caridina namdat, sp. nov. male, cl 4.5 mm (IEBR-FS 006). A, cephalothorax and cephalic appendages, lateral view; B, antennular peduncle; C, scaphocerite; D, telson; E, distal portion of telson; F, preanal carina; G, uropodal diaeresis; H, mandible; I, maxillula; J, maxilla; K, first maxilliped; L, distal end of palp of first maxilliped; M, second maxilliped; N, third maxilliped. Scale: A = 1 mm; B–D = 0.5 mm; E–J = 0.2 mm.
FIGURE 3. Hatigoria longistylia Tang & Zhang n in Review of the leafhopper genus Hatigoria Distant with one new species (Hemiptera: Cicadellidae: Hylicinae)
FIGURE 3. Hatigoria longistylia Tang & Zhang n. sp., Holotype ♂: A. Habitus, dorsal view; B. Habitus, lateral view; C. Head, dorsal view; D. Face; E. Pygofer, lateral view; F. Pygofer, dorsal view; G. Pygofer, ventral view; H. Connective and style, ventral view; I. Aedeagus, dorsal view; J. Subgenital plate, ventral view; K. Aedeagus, lateral view. Scale bars = 1.0 mm.
FIGURE 1. Hatigoria praeiens Distant, 1908, A–B in Review of the leafhopper genus Hatigoria Distant with one new species (Hemiptera: Cicadellidae: Hylicinae)
FIGURE 1. Hatigoria praeiens Distant, 1908, A–B, Holotype ♀: A. Habitus, dorsal view; B. Head and Pronotum, lateral view; C–L, ♂: C. Face; D. Habitus, dorsal view; E. Habitus, lateral view; F. Pygofer, dorsal view; G. Pygofer, ventral view; H. Pygofer, lateral view; I. Subgenital plate, ventral view; J. Aedeagus, connective and style, dorsal view; K. Aedeagus, connective and style, ventral view; L. Aedeagus, connective and style, lateral view. Scale bars = 1.0 mm.
FIGURES 8–16 in Eurynothrips Bagnall (Thysanoptera, Phlaeothripinae): a rare and long-lost Australian genus, with one new gall-inducing species
FIGURES 8–16. Eurynothrips laheyi sp.n. (8) Female; (9–10) Head and pronotum of large and small females. (11) Antenna. (12) Prosternum. (13) Holotype head ventral surface. (14) Pronotum. (15) Metanotum and pelta. (16) Specimens from Imbil (QDPC Brisbane).
FIGURES 1–7 in Eurynothrips Bagnall (Thysanoptera, Phlaeothripinae): a rare and long-lost Australian genus, with one new gall-inducing species
FIGURES 1–7. Eurynothrips species. Leaf galls on Planchonella pohlmaniana 1–5: (1) Young gall; (2) Galls on terminal leaves; (3) Adults wandering on gall surface; (4–5) Mature galls. (6) Head of E. magnicollis paralectotype, lateral view. (7) Head of E. laheyi paratype, lateral view.
FIGURE 4. Hatigoria praeiens Distant, 1908 in Review of the leafhopper genus Hatigoria Distant with one new species (Hemiptera: Cicadellidae: Hylicinae)
FIGURE 4. Hatigoria praeiens Distant, 1908, Holotype ♀: A. Habitus, ventral view; B. Pygofer, ventral view; C. First valvula; D. Second valvulae; E. Third valvula. Scale bars = 1.0 mm.
FIGURE 2. Hatigoria sauteri Jacobi, 1914, A–B in Review of the leafhopper genus Hatigoria Distant with one new species (Hemiptera: Cicadellidae: Hylicinae)
FIGURE 2. Hatigoria sauteri Jacobi, 1914, A–B, Lectotype ♀: A. Habitus, dorsal view; B. Head and thorax, lateral view; C–L, ♂: C. Face; D. Habitus, dorsal view; E. Habitus, lateral view; F. Head and thorax, dorsal view; G. Pygofer, dorsal view; H. Py- gofer, ventral view; I. Pygofer, lateral view; J. Subgenital plate, ventral view; K. Aedeagus, connective and style, dorsal view; L. Aedeagus, connective and style, lateral view. Scale bars = 1.0 mm.
