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FIGURE 38 in Taxonomic revision of Paraphasma Redtenbacher, 1906 (Phasmatodea, Pseudophasmatidae) based on phallic and external morphology
FIGURE 38. Paraphasma spinicauda Chiquetto-Machado sp. nov., female, paratype (NHM 012502931). A–C. Habitus, dorsal (A), lateral (B) and ventral (C) views. D. Anterior region of the body, dorsolateral view. E. Labels. F–H. Terminalia, dorsal (F), lateral (G) and ventral (H) views. Abbreviations: Ce, cerci; PO, praeopercular organ; SP, subgenital plate; T8, T9, T10, tergites VIII, IX and X. Scale bars = 10 mm, unless otherwise indicated.
FIGURE 3. Paraphasma conspersum Redtenbacher, 1906, male terminalia. A–D in Taxonomic revision of Paraphasma Redtenbacher, 1906 (Phasmatodea, Pseudophasmatidae) based on phallic and external morphology
FIGURE 3. Paraphasma conspersum Redtenbacher, 1906, male terminalia. A–D. Terminalia in dorsal (A), lateral (B), ventral (C) and oblique caudal (D) views. E. Drawing of the vomer. Abbreviations: Ce, cerci; S8, sternite VIII; SPa, anterior region of the subgenital plate; SPp, posterior region of the subgenital plate; T8, T9, T10, tergites VIII, IX and X; TP, thorn pad; Vo, vomer. Arrows = expansion of the posterolateral margin of the subgenital plate. Scale bars = 1 mm.
FIGURE 4. Paraphasma conspersum Redtenbacher, 1906 in Taxonomic revision of Paraphasma Redtenbacher, 1906 (Phasmatodea, Pseudophasmatidae) based on phallic and external morphology
FIGURE 4. Paraphasma conspersum Redtenbacher, 1906, illustrations of the phallic organ. A. Dorsal view. B. Detail of the sclerite of the ventral lobe in dorsal view. C. Caudal view. D. Left view. E. Right view. Abbreviations: ap, apical protuberance of the sclerite of the ventral lobe; b, base; dl, dorsal lobe; dp, distal process of the dorsal sclerite; lp, left basal protuberance of the sclerite of the ventral lobe; rbp, right basal pouch; vl, ventral lobe. Colors: light gray, membranous regions; red, dorsal sclerite; green, sclerite of the ventral lobe; blue, base apodemes. * = left ramification of the dorsal lobe. In D and E the final portion of the ejaculatory duct is represented by transparency with dotted lines. Images A, B, D and E adapted from Chiquetto-Machado & Cancello (2021: fig. 2).
FIGURE 1 in Taxonomic revision of Paraphasma Redtenbacher, 1906 (Phasmatodea, Pseudophasmatidae) based on phallic and external morphology
FIGURE 1. Distribution map of Paraphasma. Circles indicate records based on material examined; triangles indicate records from the literature (Stoll 1787; Serville 1839; Chopard 1911; Conle et al. 2011; Jourdan et al. 2014); stars indicate records of undetermined Paraphasma species based on Rehn (1906) and Piza (1939) (although these authors identified the specimens, the identifications are doubtful or insufficient).
FIGURE 2. Paraphasma conspersum Redtenbacher, 1906, male. A–D. Specimen MPEG 19000299 in Taxonomic revision of Paraphasma Redtenbacher, 1906 (Phasmatodea, Pseudophasmatidae) based on phallic and external morphology
FIGURE 2. Paraphasma conspersum Redtenbacher, 1906, male. A–D. Specimen MPEG 19000299, habitus in dorsal (A), lateral (B) and ventral (C) views, and anterior region of the body in dorsolateral view (D). E. Paralectotype (MNB), dorsolateral habitus (provided by Oskar Conle). Scale bars = 10 mm.