Figure 8 in Descriptions of one new genus and six new species of Machilidae (Insecta: Archaeognatha) from China: morphological and molecular data
Figure 8. Pedetontinus wudangensis sp. nov. Male (A–I): (A) head, frontal view, (B) the distal chains of flagellum, (C) labium, (D) maxillary palp, (E) fore leg, (F) mid leg, (G) hind leg, (H) urosternite V, (I) urosternite IX with paramere and penis. Female (J–W): (J) head, frontal view, (K) the distal chains of flagellum, (L) labium, (M) maxillary palp, (N) fore leg, (O) mid leg, (P) hind leg, (Q) urosternite V, (R) urosternite VIII with anterior gonapophysis, (S, T) part of gonapophysis VIII, ventral view, (U) urosternite IX with posterior gonapophyses, (V, W) part of gonapophysis IX, ventral view.
Figure 7 in Descriptions of one new genus and six new species of Machilidae (Insecta: Archaeognatha) from China: morphological and molecular data
Figure 7. Pedetontinus taishanensis sp.nov. Male (A–J): (A) head, frontal view, (B) labium, (C) maxillary palp, (D) apical spines of article VII, (E) the distal chains of flagellum, (F) fore leg, (G) mid leg, (H) hind leg, (I) urosternite V, (J) urosternite IX with paramere and penis. Female (K–Y): (K) head, frontal view, (L) labium, (M) maxillary palp, (N) apical spines of article VII, (O) the distal chains of flagellum, (P) fore leg, (Q) mid leg, (R) hind leg, (S) urosternite V, (T) urosternite VII, (U) urosternite VIII with anterior gonapophysis, (V, W) part of gonapophysis VIII, ventral view, (X) urosternite IX with posterior gonapophysis, (Y, Z) part of gonapophysis IX, ventral view.
Figure 4 in Descriptions of one new genus and six new species of Machilidae (Insecta: Archaeognatha) from China: morphological and molecular data
Figure 4. Coreamachilis songi sp. nov. Male (A–K): (A) head, frontal view, (B) scapus of antenna, (C) the distal chains of flagellum, (D) labium, (E) maxillary palp, (F) fore leg, (G) mid leg, (H) hind leg, (I) urosternite V, (J) urosternite VII, (K) urosternite IX with paramere and penis. Female (L–X): (L) head, frontal view, (M) the distal chains of flagellum, (N) labium, (O) maxillary palp, (P) fore leg, (Q) mid leg, (R) hind leg, (S) urosternite V, (T) urosternite VII, (U) urosternite VIII with anterior gonapophyses, (V) part of gonapophysis VIII, ventral view, (W) urosternite IX with posterior gonapophysis, (X) part of gonapophysis IX, ventral view.
Figure 3 in Descriptions of one new genus and six new species of Machilidae (Insecta: Archaeognatha) from China: morphological and molecular data
Figure 3. Songmachilis xinxiangensis sp. nov. Male (A–J): (A) head, frontal view, (B) the distal chains of flagellum, (C) labium, (D) maxillary, (E) fore leg, (F) mid leg, (G) hind leg, (H) urosternite V, (I) urosternite VII, (J) urosternite IX with paramere and penis. Female (K–V): (K) head, frontal view, (L) the distal chains of flagellum, (M) maxillary palp, (N) labium, (O) fore leg, (P) mid leg, (Q) hind leg, (R) urosternite VII, (S) urosternite VIII, with anterior gonapophyses, (T) part of gonapophysis VIII, ventral view, (U) urosternite IX with posterior gonapophysis, (V) part of gonapophysis IX, ventral view.
Figure 5 in Descriptions of one new genus and six new species of Machilidae (Insecta: Archaeognatha) from China: morphological and molecular data
Figure 5. Pedetontinus jiuzhaiensis sp. nov. Male (A–I): (A) head, frontal view, (B) the distal chains of flagellum, (C) labium, (D) maxillary palp, (E) fore leg, (F) mid leg, (G) hind leg, (H) urosternite V, (I) urosternite IX with paramere and penis. Female (J–X): (J) head, frontal view, (K) the distal chains of flagellum, (L) maxillary palp, (M) labium, (N) fore leg, (O) mid leg, (P) hind leg, (Q) urosternite V, (R) urosternite VII, (S) urosternite VIII with anterior gonapophysis, (T, U) part of gonapophysis VIII, ventral view, (V) urosternite IX with posterior gonapophysis, (W, X) part of gonapophysis IX, ventral view.