Subspecies and Distribution. M.a.auriculusBR.H.Baker&Stains,1955-EsideofSierraMadreOrientalfromNuevoLeonintoTamaulipasandVeracruz(Mexico). M. a. apache Hoffmeister & Krutzsch, 1955 — from the mountains of SE Arizona and SW New Mexico (USA) S to Jalisco (Mexico); also in N Coahuila (Mexico). There is a record from Guatemala, but geographic discontinuity and absence of new records in almost 40 years indicates need for taxonomic revision ofthis specimen. in Vespertilionidae
Subspecies and Distribution. M.a.auriculusBR.H.Baker&Stains,1955-EsideofSierraMadreOrientalfromNuevoLeonintoTamaulipasandVeracruz(Mexico). M. a. apache Hoffmeister & Krutzsch, 1955 — from the mountains of SE Arizona and SW New Mexico (USA) S to Jalisco (Mexico); also in N Coahuila (Mexico). There is a record from Guatemala, but geographic discontinuity and absence of new records in almost 40 years indicates need for taxonomic revision ofthis specimen.
A taxonomic revision of the Lathberry Clade of Eugenia (Myrtaceae)
<p>The Lathberry Clade includes seven species of Eugenia sect. Umbellatae (Myrtaceae) distributed from Puerto Rico through the Lesser Antilles. Members of the Lathberry Clade are trees and shrubs distinguished from other Antillean species by a combination of dull twigs, glabrous leaves with a raised midvein, glomerate or fasciculate inflorescences predominantly borne below the leaves on old wood, closely spaced and ascending inflorescence bracts, spheroidal fruits turning red or purple at maturity, the calyx lobes erect or spreading and often torn away, and a unique, large deletion in the plastid psbA-trnH intergenic spacer region. We examined the morphology, leaf venation, and seed coat anatomy of the Lathberry Clade and constructed a phylogeny using non-coding nuclear genetic regions. The taxonomic treatment includes a key to the species, distribution maps, and extinction risk assessments. We recognize Eugenia sintenisii from Puerto Rico and E. cordata var. caribaea (nom. nov.) from the Lesser Antilles in place of E. cordata var. sintenisii and synonymize E. earhartii with E. stirpiflora . Six lectotypes are designated.</p>
FIGURES 11–19 in The strongly dimorphic bark beetle genus Pseudomicracis (Coleoptera, Scolytinae) in Madagascar-an integrated taxonomic revision
FIGURES 11–19. Dorsal, lateral and front view of Pseudomicracis madagascariensis male allotype (11, 14, 17) and female from Marojejy (12, 15, 18); Pseudomicracis difficilis female (13, 16, 19).
FIGURES 45–53 in The strongly dimorphic bark beetle genus Pseudomicracis (Coleoptera, Scolytinae) in Madagascar-an integrated taxonomic revision
FIGURES 45–53. Dorsal, lateral and front view of Pseudomicracis tomicoides female allotype (45, 48, 51); Pseudomicracis dispar female (46, 49, 52); Pseudomicracis pennata female allotype (47, 50, 53).
FIGURES 36–44 in The strongly dimorphic bark beetle genus Pseudomicracis (Coleoptera, Scolytinae) in Madagascar-an integrated taxonomic revision
FIGURES 36–44. Dorsal, lateral and front view of Pseudomicracis tomicoides male holotype (36, 39, 43); Pseudomicracis dispar male (37, 40, 43); Pseudomicracis pennata male holotype (38, 41, 44).
FIGURE 1 in The strongly dimorphic bark beetle genus Pseudomicracis (Coleoptera, Scolytinae) in Madagascar-an integrated taxonomic revision
FIGURE 1. Maximum likelihood tree topology based on nucleotides from five gene fragments. Bootstrap node support above nodes. Parsimony bootsrap support below (if different).
FIGURE 5 in Taxonomic revision of critical taxa of Elwendia (Umbelliferae-Apioideae) from Tajikistan and neighbouring countries, with descriptions of three new species from the Pamir-Alay and distributional novelties
FIGURE 5. Schematic transects of mericarps. A, Elwendia darwasica. B, Elwendia schistosa. C, Elwendia varsobica. D, Elwendia lindbergii. E, Elwendia kuhitangi. F, Elwendia salsa. 1. Exocarp; 2. Vallecular vittae; 3. Vascular bundle; 4. Mesocarp, non-lignified parenchyma cells; 5. Endosperm; 6. Rib secretory ducts; 7. Commissure. Scale bar: 1 mm.
FIGURE 4 in Taxonomic revision of critical taxa of Elwendia (Umbelliferae-Apioideae) from Tajikistan and neighbouring countries, with descriptions of three new species from the Pamir-Alay and distributional novelties
FIGURE 4. General views of mericarps. A, Elwendia darwasica. B, Elwendia schistosa. C, Elwendia varsobica. D, Elwendia kuhitangi. E, Elwendia salsa. Scale bar: 1 mm.