Figure 2 in Descriptions of one new genus and six new species of Machilidae (Insecta: Archaeognatha) from China: morphological and molecular data
Figure 2. Phylogenetic tree of the relationships among 16 bristletail species based on cytochrome oxidase subunit I (COI) gene sequences. Branch lengths and topology are from the Bayesian analysis. Numbers above branches specify posterior probabilities from Bayesian inference (BI), bootstrap percentages from maximum likelihood (ML, 1000 replicates), maximum parsimony (MP, 1000 replicates) and neighbour joining (NJ, 1000 replicates) analyses.
Figure 6 in Descriptions of one new genus and six new species of Machilidae (Insecta: Archaeognatha) from China: morphological and molecular data
Figure 6. Pedetontinus maijiensis sp. nov. Male (A–J): (A) head, frontal view, (B) the distal chains of flagellum, (C) labium, (D) maxillary palp, (E) fore leg, (F) mid leg, (G) hind leg, (H) urosternite V, (I) urosternite VII, (J) urosternite IX with paramere and penis. Female (K–Y): (K) head, frontal view, (L) the distal chains of flagellum, (M) labium, (N) maxillary palp, (O) fore leg, (P) mid leg, (Q) hind leg, (R) urosternite V, (S) urosternite VII, (T) urosternite VIII with anterior gonapophysis, (U, V) part of gonapophysis VIII, ventral view, (W) urosternite IX with posterior gonapophyses, (X, Y) part of gonapophysis IX, ventral view.
Figure 3 in A survey of Hersiliidae (Arachnida: Araneae) of Iran with description of one new genus and two new species
Figure 3. Female holotype of Hersilia talebii sp. nov. (A) habitus, dorsal; (B) habitus, ventral; (C, D) epigyne, dorsal; (E) Epigyne, ventral. ID, insemination duct; RE, receptacle; MP, median plate; RP, ripple pad; FD, fertilisation duct; LB, lateral border.
Figure 2 in A survey of Hersiliidae (Arachnida: Araneae) of Iran with description of one new genus and two new species
Figure 2. Bastanius kermanensis sp. nov. (A, C) Male palp, ventral; (B) male palp, retrolateral; (D) epigyne, ventral; (E, F) epigyne, dorsal. Em, embolus; Be, base of embolus; Ta, tegular apophysis; Wi, window; Ag, accessory gland; Lr, lateral receptacle; Mr, mesal receptacle.
Figure 5 in A survey of Hersiliidae (Arachnida: Araneae) of Iran with description of one new genus and two new species
Figure 5. Bastanius kermanensis sp. nov. (A) Male palp, ventral; (B) male palp, retrolateral; (C) palp, prolateral. Hersiliola macullulata. (D) Male palp, ventral; (E) male palp, retrolateral.
Figure 1 in A survey of Hersiliidae (Arachnida: Araneae) of Iran with description of one new genus and two new species
Figure 1. Bastanius kermanensis sp. nov. (A) Male habitus dorsal; (B) male habitus, ventral; (C) female habitus, dorsal; (D) female habitus, ventral.
Figure 4 in A survey of Hersiliidae (Arachnida: Araneae) of Iran with description of one new genus and two new species
Figure 4. Male of Hersiliola macullulata. (A) Prosoma, dorsal; (B, C) abdomen, dorsal and ventral; (D) palp, ventral; (E) palp, retrolateral; (F) palp, prolateral.
Figure 9 in The genus Adeonella (Bryozoa, Ascophora) in the Mediterranean, with description of two new living species and rediscovery of a fossil one
Figure 9. Adeonella pozarae sp. nov. Holotype (A, C, E, G, I–M) and Paratype (B, D, F, H): off Lastovo Island (Vrhovine), Adriatic Sea, Recent. (A) The holotype. Scale bar: 500 µm. (B) The paratype. Scale bar: 500 µm. (C) Growing tip from the holotype with developing zooidal walls. Scale bar: 200 µm. (D) Cross-section of the paratype with evident layers of primary and secondary calcification in the frontal walls. Scale bar: 100 µm. (E) A zooid from the holotype. Scale bar: 200 µm. (F) Primary orifice. Scale bar: 100 µm. (G) Primary orifice with the operculum. Scale bar: 100 µm (H) Orifice of a proximal zooid from the paratype being occluded by proceeding calcification. Scale bar: 100 µm. (I) Secondary orifice with paired peristomial avicularia. Scale bar: 100 µm. (L) Secondary orifice with a single peristomial avicularium. Scale bar: 100 µm. (M) Deatail of an avicularium. Scale bar: 50 µm.
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.