FIGURE 2 in Taxonomic revision of critical taxa of Elwendia (Umbelliferae-Apioideae) from Tajikistan and neighbouring countries, with descriptions of three new species from the Pamir-Alay and distributional novelties
FIGURE 2. Elwendia schistosa, holotype (MW barcode MW0595752). Courtesy of the National Depository Bank of Live Systems, Moscow State University.
FIGURE 8 in Taxonomic revision of critical taxa of Elwendia (Umbelliferae-Apioideae) from Tajikistan and neighbouring countries, with descriptions of three new species from the Pamir-Alay and distributional novelties
FIGURE 8. Bayesian tree obtained from the analysis of 56 nuclear ribosomal ITS and ETS sequences. Branch lengths are proportional to the number of the expected nucleotide substitutions. Bayesian posterior probabilities are indicated above nodes. New species are shown in bold.
Figure 4 in A taxonomic revision of the globulus species group of Dichotomius Hope, 1838 (Coleoptera: Scarabaeidae: Scarabaeinae)
Figure 4. Tegmen, dorsal and ventral views, respectively. (a,b) Dichotomius benesi; (c,d) D. berthalutzae sp. nov.; (e,f) D. femoratus; (g,h) D. fortepunctatus; (i,j) D. gamboaensis. Scale bar: 500 µm
Figure 5 in A taxonomic revision of the globulus species group of Dichotomius Hope, 1838 (Coleoptera: Scarabaeidae: Scarabaeinae)
Figure 5. Endophallites. (a) Dichotomius benesi, endophallus with endophallites, dorsal view. Medial endophallite: (b) D. benesi; (c) D. berthalutzae sp. nov.; (d,e) D. femoratus; (f) D. fortepunctatus; (g) D. gamboaensis. Accessory endophallites: (h) D. benesi; (i) D. berthalutzae sp. nov.; (j) D. femoratus; (k) D. fortepunctatus; (l) D. gamboaensis. Abbreviations: FLP, fronto-lateral peripherical endophallite; A +SA, subaxial and axial endophallites; SRP, superior-right peripheral endophallite.
Figure 3 in A taxonomic revision of the globulus species group of Dichotomius Hope, 1838 (Coleoptera: Scarabaeidae: Scarabaeinae)
Figure 3. Detailed morphology of the species in the globulus group. (a) Ventral view of male, Dichotomius femoratus; (b) ventral view of male, D. gamboaensis; (c) male head, D. fortepunctatus; (d) female head, D. gamboaensis; (e) pronotum of male, D. femoratus; (f) pronotum of male, D. fortepunctatus; (g) elytral striae of male, D. fortepunctatus; (h) elytral striae (Estria) of male (ShMicro, shagreened microsculpture), D. femoratus; (i) elytral striae of male, D. berthalutzae sp. nov.; (j) male abdominal ventrites in ventral view, D. berthalutzae sp. nov.; (k) male abdominal ventrites in ventral view, D. femoratus; (l) female abdominal ventrites in lateral view, D. femoratus.
Figure 2 in A taxonomic revision of the globulus species group of Dichotomius Hope, 1838 (Coleoptera: Scarabaeidae: Scarabaeinae)
Figure 2. Holotypes. Dichotomius danieli, male: (a,b) Dorsal and ventral views; (c) labels; (d–f) tegmen in dorsal, ventral and lateral views; D. favi, male: (g,h) dorsal and ventral views; (i) labels; (j–l) tegmen in dorsal, ventral and lateral views. D. rodrigoi, male: (m,n) dorsal and ventral views; (o) labels; (p–r) tegmen in dorsal, ventral view and lateral views. Lectotype D. globulus, male: (s,t) dorsal and ventral views; (u) labels.
Figure 1 in A taxonomic revision of the globulus species group of Dichotomius Hope, 1838 (Coleoptera: Scarabaeidae: Scarabaeinae)
Figure 1. Dorsal habitus of male. (a) Dichotomius benesi; (b) D. berthalutzae sp. nov.; (c) D. femoratus; (d) D. fortepunctatus; (e) D. gamboaensis.
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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.